Design values and effectiveness of absorption, adsorption, and desiccant solar AC systems.
\\n\\n
IntechOpen was founded by scientists, for scientists, in order to make book publishing accessible around the globe. Over the last two decades, this has driven Open Access (OA) book publishing whilst levelling the playing field for global academics. Through our innovative publishing model and the support of the research community, we have now published over 5,700 Open Access books and are visited online by over three million academics every month. These researchers are increasingly working in broad technology-based subjects, driving multidisciplinary academic endeavours into human health, environment, and technology.
\\n\\nBy listening to our community, and in order to serve these rapidly growing areas which lie at the core of IntechOpen's expertise, we are launching a portfolio of Open Science journals:
\\n\\nAll three journals will publish under an Open Access model and embrace Open Science policies to help support the changing needs of academics in these fast-moving research areas. There will be direct links to preprint servers and data repositories, allowing full reproducibility and rapid dissemination of published papers to help accelerate the pace of research. Each journal has renowned Editors in Chief who will work alongside a global Editorial Board, delivering robust single-blind peer review. Supported by our internal editorial teams, this will ensure our authors will receive a quick, user-friendly, and personalised publishing experience.
\\n\\n"By launching our journals portfolio we are introducing new, dedicated homes for interdisciplinary technology-focused researchers to publish their work, whilst embracing Open Science and creating a unique global home for academics to disseminate their work. We are taking a leap toward Open Science continuing and expanding our fundamental commitment to openly sharing scientific research across the world, making it available for the benefit of all." Dr. Sara Uhac, IntechOpen CEO
\\n\\n"Our aim is to promote and create better science for a better world by increasing access to information and the latest scientific developments to all scientists, innovators, entrepreneurs and students and give them the opportunity to learn, observe and contribute to knowledge creation. Open Science promotes a swifter path from research to innovation to produce new products and services." Alex Lazinica, IntechOpen founder
\\n\\nIn conclusion, Natalia Reinic Babic, Head of Journal Publishing and Open Science at IntechOpen adds:
\\n\\n“On behalf of the journal team I’d like to thank all our Editors in Chief, Editorial Boards, internal supporting teams, and our scientific community for their continuous support in making this portfolio a reality - we couldn’t have done it without you! With your support in place, we are confident these journals will become as impactful and successful as our book publishing program and bring us closer to a more open (science) future.”
\\n\\nWe invite you to visit the journals homepage and learn more about the journal’s Editorial Boards, scope and vision as all three journals are now open for submissions.
\\n\\nFeel free to share this news on social media and help us mark this memorable moment!
\\n\\n\\n"}]',published:!0,mainMedia:{caption:"",originalUrl:"/media/original/237"}},components:[{type:"htmlEditorComponent",content:'
After years of being acknowledged as the world's leading publisher of Open Access books, today, we are proud to announce we’ve successfully launched a portfolio of Open Science journals covering rapidly expanding areas of interdisciplinary research.
\n\n\n\nIntechOpen was founded by scientists, for scientists, in order to make book publishing accessible around the globe. Over the last two decades, this has driven Open Access (OA) book publishing whilst levelling the playing field for global academics. Through our innovative publishing model and the support of the research community, we have now published over 5,700 Open Access books and are visited online by over three million academics every month. These researchers are increasingly working in broad technology-based subjects, driving multidisciplinary academic endeavours into human health, environment, and technology.
\n\nBy listening to our community, and in order to serve these rapidly growing areas which lie at the core of IntechOpen's expertise, we are launching a portfolio of Open Science journals:
\n\nAll three journals will publish under an Open Access model and embrace Open Science policies to help support the changing needs of academics in these fast-moving research areas. There will be direct links to preprint servers and data repositories, allowing full reproducibility and rapid dissemination of published papers to help accelerate the pace of research. Each journal has renowned Editors in Chief who will work alongside a global Editorial Board, delivering robust single-blind peer review. Supported by our internal editorial teams, this will ensure our authors will receive a quick, user-friendly, and personalised publishing experience.
\n\n"By launching our journals portfolio we are introducing new, dedicated homes for interdisciplinary technology-focused researchers to publish their work, whilst embracing Open Science and creating a unique global home for academics to disseminate their work. We are taking a leap toward Open Science continuing and expanding our fundamental commitment to openly sharing scientific research across the world, making it available for the benefit of all." Dr. Sara Uhac, IntechOpen CEO
\n\n"Our aim is to promote and create better science for a better world by increasing access to information and the latest scientific developments to all scientists, innovators, entrepreneurs and students and give them the opportunity to learn, observe and contribute to knowledge creation. Open Science promotes a swifter path from research to innovation to produce new products and services." Alex Lazinica, IntechOpen founder
\n\nIn conclusion, Natalia Reinic Babic, Head of Journal Publishing and Open Science at IntechOpen adds:
\n\n“On behalf of the journal team I’d like to thank all our Editors in Chief, Editorial Boards, internal supporting teams, and our scientific community for their continuous support in making this portfolio a reality - we couldn’t have done it without you! With your support in place, we are confident these journals will become as impactful and successful as our book publishing program and bring us closer to a more open (science) future.”
\n\nWe invite you to visit the journals homepage and learn more about the journal’s Editorial Boards, scope and vision as all three journals are now open for submissions.
\n\nFeel free to share this news on social media and help us mark this memorable moment!
\n\n\n'}],latestNews:[{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"},{slug:"introducing-intechopen-book-series-a-new-publishing-format-for-oa-books-20210915",title:"Introducing IntechOpen Book Series - A New Publishing Format for OA Books"}]},book:{item:{type:"book",id:"9517",leadTitle:null,fullTitle:"Type 2 Diabetes - From Pathophysiology to Cyber Systems",title:"Type 2 Diabetes",subtitle:"From Pathophysiology to Cyber Systems",reviewType:"peer-reviewed",abstract:"Diabetes mellitus is a metabolic disease characterized by chronic high blood glucose levels. Of the various types of diabetes, type 2 diabetes is increasing in prevalence due to obesity, aging, sedentarism, and other factors. This book presents a novel approach to preventing and treating type 2 diabetes. Chapters cover such topics as diagnosis, pathogenesis, management, lifestyle and nutritional intervention, and systems to support early diagnosis and prevention of prediabetes.",isbn:"978-1-83881-904-0",printIsbn:"978-1-83881-903-3",pdfIsbn:"978-1-83881-905-7",doi:"10.5772/intechopen.87312",price:139,priceEur:155,priceUsd:179,slug:"type-2-diabetes-from-pathophysiology-to-cyber-systems",numberOfPages:440,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"8c1eb0e29f87477ff2bc926cc3b695ea",bookSignature:"Anca Pantea Stoian",publishedDate:"September 22nd 2021",coverURL:"https://cdn.intechopen.com/books/images_new/9517.jpg",numberOfDownloads:6134,numberOfWosCitations:0,numberOfCrossrefCitations:5,numberOfCrossrefCitationsByBook:0,numberOfDimensionsCitations:6,numberOfDimensionsCitationsByBook:0,hasAltmetrics:1,numberOfTotalCitations:11,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"June 1st 2020",dateEndSecondStepPublish:"June 22nd 2020",dateEndThirdStepPublish:"August 21st 2020",dateEndFourthStepPublish:"November 9th 2020",dateEndFifthStepPublish:"January 8th 2021",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"243049",title:"Dr.",name:"Anca",middleName:null,surname:"Pantea Stoian",slug:"anca-pantea-stoian",fullName:"Anca Pantea Stoian",profilePictureURL:"https://mts.intechopen.com/storage/users/243049/images/system/243049.jpg",biography:"Anca Pantea Stoian is a specialist in diabetes, nutrition, and metabolic diseases as well as health food hygiene. She also has competency in general ultrasonography.\n\nShe is an associate professor in the Diabetes, Nutrition and Metabolic Diseases Department, Carol Davila University of Medicine and Pharmacy, Bucharest, Romania. She has been chief of the Hygiene Department, Faculty of Dentistry, at the same university since 2019. Her interests include micro and macrovascular complications in diabetes and new therapies. Her research activities focus on nutritional intervention in chronic pathology, as well as cardio-renal-metabolic risk assessment, and diabetes in cancer. She is currently engaged in developing new therapies and technological tools for screening, prevention, and patient education in diabetes. \n\nShe is a member of the European Association for the Study of Diabetes, Cardiometabolic Academy, CEDA, Romanian Society of Diabetes, Nutrition and Metabolic Diseases, Romanian Diabetes Federation, and Association for Renal Metabolic and Nutrition studies. She has authored or co-authored 160 papers in national and international peer-reviewed journals.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"6",totalChapterViews:"0",totalEditedBooks:"2",institution:{name:"Carol Davila University of Medicine and Pharmacy",institutionURL:null,country:{name:"Romania"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"178",title:"Endocrinology",slug:"medicine-endocrinology"}],chapters:[{id:"75377",title:"Pathophysiologic Approach to Type 2 Diabetes Management: One Centre Experience 1980–2020",doi:"10.5772/intechopen.96237",slug:"pathophysiologic-approach-to-type-2-diabetes-management-one-centre-experience-1980-2020",totalDownloads:781,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"This overview summarizes the evolution of pathophysiologic treatment of diabetes type 2 (T2D) in the period of the last 40 years. Randomized Controlled Trials (RCT) and Real World Evidence (RWE) studies resulted in recent Statements of the American Diabetes Association (ADA) and the European Association for the Study of Diabetes (EASD) in the year 2020. Case reports and studies of a single-centre in Czech Republic are reported. The authors demonstrate the impact of (1) multiple doses of rapid insulin, (2) multiple doses of rapid or ultrarapid insulin analogs (3) continuous subcutaneous insulin infusion (CSII) (4) incretin receptor agonists, (5) fixed combination of insulin degludec with liraglutide (IDegLira) and (6) SGLT2 inhibitor dapagliflozin, on plasma glucose concentration, HbA1c, body mass and patient satisfaction. The importance of therapeutic patients’ education and technology (personal glucometers, continuous/flash glucose monitors, insulin pens/pumps) is emphasized. Most of the observations were already published. Hence, individually adopted education, lifstyle, technical equipment, incretin receptor agonists and/or metformin and/or gliflozins and/or insulin analogs appear to be the core of an effective pathophysiologic approach. Scientific conclusions from RCTs, RWE trials and own clinical case reports may prevail over clinical inertia and induce early implementation of effective methods into routine T2D treatment.",signatures:"Rudolf Chlup, Richard Kaňa, Lada Hanáčková, Hana Zálešáková and Blanka Doubravová",downloadPdfUrl:"/chapter/pdf-download/75377",previewPdfUrl:"/chapter/pdf-preview/75377",authors:[{id:"278357",title:"Prof.",name:"Rudolf",surname:"Chlup",slug:"rudolf-chlup",fullName:"Rudolf Chlup"},{id:"346119",title:"Dr.",name:"Richard",surname:"Kaňa",slug:"richard-kana",fullName:"Richard Kaňa"},{id:"346120",title:"BSc.",name:"Lada",surname:"Hanáčková",slug:"lada-hanackova",fullName:"Lada Hanáčková"},{id:"346121",title:"BSc.",name:"Hana",surname:"Zálešáková",slug:"hana-zalesakova",fullName:"Hana Zálešáková"},{id:"346122",title:"Dr.",name:"Blanka",surname:"Doubravová",slug:"blanka-doubravova",fullName:"Blanka Doubravová"}],corrections:null},{id:"73867",title:"Redox Signaling is Essential for Insulin Secretion",doi:"10.5772/intechopen.94312",slug:"redox-signaling-is-essential-for-insulin-secretion",totalDownloads:207,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"In this review, we place redox signaling in pancreatic β-cells to the context with signaling pathways leading to insulin secretion, acting for example upon the action of incretins (GLP-1, GIP) and the metabotropic receptor GPR40. Besides a brief description of ion channel participation in depolarization/repolarization of the plasma membrane, we emphasize a prominent role of the elevated glucose level in pancreatic β-cells during glucose-stimulated insulin secretion (GSIS). We focus on our recent findings, which revealed that for GSIS, not only elevated ATP synthesis is required, but also fundamental redox signaling originating from the NADPH oxidase 4- (NOX4-) mediated H2O2 production. We hypothesized that the closing of the ATP-sensitive K+ channel (KATP) is only possible when both ATP plus H2O2 are elevated in INS-1E cells. KATP alone or with synergic channels provides an element of logical sum, integrating both metabolic plus redox homeostasis. This is also valid for other secretagogues, such as branched chain ketoacids (BCKAs); and partly for fatty acids (FAs). Branched chain aminoacids, leucine, valine and isoleucine, after being converted to BCKAs are metabolized by a series of reactions resembling β-oxidation of FAs. This increases superoxide formation in mitochondria, including its portion elevated due to the function of electron transfer flavoprotein ubiquinone oxidoreductase (ETF:QOR). After superoxide conversion to H2O2 the oxidation of BCKAs provides the mitochondrial redox signaling extending up to the plasma membrane to induce its depolarization together with the elevated ATP. In contrast, experimental FA-stimulated insulin secretion in the presence of non-stimulating glucose concentrations is predominantly mediated by GPR40, for which intramitochondrial redox signaling activates phospholipase iPLA2γ, cleaving free FAs from mitochondrial membranes, which diffuse to the plasma membrane and largely amplify the GPR40 response. These events are concomitant to the insulin release due to the metabolic component. Hypothetically, redox signaling may proceed by simple H2O2 diffusion or via an SH-relay enabled by peroxiredoxins to target proteins. However, these aspects have yet to be elucidated.",signatures:"Petr Ježek, Blanka Holendová, Martin Jabůrek, Jan Tauber, Andrea Dlasková and Lydie Plecitá-Hlavatá",downloadPdfUrl:"/chapter/pdf-download/73867",previewPdfUrl:"/chapter/pdf-preview/73867",authors:[{id:"325015",title:"Dr.",name:"Petr",surname:"Ježek",slug:"petr-jezek",fullName:"Petr Ježek"},{id:"326194",title:"Dr.",name:"Lydie",surname:"Plecitá - Hlavatá",slug:"lydie-plecita-hlavata",fullName:"Lydie Plecitá - Hlavatá"},{id:"326195",title:"Dr.",name:"Blanka",surname:"Holendová",slug:"blanka-holendova",fullName:"Blanka Holendová"},{id:"326196",title:"Dr.",name:"Martin",surname:"Jabůrek",slug:"martin-jaburek",fullName:"Martin Jabůrek"},{id:"336621",title:"Dr.",name:"Jan",surname:"Tauber",slug:"jan-tauber",fullName:"Jan Tauber"},{id:"336622",title:"Dr.",name:"Andrea",surname:"Dlasková",slug:"andrea-dlaskova",fullName:"Andrea Dlasková"}],corrections:null},{id:"74868",title:"Individual Glycation Sites as Biomarkers of Type 2 Diabetes Mellitus",doi:"10.5772/intechopen.95532",slug:"individual-glycation-sites-as-biomarkers-of-type-2-diabetes-mellitus",totalDownloads:317,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:1,abstract:"Type 2 diabetes mellitus (T2DM) is a widely spread metabolic disease, the initial stages of which are asymptomatic and have no clinically recognizable manifestation. At the molecular level, T2DM is manifested with essential non-enzymatic structural changes of intra- and extracellular proteins, mostly represented with oxidation and glycation of multiple residues. Protein glycation is one of the most universal markers of T2DM, and is recognized as an indirect, but adequate indicator of plasma glucose levels over prolonged periods of time. Unfortunately, glycated hemoglobin (HbA1c) – the universally accepted T2DM marker, is insensitive for short-term excursions of blood glucose, which are known to precede the onset of disease. Therefore, new generation biomarkers, giving access to the time dimension of Maillard reaction in blood, are desired. In this context, establishment of individual glycation sites of plasma proteins as new T2DM biomarkers might be a promising approach. Indeed, involvement of proteins with different half-life times in such analysis will make the time dimension of protein glycation in blood available and will allow early recognition of blood sugar fluctuations, occurring within few weeks or even days.",signatures:"Alena Soboleva, Natalia Vashurina and Andrej Frolov",downloadPdfUrl:"/chapter/pdf-download/74868",previewPdfUrl:"/chapter/pdf-preview/74868",authors:[{id:"309526",title:"Dr.",name:"Andrej",surname:"Frolov",slug:"andrej-frolov",fullName:"Andrej Frolov"},{id:"323684",title:"M.Sc.",name:"Alena",surname:"Soboleva",slug:"alena-soboleva",fullName:"Alena Soboleva"},{id:"324307",title:"BSc.",name:"Natalia",surname:"Vashurina",slug:"natalia-vashurina",fullName:"Natalia Vashurina"}],corrections:null},{id:"75259",title:"The Mechanistic and Pathophysiological Role of Adiponectin and Resistin towards Regulation of Food Intake and Appetite in Cardiovascular Associated Risk Factor of Metabolic Syndrome",doi:"10.5772/intechopen.96171",slug:"the-mechanistic-and-pathophysiological-role-of-adiponectin-and-resistin-towards-regulation-of-food-i",totalDownloads:226,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Insulin resistance syndrome or syndrome X is also known as metabolic syndrome (MetS). It is an emerging problem globally with the surge of increasing prevalence among urban population of developing countries. The etiology of pathophysiology of metabolic syndrome includes the inflammatory pathways of insulin resistance, deregulated appetite, diet-induced, inflammation-induced obesity, and cardiovascular diseases (CVD). Adipose tissue is an endocrine organ that secrets adipokines like adiponectin and resistin during physiological and pathological states. Moreover, the adipokines associated with diet-induced and inflammation-induced obesity have secondary deteriorating effects on cardiovascular system. Although, the adiponectin and resistin were potentially found in regulating food intake and appetite but their mediating effect on pathophysiology of CVD still needs future investigations. However, the prior studies reported the association of adiponectin and resistin levels with CVD complications related to food intake but still there is need to understand its multifactorial heterogeneity. Therefore, literature suggests figuring out potential target mechanistic and therapeutic approaches of adiponectin and resistin hormone towards food intake and appetite involvement in metabolic syndrome and CVD.",signatures:"Mimie Noratiqah Jumli and Muhammad Ilyas Nadeem",downloadPdfUrl:"/chapter/pdf-download/75259",previewPdfUrl:"/chapter/pdf-preview/75259",authors:[{id:"320490",title:"Ms.",name:"Mimie Noratiqah",surname:"Jumli",slug:"mimie-noratiqah-jumli",fullName:"Mimie Noratiqah Jumli"},{id:"320491",title:"Mr.",name:"Muhammad Ilyas",surname:"Nadeem",slug:"muhammad-ilyas-nadeem",fullName:"Muhammad Ilyas Nadeem"}],corrections:null},{id:"76474",title:"Oral Glucose Tolerance Test (OGTT): Undeniably the First Choice Investigation of Dysglycaemia, Reproducibility can be Improved",doi:"10.5772/intechopen.96549",slug:"oral-glucose-tolerance-test-ogtt-undeniably-the-first-choice-investigation-of-dysglycaemia-reproduci",totalDownloads:143,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Type 2 diabetes mellitus accounts for ≈90–95% of those with diabetes, about 50% of those with type 2 diabetes are unaware and it can remain undiagnosed for up to 12 years, ≥25% of people have evidence of microvascular complications at diagnosis. The consequences of diabetes can be reduced by screening and early interventions. Urinalysis as a screening test is limited by its low sensitivity ranging from 21% and 64%, though has high specificity (>98%), it has a place where no other procedure is available. Fasting plasma glucose though recommended as a universal screening and diagnostic test for diabetes mellitus, a changed in the diagnostic criteria was made when this did not give corresponding hyperglycaemic impact compared to the OGTT results, bringing a complex and variable effect on the prevalence of diabetes and on subjects diagnosed. To date the searching to finding the corresponding FPG to what is normal or IGT is still ongoing. FPG testing poorly identify early signs of dysglycaemia. This is due to the difficulty ensuring compliance with instructions about fasting, FPG represents glucose handling during the moment of fasting period only and is affected easily by short-term lifestyle changes, FPG has diurnal variation, higher in the morning than in the afternoon, these may cause serious misclassifications. OGTT do indicates the pathophysiology responsible for diabetes better as it provides information on what happens in the postprandial state when the functional capacity of pancreatic β-cell is crucial. It accurately detects changes in post-prandial glycaemia that tend to precede changes in fasting glucose. OGTT is the gold standard for the diagnosis of GDM and the only means of identifying people with IGT and WHO placed emphasis on the OGTT as the “gold standard”, in diagnosis of dysglycaemia. Reproducibility can be improved remarkably when patient preparation, a forvarable atmosphere during the procedure, standardized sampling protocol, sample handling, and analysis are given high attention. Measurement of A1c equals the assessment of hundreds of FPG levels and also captures postprandial glucose peaks. Regrettably, it has been shown that 44% of people with newly diagnosed diabetes with OGTT had A1c <6.0% and that a stronger correlations with plasma glucose is better in subjects with known diabetes, but not in the general population. A1C values just above the upper limits of normal require OGTT to be correctly interpreted; it is not available in many part of the world. Finally, A1c can not diagnose IFG and IGT to disclose high-risk subjects for diabetes. In conclusion an OGTT is undeniably the best test in investigation of dysglycaemia, either with the intention of testing for pre-diabetes, type 2 diabetes, or for gestational diabetes mellitus.",signatures:"Dahiru Saleh Mshelia, Sani Adamu and Rebecca Mtaku Gali",downloadPdfUrl:"/chapter/pdf-download/76474",previewPdfUrl:"/chapter/pdf-preview/76474",authors:[{id:"139104",title:"Dr.",name:"Dahiru",surname:"Saleh Mshelia",slug:"dahiru-saleh-mshelia",fullName:"Dahiru Saleh Mshelia"},{id:"334516",title:"Dr.",name:"Sani",surname:"Adamu",slug:"sani-adamu",fullName:"Sani Adamu"},{id:"334517",title:"Dr.",name:"Rebecca Mtaku",surname:"Gali",slug:"rebecca-mtaku-gali",fullName:"Rebecca Mtaku Gali"}],corrections:null},{id:"74535",title:"Organic Volatile Compounds Used in Type 2 Diabetes",doi:"10.5772/intechopen.94752",slug:"organic-volatile-compounds-used-in-type-2-diabetes",totalDownloads:289,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Analysis of volatile organic compounds (VOCs) in exhaled breath is non-invasive method and appears as a promising tool for metabolic monitoring. Diabetes is a complex syndrome, metabolic diseases that is characterized by hyperglycemia associated with major changes in lipids and proteins. The pathophysiology of the link between diabetes, hypertension, inflammatory syndrome and oxidative stress is complex. We conducted a study and applied quantitative analysis of exhaled ethylene and ammonia in patients with type 2 diabetes mellitus (T2DM) and a healthy control group. For breath gas analysis, a very sensitive CO2 laser photoacoustic spectroscopy (CO2LPAS) was applied. The concentration of exhaled VOCs differed between T2DM patients and healthy group, in particular, T2DM patients exhaled significantly higher amounts of ethylene and ammonia compared to healthy control group. The data obtained by the CO2LPAS system revealing that the increased breath VOCs has a close relationship with high glucose levels and with healthy complications.",signatures:"Mioara Petrus, Cristina Popa and Ana-Maria Bratu",downloadPdfUrl:"/chapter/pdf-download/74535",previewPdfUrl:"/chapter/pdf-preview/74535",authors:[{id:"167918",title:"Dr.",name:"Ana-Maria",surname:"Bratu",slug:"ana-maria-bratu",fullName:"Ana-Maria Bratu"},{id:"244485",title:"Dr.",name:"Mioara",surname:"Petrus",slug:"mioara-petrus",fullName:"Mioara Petrus"},{id:"324617",title:"Dr.",name:"Cristina",surname:"Popa",slug:"cristina-popa",fullName:"Cristina Popa"}],corrections:null},{id:"74470",title:"Diabetes Microvascular Complications: An Overview of Epigenetic Modifications",doi:"10.5772/intechopen.94642",slug:"diabetes-microvascular-complications-an-overview-of-epigenetic-modifications",totalDownloads:471,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Diabetic nephropathy (DN) and diabetic retinopathy (DR) are two serious and long-standing microvascular complications of type 2 diabetes mellitus (T2DM) whose burden is increasing worldwide due to increasing burden of T2DM. Several factors which may predispose to the development of DN and DR are persistent hyperglycemia and its consequences such as formation of advanced glycation end products (AGEs), activation of hexosamine pathway, polyol pathway, uncontrolled blood pressure, increased oxidative stress, age, family history of kidney disease or hypertension, ethnic background etc. However, the pathophysiological mechanisms of these complications are complicated and not completely understood yet. Hence it is the demand to discover newer approaches to treat these devastating complications completely. Recently, various epigenetic modifications, which are the transmissible alterations in the expressions of a gene, are being studied to understand the pathophysiology of diabetic vascular complications. Metabolic and environmental factors may lead to dysregulated epigenetic mechanisms which might further affect the chromatin structure and related expressions of a gene, which may lead to diabetes-associated complications. Therefore, it is the need to explore its role in vascular complications in the current scenario. In this chapter, various epigenetic studies with regard to DN and DR, epigenome-wide association studies (EWAS) approach, and starting clinical material for such studies have been discussed. We have also summarized the better understanding of epigenetic alterations and their role in microvascular complications of diabetes through this chapter. The better understanding of epigenetic mechanisms and their role in diabetic microvascular complications could be used in clinical management of DN as well as DR or could be helpful to improve the available therapies for these complications.",signatures:"Neerja Aggarwal and Pawan Kumar Kare",downloadPdfUrl:"/chapter/pdf-download/74470",previewPdfUrl:"/chapter/pdf-preview/74470",authors:[{id:"215119",title:"Dr.",name:"Pawan Kumar",surname:"Kare",slug:"pawan-kumar-kare",fullName:"Pawan Kumar Kare"},{id:"336295",title:"Dr.",name:"Neerja",surname:"Aggarwal",slug:"neerja-aggarwal",fullName:"Neerja Aggarwal"}],corrections:null},{id:"74501",title:"Predicting Type 2 Diabetes Complications and Personalising Patient Using Artificial Intelligence Methodology",doi:"10.5772/intechopen.94228",slug:"predicting-type-2-diabetes-complications-and-personalising-patient-using-artificial-intelligence-met",totalDownloads:480,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:1,abstract:"The prediction of the onset of different complications of disease, in general, is challenging due to the existence of unmeasured risk factors, imbalanced data, time-varying data due to dynamics, and various interventions to the disease over time. Scholars share a common argument that many Artificial Intelligence techniques that successfully model disease are often in the form of a “black box” where the internal workings and complexities are extremely difficult to understand, both from practitioners’ and patients’ perspective. There is a need for appropriate Artificial Intelligence techniques to build predictive models that not only capture unmeasured effects to improve prediction, but are also transparent in how they model data so that knowledge about disease processes can be extracted and trust in the model can be maintained by clinicians. The proposed strategy builds probabilistic graphical models for prediction with the inclusion of informative hidden variables. These are added in a stepwise manner to improve predictive performance whilst maintaining as simple a model as possible, which is regarded as crucial for the interpretation of the prediction results. This chapter explores this key issue with a specific focus on diabetes data. According to the literature on disease modelling, especially on major diseases such as diabetes, a patient’s mortality often occurs due to the associated complications caused by the disease over time and not the disease itself. This is often patient-specific and will depend on what type of cohort a patient belongs to. Another main focus of this study is patient personalisation via precision medicine by discovering meaningful subgroups of patients which are characterised as phenotypes. These phenotypes are explained further using Bayesian network analysis methods and temporal association rules. Overall, this chapter discussed the earlier research of the chapter’s author. It explores Artificial Intelligence (IDA) techniques for modelling the progression of disease whilst simultaneously stratifying patients and doing so in a transparent manner as possible. To this end, it reviews the current literature on some of the most common Artificial Intelligent (AI) methodologies, including probabilistic modelling, association rule mining, phenotype discovery and latent variable discovery by using diabetes as a case study.",signatures:"Leila Yousefi and Allan Tucker",downloadPdfUrl:"/chapter/pdf-download/74501",previewPdfUrl:"/chapter/pdf-preview/74501",authors:[{id:"322882",title:"Dr.",name:"Leila",surname:"Yousefi",slug:"leila-yousefi",fullName:"Leila Yousefi"},{id:"334276",title:"Dr.",name:"Allan",surname:"Tucker",slug:"allan-tucker",fullName:"Allan Tucker"}],corrections:null},{id:"73848",title:"The Role of Gender in the Onset, Development and Impact of Type 2 Diabetes Mellitus and Its Co-Morbidities",doi:"10.5772/intechopen.94271",slug:"the-role-of-gender-in-the-onset-development-and-impact-of-type-2-diabetes-mellitus-and-its-co-morbid",totalDownloads:292,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Almost half a billion people worldwide are living with diabetes mellitus (DM). Complications associated with DM are common and approximately half of those people with DM suffer from at least one comorbidity. There is high mortality, morbidity and cost associated with these comorbidities which include cardiovascular disease, retinopathy, nephropathy, neuropathy and osteopathy. Gender influences the relative risk of developing complications from DM via differing mechanisms – both directly and indirectly. Generally, an increased relative risk of cardiovascular disease and kidney disease is noticed in women with DM compared to the non-DM context, where rates of both are much higher in men. Men appear to be at greater risk of diabetic retinopathy and also of insensate diabetic neuropathy, whereas women suffer from an increased rate of painful diabetic neuropathy compared to men. These differences are not clear cut and vary regionally and temporally, indicating that the field would benefit from further research on both the epidemiology and physiological mechanism of the observed patterns. These differences should be taken into account in treatment programmes for DM and its comorbidities.",signatures:"Féaron C. Cassidy, Sinead Lafferty and Cynthia M. Coleman",downloadPdfUrl:"/chapter/pdf-download/73848",previewPdfUrl:"/chapter/pdf-preview/73848",authors:[{id:"325140",title:"Dr.",name:"Féaron C.",surname:"Cassidy",slug:"fearon-c.-cassidy",fullName:"Féaron C. Cassidy"},{id:"328878",title:"Dr.",name:"Cynthia M.",surname:"Coleman",slug:"cynthia-m.-coleman",fullName:"Cynthia M. Coleman"},{id:"329599",title:"Dr.",name:"Sinead",surname:"Lafferty",slug:"sinead-lafferty",fullName:"Sinead Lafferty"}],corrections:null},{id:"75635",title:"Microvascular Complications of Diabetes Mellitus: Focus on Diabetic Retinopathy (DR) and Diabetic Foot Ulcer (DFU)",doi:"10.5772/intechopen.96548",slug:"microvascular-complications-of-diabetes-mellitus-focus-on-diabetic-retinopathy-dr-and-diabetic-foot-",totalDownloads:337,totalCrossrefCites:2,totalDimensionsCites:2,hasAltmetrics:0,abstract:"Diabetic retinopathy and diabetic foot ulcer are the most frequent, but also the most disabling complications of diabetes mellitus, with a sinister impact on patients’ quality of life. Microvascular changes related to the deleterious effect of chronic hyperglycemia play an important role in the pathophysiology of both clinical entities by multiple molecular pathways. Vision-threating diabetic retinopathy may be treated by laser photocoagulation, anti-vascular endothelial growth factor (VEGF) agents and vitreoretinal surgery. Diabetic foot lesions are best treated by revascularization if needed, off-loading, infection control and therapeutic adjuncts (e.g. special dressings). Treatment should ideally be offered by a multidisciplinary expert team. Prevention and early detection, along with adequate control of glucose, lipids and arterial hypertension are of paramount importance to avoid and mitigate these fearful complications.",signatures:"Ana Maria Dascalu, Dragos Serban, Nikolaos Papanas, Peter Kempler, Manfredi Rizzo, Daniela Stana, Gabriela Roman and Anca Pantea Stoian",downloadPdfUrl:"/chapter/pdf-download/75635",previewPdfUrl:"/chapter/pdf-preview/75635",authors:[{id:"243049",title:"Dr.",name:"Anca",surname:"Pantea Stoian",slug:"anca-pantea-stoian",fullName:"Anca Pantea Stoian"},{id:"37582",title:"Dr.",name:"Nikolaos",surname:"Papanas",slug:"nikolaos-papanas",fullName:"Nikolaos Papanas"},{id:"303184",title:"Dr.",name:"Manfredi",surname:"Rizzo",slug:"manfredi-rizzo",fullName:"Manfredi Rizzo"},{id:"323765",title:"Prof.",name:"Gabriela",surname:"Roman",slug:"gabriela-roman",fullName:"Gabriela Roman"},{id:"333677",title:"Assistant Prof.",name:"Ana Maria",surname:"Dascalu",slug:"ana-maria-dascalu",fullName:"Ana Maria Dascalu"},{id:"349820",title:"Dr.",name:"Dragos",surname:"Serban",slug:"dragos-serban",fullName:"Dragos Serban"},{id:"349821",title:"Dr.",name:"Daniela",surname:"Stana",slug:"daniela-stana",fullName:"Daniela Stana"},{id:"352506",title:"Prof.",name:"Peter",surname:"Kempler",slug:"peter-kempler",fullName:"Peter Kempler"}],corrections:null},{id:"76360",title:"Cardiovascular Risk/Disease in Type 2 Diabetes Mellitus",doi:"10.5772/intechopen.97422",slug:"cardiovascular-risk-disease-in-type-2-diabetes-mellitus",totalDownloads:338,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"People with Type 2 diabetes mellitus (T2DM) have a 2–3 times higher cardiovascular risk (CVR) than people without diabetes. Atherosclerotic cardiovascular disease (ASCVD) is the major cause of morbidity and mortality in T2DM. Over 30% of those with T2DM have CVD (cardiovascular disease), and over half die from it, mainly from coronary heart disease. The presence of T2DM reduces life expectancy by 10–14 years. The European Society of Cardiology stratifies the CVR into moderate (young patients, with a short duration of diabetes, no risk factors), high (duration of diabetes >10 years, no target organ damage, plus any additional risk factor) and very high (patients with established CVD, target organ injury three CVD risk factors: age, hypertension, dyslipidemia, obesity, or Type 1 diabetes mellitus (T1DM) over 20 years duration). The American Association of Clinical Endocrinologists (AACE) considers that diabetes per se involves high risk. Heart failure (HF) is the second most common complication after obstructive peripheral arterial disease. T2DM associates a 75% higher risk of CV mortality or hospitalization for HF. A multifactorial approach is required to reduce CV morbidity and mortality.",signatures:"Gabriela Roman and Anca Pantea Stoian",downloadPdfUrl:"/chapter/pdf-download/76360",previewPdfUrl:"/chapter/pdf-preview/76360",authors:[{id:"243049",title:"Dr.",name:"Anca",surname:"Pantea Stoian",slug:"anca-pantea-stoian",fullName:"Anca Pantea Stoian"},{id:"323765",title:"Prof.",name:"Gabriela",surname:"Roman",slug:"gabriela-roman",fullName:"Gabriela Roman"}],corrections:null},{id:"74740",title:"Type 2 Diabetes Mellitus: Cardiovascular Autonomic Neuropathy and Heart Rate Variability",doi:"10.5772/intechopen.95515",slug:"type-2-diabetes-mellitus-cardiovascular-autonomic-neuropathy-and-heart-rate-variability",totalDownloads:254,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Type 2 Diabetes Mellitus is associated with both macro- and microvascular complications. One among the latter, is cardiovascular autonomic neuropathy (CAN). CAN is attributed to cardiac arrhythmias and sudden death. Underlying pathogenesis of cardiac autonomic neuropathy is chronic hyperglycemia induced oxidative stress causing neuronal necrosis, apoptosis and death, leading to the sympathetic and parasympathetic nerve dysfunction. The balance between sympathetic and parasympathetic nervous system is reflected by heart rate variability (HRV). HRV describes “the variations of both instantaneous heart rate and R-R intervals which in turn reflects the cardiac autonomic nervous control”. HRV measured at rest is a marker of autonomic nerve function status. Thus, HRV test is recommended to diagnose diabetic CAN. Time domain parameters predominantly reflect overall autonomic activity and parasympathetic nervous system (PNS) modulations. Frequency domain parameters either reflect, sympathetic nervous system (SNS) activity, PNS activity, or the balance between the two activities. Nonlinear HRV indices marks PNS influences, SNS influences and sympatho-vagal balance. Almost all these HRV parameters are remarkably reduced in T2DM due to cardiac autonomic dysfunction. HRV is an important simple and noninvasive diagnostic tool to detect CAN.",signatures:"Sultana Ferdousi and Phurpa Gyeltshen",downloadPdfUrl:"/chapter/pdf-download/74740",previewPdfUrl:"/chapter/pdf-preview/74740",authors:[{id:"326397",title:"Dr.",name:"Phurpa",surname:"Gyeltshen",slug:"phurpa-gyeltshen",fullName:"Phurpa Gyeltshen"},{id:"327738",title:"Distinguished Prof.",name:"Sultana",surname:"Ferdousi",slug:"sultana-ferdousi",fullName:"Sultana Ferdousi"}],corrections:null},{id:"78160",title:"The Role of Lifestyle Medicine in the Management of Diabetes Mellitus",doi:"10.5772/intechopen.99555",slug:"the-role-of-lifestyle-medicine-in-the-management-of-diabetes-mellitus",totalDownloads:257,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Lifestyle medicine is a medical specialty that involves the use of lifestyle in the prevention and management of non-communicable diseases like diabetes mellitus and cardiovascular diseases. Recent studies have shown that diabetes mellitus can be prevented following lifestyle modifications. Lifestyle medicine is a branch of medicine that promotes lifestyle modifications as a way of life. This includes promoting healthy eating which includes a whole plant-based diet, low fat, low sugar and low salt. It also includes exercises, sleeping healthy and reducing stress. This is involved in the management of diabetes mellitus. Diabetic management is expensive especially in low and middle-income countries where health insurance is not available for the entire populace and diabetics have to pay out of pocket for their medications.",signatures:"Dabota Yvonne Buowari",downloadPdfUrl:"/chapter/pdf-download/78160",previewPdfUrl:"/chapter/pdf-preview/78160",authors:[{id:"151696",title:"Dr.",name:"Dabota Yvonne",surname:"Buowari",slug:"dabota-yvonne-buowari",fullName:"Dabota Yvonne Buowari"}],corrections:null},{id:"74150",title:"Nutritional Interventions: Diet Modifications, Nutritional Supplements, Complementary and Alternative Medicine",doi:"10.5772/intechopen.94645",slug:"nutritional-interventions-diet-modifications-nutritional-supplements-complementary-and-alternative-m",totalDownloads:403,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Type 2 diabetes (T2DM) is characterized by increased circulating blood glucose levels. Several therapies are available to control glucose levels. However, nutritional choices play a major role in managing diabetes. Nutritional supplements can help in reducing the side effects of medicines on the individual so, this chapter will not only discuss several nutritional choices but also available nutritional supplements to control T2DM. Keeping in mind the traditional belief that food is medicine and as therapies are often associated with deleterious side effects, this chapter will discuss alternative and herbal medicines. In addition, life style alterations with proper nutritional choices is also important and will be touched upon in this chapter.",signatures:"Jameela Banu",downloadPdfUrl:"/chapter/pdf-download/74150",previewPdfUrl:"/chapter/pdf-preview/74150",authors:[{id:"323560",title:"Associate Prof.",name:"Jameela",surname:"Banu",slug:"jameela-banu",fullName:"Jameela Banu"}],corrections:null},{id:"74657",title:"Role of Nutrient and Energy Sensors in the Development of Type 2 Diabetes",doi:"10.5772/intechopen.95454",slug:"role-of-nutrient-and-energy-sensors-in-the-development-of-type-2-diabetes",totalDownloads:370,totalCrossrefCites:0,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Cell survival depends on the constant challenge to match energy demands with nutrient availability. This process is mediated through a highly conserved network of metabolic fuel sensors that orchestrate both a cellular and whole-body energy balance. A mismatch between cellular energy demand and nutrient availability is a key factor in the development of type 2 diabetes, obesity, metabolic syndrome, and other associated pathologies; thus, understanding the fundamental mechanisms by which cells detect nutrient availability and energy demand may lead to the development of new treatments. This chapter reviews the role of the sensor PASK (protein kinase with PAS domain), analyzing its role in the mechanisms of adaptation to nutrient availability and the metabolic response in different organs (liver, hypothalamus) actively cooperating to control food intake, maintain glycaemia homeostasis, and prevent insulin resistance and weight gain.",signatures:"Verónica Hurtado-Carneiro, Ana Pérez-García, Elvira Álvarez and Carmen Sanz",downloadPdfUrl:"/chapter/pdf-download/74657",previewPdfUrl:"/chapter/pdf-preview/74657",authors:[{id:"40639",title:"Dr.",name:"Carmen",surname:"Sanz",slug:"carmen-sanz",fullName:"Carmen Sanz"},{id:"40672",title:"Dr.",name:"Elvira",surname:"Álvarez",slug:"elvira-alvarez",fullName:"Elvira Álvarez"},{id:"40673",title:"Dr.",name:"Verónica",surname:"Hurtado-Carneiro",slug:"veronica-hurtado-carneiro",fullName:"Verónica Hurtado-Carneiro"},{id:"343489",title:"Dr.",name:"Ana",surname:"Pérez-García",slug:"ana-perez-garcia",fullName:"Ana Pérez-García"}],corrections:null},{id:"75411",title:"Therapeutic Effect of Folate and Cobalamin in Diabetics",doi:"10.5772/intechopen.96447",slug:"therapeutic-effect-of-folate-and-cobalamin-in-diabetics",totalDownloads:229,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Diabetes Mellitus type 2 is a metabolic ailment. It is a condition when insulin is produced by our body but, it is not used properly by us. The number of diabetic patients is increasing in the whole world. The problem of obesity is also very closely related to it, which itself is expanding. The individuals diagnosed with type 2 Diabetes Mellitus have high chance of microvascular problems (like nephropathy, retinopathy and neuropathy). They are also at the verge of facing macrovascular ailments (like cardiovascular comorbidities). This indicates that many antidiabetic agents should be administered in combination, to maintain normal sugar level in blood. The management for the patients suffering from diabetes should be effective and harmless for them. It should also improve the general well-being of the patients. So many remedies have been developed for the management of diabetes. Several of them are being developed. We should enhance insulin sensitivity to let our body use insulin effectively. We also must stop the increasing pancreatic β-cell failure which is a specific characteristic of Diabetes Mellitus type 2. The microvascular complications must also be avoided or revoked. Our direst need is to develop agents which may help us in achieving goals mentioned earlier. Many micronutrients are involved in combating the Diabetes Mellitus and complication associated to the malady. These micronutrients are vitamins. Our main focus in this chapter are Vitamins B9 (Folate) and B12 (Cobalamin). Many researches have shown that the said parameters were decreased in patients suffering from Diabetes Mellitus. The level of these two vitamins should be maintained to the normal level and not toward the border line. The maintained level of these vitamins will help in controlling the main problems in patients suffering from Diabetes Mellitus like neuropathy, anemia and many others. By taking these vitamins along with other preventive measures, Diabetes Mellitus can be controlled and can be less dangerous.",signatures:"Farah Qudsia and Samreen Riaz",downloadPdfUrl:"/chapter/pdf-download/75411",previewPdfUrl:"/chapter/pdf-preview/75411",authors:[{id:"172958",title:"Dr.",name:"Samreen",surname:"Riaz",slug:"samreen-riaz",fullName:"Samreen Riaz"},{id:"325719",title:"Ph.D. Student",name:"Farah",surname:"Qudsia",slug:"farah-qudsia",fullName:"Farah Qudsia"}],corrections:null},{id:"74586",title:"Selecting Intermittent Fasting Type to Improve Health in Type 2 Diabetes: A Machine Learning Approach",doi:"10.5772/intechopen.95336",slug:"selecting-intermittent-fasting-type-to-improve-health-in-type-2-diabetes-a-machine-learning-approach",totalDownloads:393,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Intermittent fasting (IF) is the cycling between periods of eating and fasting. The two most popular forms of IER are: the 5: 2 diet characterized by two consecutive or non-consecutive “fast” days and the alternate-day energy restriction, commonly called alternate-day fasting (ADF). The second form is time-restricted feeding (TRF), eating within specific time frames such as the most prevalent 16: 8 diet, with 16 hours of fasting and 8 hours for eating. It is already known that IF can bring about changes in metabolic parameters related with type 2 diabetes (T2D). Furthermore, IF can be effective in improving health by reducing metabolic disorders and age-related diseases. However, it is not clear yet whether the age at which fasting begins, gender and severity of T2D influence on the effectiveness of the different types of IF in reducing metabolic disorders. In this chapter I will present the risk factors of T2D, the different types of IF interventions and the research-based knowledge regarding the effect of IF on T2D. Furthermore, I will describe several machine learning approaches to provide a recommendation system which reveals a set of rules that can assist selecting a successful IF intervention for a personal case. Finally, I will discuss the question: Can we predict the optimal IF intervention for a prediabetes patient?",signatures:"Shula Shazman",downloadPdfUrl:"/chapter/pdf-download/74586",previewPdfUrl:"/chapter/pdf-preview/74586",authors:[{id:"322808",title:"Dr.",name:"Shula",surname:"Shazman",slug:"shula-shazman",fullName:"Shula Shazman"}],corrections:null},{id:"73678",title:"Integrated Cyber-Physical System to Support Early Diagnosis and Prevention of Prediabetes and Complications of Type 2 Diabetes",doi:"10.5772/intechopen.94232",slug:"integrated-cyber-physical-system-to-support-early-diagnosis-and-prevention-of-prediabetes-and-compli",totalDownloads:348,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Dietary and exercise interventions are the mainstay of prevention, and they constitute important part in the treatment of type 2 diabetes (DM2) and its complications. Automated, continuous, individualized non-invasive measurement of pathological processes leading to DM2 and complications are needed in terms of self-explaining metrics for improved individualized lifestyle management. Our company, the Ori Diagnostic Instruments, LLC is using tools of Medical Cybernetics (MC) to monitor non-invasive indicators of insulin resistance, exercise capacity, and autonomic dysfunction. The MC approach utilizes mathematical process and measurement models which are connected to a wearable sensor system. This chapter has the purpose to show how already widely available information technologies like smart phones, cloud computing, and sensor devices of the fitness industry could be put together into an integrated cyber-physical system (ICPS) to support fitness goals like fighting cardiometabolic conditions including high insulin resistance and low level of cardiorespiratory fitness and help building resilience with improved physiological reserve capacity. We want to demonstrate also how ICPS can be not only used for fitness self-management but can be extended to become a platform of noninvasive monitoring devices and become a medical software to support person-centered, outcome driven treatments for DM2 and complications in primary care.",signatures:"Zsolt P. Ori",downloadPdfUrl:"/chapter/pdf-download/73678",previewPdfUrl:"/chapter/pdf-preview/73678",authors:[{id:"273754",title:"M.D.",name:"Zsolt P.",surname:"Ori",slug:"zsolt-p.-ori",fullName:"Zsolt P. Ori"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"7994",title:"Metformin",subtitle:null,isOpenForSubmission:!1,hash:"4763270256096f776a58d75658fe1d9b",slug:"metformin",bookSignature:"Anca Mihaela Pantea Stoian and Manfredi Rizzo",coverURL:"https://cdn.intechopen.com/books/images_new/7994.jpg",editedByType:"Edited by",editors:[{id:"243049",title:"Dr.",name:"Anca",surname:"Pantea Stoian",slug:"anca-pantea-stoian",fullName:"Anca Pantea Stoian"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6581",title:"Adipose Tissue",subtitle:null,isOpenForSubmission:!1,hash:"85899eab2d8b01653e1297b168c470d7",slug:"adipose-tissue",bookSignature:"Leszek Szablewski",coverURL:"https://cdn.intechopen.com/books/images_new/6581.jpg",editedByType:"Edited by",editors:[{id:"49739",title:"Dr.",name:"Leszek",surname:"Szablewski",slug:"leszek-szablewski",fullName:"Leszek Szablewski"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6246",title:"Salivary Glands",subtitle:"New Approaches in Diagnostics and Treatment",isOpenForSubmission:!1,hash:"de375ecbd9ac673d6464107a0c416763",slug:"salivary-glands-new-approaches-in-diagnostics-and-treatment",bookSignature:"Işıl Adadan Güvenç",coverURL:"https://cdn.intechopen.com/books/images_new/6246.jpg",editedByType:"Edited by",editors:[{id:"36790",title:"M.D.",name:"Işıl",surname:"Adadan Güvenç",slug:"isil-adadan-guvenc",fullName:"Işıl Adadan Güvenç"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"7269",title:"Endocrine Disruptors",subtitle:null,isOpenForSubmission:!1,hash:"571f5c496c8b0e8db9043204fa58be2a",slug:"endocrine-disruptors",bookSignature:"Ahmed R. G.",coverURL:"https://cdn.intechopen.com/books/images_new/7269.jpg",editedByType:"Edited by",editors:[{id:"138555",title:"Prof.",name:"R.G.",surname:"Ahmed",slug:"r.g.-ahmed",fullName:"R.G. Ahmed"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"8797",title:"Adipose Tissue",subtitle:"An Update",isOpenForSubmission:!1,hash:"34880b7b450ef96fa5063c867c028b02",slug:"adipose-tissue-an-update",bookSignature:"Leszek Szablewski",coverURL:"https://cdn.intechopen.com/books/images_new/8797.jpg",editedByType:"Edited by",editors:[{id:"49739",title:"Dr.",name:"Leszek",surname:"Szablewski",slug:"leszek-szablewski",fullName:"Leszek Szablewski"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"7059",title:"Amyloid Diseases",subtitle:null,isOpenForSubmission:!1,hash:"d9a197d34d3d6006af726d577060f928",slug:"amyloid-diseases",bookSignature:"Dmitry Kurouski",coverURL:"https://cdn.intechopen.com/books/images_new/7059.jpg",editedByType:"Edited by",editors:[{id:"264297",title:"Dr.",name:"Dmitry",surname:"Kurouski",slug:"dmitry-kurouski",fullName:"Dmitry Kurouski"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6154",title:"Diabetes and Its Complications",subtitle:null,isOpenForSubmission:!1,hash:"79f08a2c1cbbcea2d1df2ad075d2f9fa",slug:"diabetes-and-its-complications",bookSignature:"Ahmed R. 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In recent years, the demand for comfort has been accentuated due to the earth’s changing climate. Therefore, the use of air-conditioning systems is increased, which leads to higher costs and consumption of energy. It also significantly contributes to the global warming. For instance, in the United States, air conditioners use about 6% of the entire electricity produced, at an annual cost of about $ 29 billion to homeowners. Consequently, roughly 117 million metric tons of CO2, per year, are released into the atmosphere. On the other hand, 40% of energy consumption and 36% of CO2 emissions in the EU are caused by buildings, according to United Nations Environment Programme (UNEP). As a result, an increasing interest has been concentrated on the design of modern sustainable AC systems powered by renewables, especially the solar energy that is a universally inexhaustible natural and clean resource [1]. Hence, it can offer a reduction of the consumption, the demand, and the costs of energy, without decreasing the desired comfort. These systems allow converting the solar thermal energy (in the form of heat) into conditioned air and sometimes chilling storage water. They are outstandingly used in residential and other sectors (offices, hotels, restaurants, storage warehouses, schools, hospitals, etc.) [2], what makes them classified among the most energy consumers.
The present chapter reviews recent studies focusing on three technologies of solar AC systems: absorption, adsorption, and desiccant systems.
The harmful effects of conventional AC systems (use of environmentally unfriendly refrigerants; CO2 emission) and their high primary energy consumption lead scientists to invest in clean energy resources, especially the solar energy [3]. The absorption technology is the most used in air-conditioning [4, 5, 6]. It uses an absorber and a generator instead of the compressor. Therefore, no electrical power is needed to pressurize the refrigerant (water or ammonia) [7]. In fact, the refrigerant is first absorbed in an absorbing material and then pressurized in the absorbed liquid phase. The pressurized absorption mixture is then reheated in a solar-powered generator to regenerate the pressurized refrigerant vapor. After that, it is deliquesced in the condenser in order to become liquid, which is then expanded through an expansion valve. The chilled refrigerant causes the cooling effect in the evaporator. Finally, the refrigerant is transferred to the absorber and a new cycle is beginning. Thereby, absorption systems contribute to reducing the greenhouse gas emissions to the atmosphere and the energy costs. Nonetheless, they have a low coefficient of performance (COP) (between about 0.3 and 0.75 according to the cooling capacity) compared with the electrical vapor compression AC systems that their COP can reach up to 3 [7].
The operating principle of a solar air-conditioning system is illustrated in Figure 1.
Absorption solar air-conditioning system.
Several research studies around the world aimed to design various modern solar-powered plants with energy storage. They allow minimizing the environmental effects and satisfying the energy demand [4, 8, 9]. We find single-stage or double-stage absorption systems with and without crystallization [4]. The single-stage systems are equipped with two heat exchangers and two or three storage tanks. However, the double-stage systems are different from the preview systems by adding the two pairs of absorber/generator and evaporator/condenser. In addition, the crystallization process occurs that the refrigerant undergoes three-phase transformation (solid: usually crystallized salt, liquid, and vapor) [4]. Furthermore, these plants and their performance are closely linked to the climatic conditions (especially solar irradiance) of the regions where they are installed. For instance, Mediterranean countries are characterized by a hot climate, which encourages the use of solar air-conditioning systems [5]. In fact, Tunisia widely invests in solar energy that this country is characterized by a sunny climate over long periods of the year [10]. In this reference, an absorption solar installation is applied to a room of 150 m2 to minimize the energy consumption during the summer. It consists of a water-lithium bromide absorption chiller having a capacity of 11 kW, a flat-plate solar collector having an area of 30 m2, and a hot water storage tank having a volume of 0.8 m3. The simulation results showed that the COP reached 0.725 for a cooling capacity of 16.5 kW as long as the heat source temperature increases, which causes the growth of the heat transfer between the system exchangers and then the quantity of heat distributed in the surroundings [11]. Moreover, another study analyzed the energy performance of a solar air-conditioning office building that maximum monthly consumes about 380 kWh [12]. It consists of insulating the walls and cooling the roof. Hence, it allows reaching an energy saving of 46 and 80% in winter and summer, respectively, as well as, reducing the cooling load from 14.09 to 8.68 kW. In the same framework, the studies [13, 14] aimed to improve the efficiency of a solar installation equipped with parabolic solar collectors (having an area of 39 m2), an absorption chiller associated with a cooling tower, a backup heater, two tanks for storage and drain-back storage, and a set of fan coils installed in the building to be cooled [14]. The synoptic scheme presenting the main components of the proposed cooling system is illustrated in Figure 2, according to Ref. [14].
Synoptic schema of the solar cooling system using parabolic collectors.
The analysis of the system performance showed that the absorption chiller output could reach up to about 12 kW. Also, its COP is ranged between about 0.8 and 0.9 [15]. Furthermore, it allowed reducing the CO2 emission of about 3000 kg during hot seasons and reaching an energy saving of 1154 l of gasoil. This type of solar air-conditioning plants was reviewed in Ref. [16] and performed in the investigation [17] for cooling and heating office buildings in Greece. It is characterized by lower thermal losses, high efficiency, and a small collecting surface of about 14 m2. An energy saving of up to 50% can be obtained [17]. Nonetheless, the installation costs are higher (about 924 €/m2 of the solar collector), especially for large areas [17]. Moreover, the maintenance is frequent and also expensive. Reference 18 reports the performance statistics of a solar AC system constituted by thermal parabolic collectors (having an area of 588 m2) and a double-effect absorption chiller. The system has an annual average efficiency of 40% and a peak efficiency of 58% [18]. It also allows chilling water contained in a storage tank of 23.000 l that is used as a buffer tank. The annual average COP of the absorption chiller, which is a water-cooled double-effect chiller, can reach 1.1. Nonetheless, its costs are very high and reach up to $ 680.000 that can be paid after about 21 years [18].
In Algeria, the solar energy was also harnessed to cool houses in hot climates [19]. In this investigation, the authors developed a model of the air conditioner and the absorption cooling system of 10 kW, which is constituted by solar collectors (having a surface of 28 m2) and a 900-l hot storage tank, as well as a cooling tower and a thermally driven chiller. The results obtained showed that the solar system with a thermal COP equal to 0.73 can satisfy the required conditioned air of a house having a surface of 120 m2 [20]. The study [21] proposed a very efficient hybrid combined cooling, heating, and power system driven by solar energy and biomass applied to a building with a 100-kW electricity load. It consists of a biomass gasification subsystem, solar evacuated collector (having an area of 96 m2 for an 800 W/m2 solar irradiance), internal combustion engine, and dual-source powered mixed-effect absorption water chiller. In fact, the system allowed an energy saving of about 57%, a reduction of the carbon emission ratio of about 95%, and providing about 200 kW of cooling power. In addition, the COP of the system is high (1.1) [21].
Furthermore, the high ambient temperatures in Gulf countries cause a ceaseless demand for cooling, which allows achieving a significant scientific development in the solar AC field. For instance, in Saudi Arabia, the investigation [22] focused on optimizing the performance of a solar-powered LiBr-water absorption AC system. It is equipped with a flat-plate collector and storage tanks of cold and refrigerant, which ensure a continuous operation of 24 h/7 days. The chiller has a cooling capacity of 5 kW. The authors also give its complete mathematical model using unsteady time-dependent values of the solar intensity and the ambient temperature that are assumed to be constant over given small time intervals Δt. In fact, the generalized energy equation over each Δt, assuming uniform flow processes, is given by Eq. 1 [22].
where
Moreover, the governing equations of the mass flow rates of the weak and strong refrigerant-absorbent solutions (ws and ss, respectively) for lithium bromide-water are given by Eq. (2) [22].
where
The generator and evaporator heat and pump work are written in Eq. (3) [22].
where Δ
Thermodynamic state of the LiBr-H2O absorption system.
For a collector area of 48 m2, a hot storage mass of 1500 kg, and a constant load, the simulation results using Engineering Equation Solver (EES) software indicated that the COP of the system is about 0.85. However, the experimental results showed that it can reach 0.9 [22]. At the level of the size of system components (collector and tanks), they become smaller in summer that the solar intensity is high. Thus, the required mass storage will be reduced and the COP will be enhanced.
In the same context, many related studies were carried out in Australia. For example, in Ref. [23], the author modeled a building (having a volume of 60 m3) equipped with an autonomous solar photovoltaic-battery air conditioner in order to satisfy the desired comfort with the minimum energy consumption. The conditioned supply air temperature
where
Thanks to the presence of the battery, the system can be used during peak times to provide the energy required. Indeed, the energy stored in the battery
where
The simulation results of the internal temperature and humidity were carried out for different types of buildings and climates using TRNSYS software. The system increased the solar fraction of 30% [23]. Moreover, medium-temperature, concentrated solar thermal collectors are used in an air-conditioning system with an auxiliary heater (used to compensate for a lack of energy) and a double-effect absorption chiller [24] to cool a building. The main components of the proposed AC system are shown in Figure 4, according to Ref. [24].
General scheme of the components constituting the solar AC system.
For a collector area of 2.4 m2/kW of cooling capacity and a storage tank volume of 40 L/m2, the simulation results using TRNSYS software show that the system is able to cover 50% of the load needs of the building [24]. In addition, the COP system is 1.4, which reveals the system efficiency.
On the other hand, the investigation [25] couples the solar energy to a traditional vapor compression air conditioner to perform a new hybrid solar-driven AC system. The proposed system was modeled and controlled using TRNSYS software in order to improve its energy efficiency. It is constituted of three main parts (a vapor compression system, a solar vacuum collector, and a solar storage tank). At steady-state conditions, the compressor power consumption was decreased from 1.45 to 1.24 kW, which is traduced by a global energy saving of about 14 and 7.1% for only the compressor. Likewise, an energy saving achieved by the condenser fan is about 2.6% [25], which allows increasing the COP. Hence, the authors reported that the system is able to satisfy efficiently the cooling requirements.
These systems have long-term environmental benefits and significant energy efficiency like the absorption AC systems [26]. In fact, they use natural refrigerants such as the water [27] and can be driven by a low-temperature heat source [28].
Several studies have been focused on the design of solar adsorption AC systems. Nonetheless, their design is complex and some parameters, like the heat rejection, are not easy to be determined using classical tools [27]. In this investigation, the authors developed a dynamic model to simulate a solar cooling system equipped with a backup unit, a heat rejection unit (having a thermal capacity of 35 kW), and adsorption chillers, which are driven by solar collectors distributed over an area of 27.52 m2 to cool a flat building area of 130 m2 in Italy.
The authors expressed the thermal performance of the solar collectors as [27]:
where
The system also cooled about 1000 l of water that can be used in numerous activities. However, the COP of the chiller is much low compared with the electric one: 0.35 and 2.5, respectively. They are computed using Eq. (7) [27].
where
The ratio between the energy supplied by the thermal collectors and the total energy required by the complete system, called solar fraction, is given by Eq. (8) [27].
In addition, the installation costs are very high, about $ 29.022. They can be paid back after about 13 years. In fact, about $ 1085 and 3942.45 kWh of electric energy are saved per year. Another adsorption cooling system using a tubular solar 1-m2 double-glazed collector/adsorber was designed, as shown in Figure 5, according to Ref. [28]. The main objective is to decrease the energy consumption of cooling systems in the sub-Sahara regions in Algeria. Indeed, an energy saving of about 28.3 MWh could be reached during August [28]. However, the solar COP is too low (about 0.21).
Synoptic schema of the adsorption solar cooling system.
In the investigation [29], a reduction of the energy consumption of about 50% was achieved, especially in hot and wet climates due to the use of solar energy for the production of cold. The authors used a traditional cooling system with a dehydrating cooling cycle that can be adapted to the fixed solar cells to air-condition a housing volume of 330 m3 using 20 m2 flat-plate collector and 2 m3 hot water tank [30], which can be employed in household activities. However, the COP of the cooling system is low (about 0.6) and the indoor climate does not fulfill standard comfort criteria for few hours during the cooling season. A new water/air-conditioning system for buildings is presented in Ref. [31]. It is constituted by a solar-driven adsorption chiller, a solar chimney (having 12 m2 of area), and a cooling channel (having 24 m2 of area), through which the hot air is cooled and distributed in the test room (having 200 m3 of volume) under hot and humid, and hot and arid climate. The cyclic cooling capacity and the COP of the chiller reached their maximum values (about 16 kW and 0.71, respectively) during the day (between 15 and 16 h). This allowed decreasing the room temperature by 26.8%. Furthermore, the electric energy consumed by the system is 37% less than that consumed by a split inverter air conditioner having the same cooling power [31].
Absorption and adsorption technologies can be combined in the same AC system in order to further improve its performance. This is the subject of [32] in which the authors proposed novel solar poly-generation systems, based on both adsorption and absorption chiller technologies fed by dish-shaped concentrating and flat photovoltaic/thermal collectors instead of conventional solar collectors. They developed a computer code to determine the optimal system configurations taking into account the operating parameters and the climatic conditions. The systems are applied to buildings (office and residential spaces) located in different climatic European regions. They provided electricity and hot water, as well as they ensured the heating and cooling of the air-conditioned spaces.
On the environmental front, desiccant systems rank among the top efficient cooling systems [33]. In fact, they can decrease the greenhouse gas emissions and improve the energy savings given that they do not use any ozone-depleting refrigerants and consume less energy as compared with the vapor compression systems [34, 35, 36]. Their benefits are meaningful when they interact with renewable energy technologies, such as solar collectors [37, 38]. They also reduce moisture from the indoor air and enhance its quality [39, 40, 41]. For instance, liquid desiccant dehumidification solar systems are used to supply fresh air in humid climate locations using the calcium chloride liquid and a flat-plate solar collector (having an area of 86.16 m2). It allows reducing their latent heat load and then enhancing their efficiency [42, 43]. During the entire cooling season, the proposed system in this study provides 10 [44] and 40 kW for cooling a typical house and a small restaurant, respectively. However, the COP of the desiccant unit is too low (0.41 for the house and 0.45 for the restaurant). The costs of the installation powered by natural gas can be paid back after 11 years if the gas price is 0.5638 $/kg [43]. In addition, this kind of system (having 1 m2 of dehumidifier area and 80 m2 of solar collector area) has been tested under hot and dry climate conditions, and a Multi-Population Genetic Algorithm (MPGA) is developed to optimize the system parameters to reach a maximum energy saving and a minimum payback period. It is shown in Figure 6 according to Ref. [45].
Multi-population genetic algorithm (MPGA) to optimize the desiccant AC system.
In fact, 38% of electricity saving and a payback period of 14 years are achieved [45]. Furthermore, a solar desiccant cooling unit equipped with evacuated solar collectors (having 16 m2 of area), in which the regeneration thermal energy is supplied by a natural gas boiler, and with a conventional air-handling device is enough to obtain a reduction of primary energy consumption and CO2 emissions of 50.2% and 49.8%, respectively. Moreover, the system costs can be paid back after 17 years [36]. A liquid desiccant solar system is combined with two evaporative coolers (a regenerative indirect evaporative cooler and a direct evaporative cooler with an adjustable bypass flow) [46]. This has the objective to improve the performance of the desiccant system by using low-grade heat for air-conditioning [46]. The liquid desiccant system is characterized by a self-cycle solution at dehumidification. Its performance was analyzed through a mathematical model that studies the impact of varying five parameters (solution self-cycle ratio, working to intake air flow ratio, regeneration temperature, ambient air temperature, and humidity ratio). The system can decrease the air temperature of the cooled space to 17.9°C. Nonetheless, the obtained thermal COP is low (0.5) for the design conditions [46]. In addition, the system has the advantage of using lower temperature heat source compared with a conventional AC system. The same technology was also invested for hot climates in Saudi Arabia [47]. The investigation shows that the desiccant evaporative AC system presents a modest performance in dry climates and does not operate in very wet conditions.
On the other hand, three models of solar solid desiccant AC system were performed in Ref. [48] under cold, humid, hot, and dry climates in Tunisia and applied to a building having a volume of 48 m3. The authors used a fixed solid desiccant bed in place of a rotary desiccant wheel. The solar flat-plate collectors (having an area of 2 m2) consist mainly of a transparent cover, a plate absorber, tubes fixed and set under the absorber plate, and insulation on the back side of them. They are made of copper. Water circulates into the tubes in order to be heated. The solar collectors are coupled to the desiccant system (it consists of a desiccant dehumidifier, an air–air heat exchanger, a water-air heat exchanger, and a humidifier). This provides the heat required to regenerate it, precisely the desiccant dehumidifier. The coupling is ensured by a water storage tank and a heating coil inserted in the return air stream of the desiccant system [48].
The authors expressed the thermal balance for the absorber as follows [48]:
where ‘abs’ refers to absorber,
For the tube, the thermal balance is written as [48]:
where
The value of the Nusselt number
The numerical values of the temperature and humidity show that the desired comfort is reached by the three proposed models under different climatic conditions.
Table 1 summarizes the design values and the effectiveness of the three technologies of solar AC systems investigated in the present chapter.
Solar air-conditioning systems | ||||
---|---|---|---|---|
Absorption systems [3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25] | Adsorption systems [26, 27, 28, 29, 30, 31, 32] | Desiccant systems [33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48] | ||
Design values | ||||
Design optimization | Insulating the walls and cooling the roof of the building. Using parabolic and concentrated thermal collectors. Combining solar energy and biomass. Small size of collectors and tanks Adding batteries | Using low-temperature heat source. Using sustainable adsorption chillers. Using tubular solar double-glazed collector/adsorber. | Using dehumidifier to reduce moisture from the cooled air. Using multi-population genetic algorithm to optimize the system parameters. Using a natural gas boiler to regenerate thermal energy. | |
Cooling capacity | From 5 to 16.5 kW | About 16 kW | About 40 kW | |
Effectiveness | COP | From 0.3 to 0.75 and sometimes up to 1.4 | From 0.2 to 0.7 | From 0.41 to 0.5 |
Environmental benefits | Reduction of the energy consumption up to 80% (especially during the summer). Reduction of the CO2 emissions up to 95% (up to 3000 kg). | Energy saving: up to 28.3 MWh. Up to 50%. | Reduction of the energy consumption up to 52%. Reduction of the CO2 emissions up to 49.8%. |
Design values and effectiveness of absorption, adsorption, and desiccant solar AC systems.
From research studies reviewed in this chapter, we conclude that whatever the technology, solar AC systems have many environmental benefits compared with those that are driven by conventional vapor compression cycles. In fact, traditional AC systems operate with chlorofluorocarbons and hydrofluorocarbon refrigerants that impact on ozone depletion [49]. Hence, solar AC systems present an interesting solution to inhibit the harmful effects on the environment. It is observed that they significantly lower the emission of greenhouse gases into the atmosphere, achieve the desired comfort, and reach a considerable saving of energy of up to 80%. They also can be installed in all regions and operating under all climatic conditions. On the other hand, the solar air-conditioning can effectively mitigate peak load pressures occurred with the use of conventional air conditioners, thanks to the heat storage process. Indeed, the heat is especially stored when the solar irradiance is high and can be after harnessed when the solar radiation becomes deficient [50]. This fact ensures the continuous operation of the solar AC systems. In terms of COP, the thermal COP of a solar AC system is generally lower than those of a conventional AC system without decreasing the solar system performance. All these benefits make solar AC systems attractive and extensively integrated into modern buildings. This comparative study is illustrated in the following Table 2.
Solar air-conditioning systems | Conventional air-conditioning systems | ||
---|---|---|---|
Designs of installations | Complex installations and new components are added to them according to the technology adopted (solar collectors, boiler, absorber, adsorber, generator, desiccant bed, rotary wheel and so on). | Simple installations based on the vapor compression cycles | |
Costs | Maintenance is frequent and expensive, especially for the desiccant AC systems. - 924 €/m2 of the solar collector (for solar absorption AC systems). - Up to $ 29.022 that can be paid back after 13 years (for solar adsorption AC systems). - Gas price up to 0.5638 $/kg can be paid after 11–17 years (for solar desiccant AC systems). | Low costs | |
Effectiveness | COP | Low COP (according to the technology of the solar AC system) | High COP |
Environmental benefits | Use lower temperature heat source Continuous operation of the solar AC systems Driven by an exhausted clean energy resource (solar) Reduce the CO2 emissions into the atmosphere Can be installed in regions where the electricity is unavailable (desert, etc.) Reduce the energy consumption | Use harmful refrigerants Depend on a supply of electricity Driven by a vapor compression cycle Contribute to the global warming Impact on ozone depletion High energy consumption |
Advantages and disadvantages of solar AC systems compared with conventional AC ones.
The solar AC systems reported in this chapter present an interesting worldwide solution to reduce the harmful effects (high energy consumption and pollution) of traditional AC systems. In fact, research studies revealed that absorption, adsorption, and desiccant systems allowed saving energy up to 80, 50, and 52%, respectively, thanks to the optimization of their designs at the level of using environmentally unfriendly refrigerants, investing in the free and clean solar energy to power them, as well as at the level of the choice of the components that comprise them. Therefore, these systems also reduced the pollution rate up to 95% (about 3000 kg of CO2), especially the absorption systems. In addition, their use is remarkably suitable in rural regions where the electricity is not available or its shortage is frequent. Some solar AC systems are also equipped with chilled or hot water tanks, which can be used in various activities (household, agricultural, and so on). However, their coefficient of performance is lower than 1 in most cases compared with the traditional AC systems that their coefficient can reach the value 3. Moreover, the installation and maintenance costs of the most solar AC systems are relatively high. They can reach up to $ 29.000 and be paid back after at least 9 years. Hence, we can reach a long-term sustainability. Nonetheless, the design of these systems, especially adsorption and desiccant AC systems, is complex.
Maize is one of the most important cereal crop cultivated worldwide. It is popularly known as queen of cereals because it has highest population yield among the cereals [1]. Maize is the crop of diverse environmental conditions and now considered as one of the fastest growing cash crops in the world [2] and may play significant role to satisfy the ever increasing demand of world population. It is a multi-utility crop with major source of food, feed, fodder and industrial raw material which also provides huge opportunity to various stakeholders for crop diversification, value addition and employment generation [3, 4]. Maize plant is often induced by various types of naturally occurring pathogens like bacteria, virus, fungi and nematodes etc. and are detrimental to the yield and quality of grains and thereby subsequently affect the economy and threaten the food security around the globe [5]. Diseases are one of major obstacle in understanding the yield potential of maize. Among the disease causing pathogen in maize, fungal diseases caused by
Major diseases of maize caused by
Many
Mycotoxins are low-molecular-weight secondary metabolites produced by various fungal group specially
Fumonisins (FUMs), especially FUM B1 (FB1) produced by
Chemical structure of some important mycotoxin produced by
Mycotoxin | Pathogen | Host | Reference |
---|---|---|---|
Beauvericin | Maize | [54, 55] | |
Moniliformin | Maize | [17] | |
Nivalenol | Maize | [56] | |
Fusaproliferin | Maize | [17] | |
Fusarin and fusaric acid | Maize | [57] |
Some of the emerging mycotoxin produced by
Earlier detection of plant pathogens is very important for plant health certification and to conduct the disease management appropriately [58]. The detection and enumeration of disease causing pathogen have always been challenging issues over the years. The environment form which they are originated, pose difficulties in identification, isolation and quantification of pathogen. Developing the accurate and effective detection methods and assay is very challenging for the pathogen like
The significant problems caused by
Antibiosis, a kind of interaction takes place between two organisms when one produces antimicrobial metabolites called antibiotics that directly check the growth and metabolism of the other organism. Antibiotics are low molecular weight toxic organic compound produced by many organisms in order control the growth of pathogen. It is assumed to be one of most effective measures having antagonistic activity against wide range of phytopathogen. Bacteria can either produce single antibiotic and toxin or can produce them in multiple numbers. The antibiotic and toxin produce by bacteria include pioluteorin, pyrrolnitrin, hydrogen cyanide (HCN), oomycins, polymyxin, circulin, colistin and tensin etc. [73]. Bacteria and fungi of various genera, such as
Cell wall-degrading enzymes produced by biocontrol strains of bacteria and fungi have a definite role in restricting the growth of various pathogenic fungi including
Competition between pathogens and non-pathogens for nutrient resources is important for limiting disease incidence and severity. Rhizosphere is hotspot zone of microorganism and nutrient rich environment which provide a suitable platform for the interaction. Competition for these nutrients and niches is a fundamental mechanism by which beneficial microorganism both bacteria and fungi protect plants from phytopathogens. The interaction between them brings the beneficial microbes to control the disease causing pathogen. Soilborne pathogens, such as species of
Iron is one of the most common trace elements in nature required by almost all the living organism for their growth and metabolism. Siderophores are low molecular weight extracellular chelating compounds and have a great affinity for ferric iron that are produced by many microorganism like
Rhizospheric microbes protect the plant not only through their antagonistic properties but also help the plant to defend itself from the pathogenic attack. The term induced resistance is meant for the induced state of resistance in plants triggered by various biological inducers and subsequent protection of non-exposed plant parts against future attack by pathogenic microbes of any kind. Induction of resistance can be local and/or systemic in nature depending on various factor such as types, source, and stimuli. There are two types of induced resistance namely SAR and ISR which provide long-lasting resistance against plant pathogens. Systemic acquired resistance (SAR) is mediated by salicylic acid (SA) and produced following pathogen infection and leads to the expression of pathogenesis-related (PR) proteins. PR proteins include enzymes which may act directly to lyse invading cells, reinforce cell wall boundaries to resist infections, or induce localized cell death [78]. Induced systemic resistance is the process of active resistance against pathogen and is induced upon by colonization of beneficial microbes like PGPF and PGPR or infection by some specific pathogen. It does not rely on SA but depends on the pathways regulated by jasmonate and ethylene [86]. Pathogenic microorganisms trigger a wide range of defense mechanisms in plants through ISR. The major changes occurs in root of the host pant through ISR are: (1) Strengthening of epidermal and cortical cell wall; (2) increase in levels of defense enzyme such as chitinase, polyphenol oxidase, peroxidase, phenylalanine; (3) increase in phytoalexin production and (4) expression of stress related genes [80]. ISR extending up to the shoots from roots protects the unexposed parts of plants against pathogenic attacks by microorganisms in future [87]. The induced resistance is elicited by various beneficial and non-beneficial organisms and regulated by signal pathways, where plant hormones for example play a vital role in inducing the resistance which is regulated by networks of interconnected signaling pathways [88]. Several
Maize is one of the main contributors to the economy and food security of the world. A Suffering of maize plant by the
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Cells encode “receptors” containing Ub-/Ubl-binding domains that interpret and translate each modification into appropriate cellular responses. Among the different Ubls, NEDD8, which is the ubiquitin’s closest relative, retains many of the structural determinants that enable ubiquitin the ability to target proteins to degradation. Nevertheless, the direct involvement of NEDD8 conjugation to proteasome recruitment has been proved only in a few cases. To date, well-defined major NEDD8 substrates are primarily members of the cullin family, and cullin neddylation does not appear to mark these proteins for degradation. Various studies have demonstrated that selectivity between ubiquitin and NEDD8 is guaranteed by small but substantial differences. Nevertheless, several issues still need to be addressed, mainly concerning which interaction surfaces mediate NEDD8 function and what domains recognize them. Recently, two novel domains identified in KHNYN and N4BP1 proteins have shed new light on this research area. Here, I discuss some recent reports that contributed to shed light on the mechanisms underlining the discrimination between ubiquitin and NEDD8. Understanding the details of these molecular mechanisms represents a prominent facet for the identification of new therapeutic targets.",book:{id:"8301",slug:"ubiquitin-proteasome-system-current-insights-into-mechanism-cellular-regulation-and-disease",title:"Ubiquitin Proteasome System",fullTitle:"Ubiquitin Proteasome System - Current Insights into Mechanism Cellular Regulation and Disease"},signatures:"Elena Santonico",authors:[{id:"271923",title:"Dr.",name:"Elena",middleName:null,surname:"Santonico",slug:"elena-santonico",fullName:"Elena Santonico"}]},{id:"65025",doi:"10.5772/intechopen.82883",title:"E3 Ubiquitin Ligases in Cancer and Their Pharmacological Targeting",slug:"e3-ubiquitin-ligases-in-cancer-and-their-pharmacological-targeting",totalDownloads:1663,totalCrossrefCites:2,totalDimensionsCites:8,abstract:"Ubiquitination plays many critical roles in protein function and regulation. Consequently, mutation and aberrant expression of E3 ubiquitin ligases can drive cancer progression. Identifying key ligase-substrate relationships is crucial to understanding the molecular basis and pathways behind cancer and toward identifying novel targets for cancer therapeutics. Here, we review the importance of E3 ligases in the regulating the hallmarks of cancer, discuss some of the key and novel E3 ubiquitin ligases that drive tumor formation and angiogenesis, and review the clinical development of inhibitors that antagonize their function. We conclude with perspectives on the field and future directions toward understanding ubiquitination and cancer progression.",book:{id:"8301",slug:"ubiquitin-proteasome-system-current-insights-into-mechanism-cellular-regulation-and-disease",title:"Ubiquitin Proteasome System",fullTitle:"Ubiquitin Proteasome System - Current Insights into Mechanism Cellular Regulation and Disease"},signatures:"Joseph Y. Ong and Jorge Z. Torres",authors:[{id:"186645",title:"Dr.",name:"Jorge",middleName:null,surname:"Torres",slug:"jorge-torres",fullName:"Jorge Torres"},{id:"264944",title:"Mr.",name:"Joseph",middleName:null,surname:"Ong",slug:"joseph-ong",fullName:"Joseph Ong"}]},{id:"28199",doi:"10.5772/31082",title:"F0F1 ATP Synthase: A Fascinating Challenge for Proteomics",slug:"f0f1-atp-synthase-a-fascinating-challenge-for-proteomics",totalDownloads:5529,totalCrossrefCites:2,totalDimensionsCites:8,abstract:null,book:{id:"780",slug:"proteomics-human-diseases-and-protein-functions",title:"Proteomics",fullTitle:"Proteomics - Human Diseases and Protein Functions"},signatures:"Federica Dabbeni-Sala, Amit Kumar Rai and Giovanna Lippe",authors:[{id:"85523",title:"Prof.",name:"Giovanna",middleName:null,surname:"Lippe",slug:"giovanna-lippe",fullName:"Giovanna Lippe"},{id:"149272",title:"Dr.",name:"Federica",middleName:null,surname:"Dabbeni-Sala",slug:"federica-dabbeni-sala",fullName:"Federica Dabbeni-Sala"},{id:"149273",title:"Dr.",name:"Amit",middleName:null,surname:"Kumar Rai",slug:"amit-kumar-rai",fullName:"Amit Kumar Rai"}]},{id:"28201",doi:"10.5772/31113",title:"Identification of the Novel Plasminogen Receptor, Plg-RKT",slug:"identification-of-the-novel-plasminogen-receptor-plg-rkt",totalDownloads:2414,totalCrossrefCites:1,totalDimensionsCites:4,abstract:null,book:{id:"780",slug:"proteomics-human-diseases-and-protein-functions",title:"Proteomics",fullTitle:"Proteomics - Human Diseases and Protein Functions"},signatures:"Lindsey A. Miles, Nicholas M. Andronicos, Emily I. Chen, Nagyung Baik, Hongdong Bai, Caitlin M. Parmer, Shahrzad Lighvani, Samir Nangia, William B. Kiosses, Mark P. Kamps, John R. Yates III and Robert J. Parmer",authors:[{id:"85634",title:"Dr.",name:"Lindsey A.",middleName:null,surname:"Miles",slug:"lindsey-a.-miles",fullName:"Lindsey A. Miles"},{id:"85772",title:"Dr.",name:"Nicholas M.",middleName:null,surname:"Andronicos",slug:"nicholas-m.-andronicos",fullName:"Nicholas M. Andronicos"},{id:"85773",title:"Dr.",name:"Emily I.",middleName:null,surname:"Chen",slug:"emily-i.-chen",fullName:"Emily I. Chen"},{id:"85775",title:"MSc.",name:"Nagyung",middleName:null,surname:"Baik",slug:"nagyung-baik",fullName:"Nagyung Baik"},{id:"85776",title:"Dr.",name:"Hongdong",middleName:null,surname:"Bai",slug:"hongdong-bai",fullName:"Hongdong Bai"},{id:"85777",title:"Ms.",name:"Caitlin M.",middleName:null,surname:"Parmer",slug:"caitlin-m.-parmer",fullName:"Caitlin M. 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Parmer"},{id:"123594",title:"Dr.",name:"Samir",middleName:null,surname:"Nangia",slug:"samir-nangia",fullName:"Samir Nangia"},{id:"123595",title:"Dr.",name:"Shahrzad",middleName:null,surname:"Lighvani",slug:"shahrzad-lighvani",fullName:"Shahrzad Lighvani"}]}],mostDownloadedChaptersLast30Days:[{id:"70577",title:"Proteoforms: General Concepts and Methodological Process for Identification",slug:"proteoforms-general-concepts-and-methodological-process-for-identification",totalDownloads:899,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"The term proteoform is used to denote all the molecular forms in which the protein product of a single gene can be found. The most frequent processes that lead to transcript modification and the biological implications of these changes observed in the final protein product will be discussed. Proteoforms arising from genetic variations, alternatively spliced RNA transcripts and post-translational modifications will be commented. This chapter will present an evolution of the techniques used to identify the proteoforms and the importance of this identification for understanding of biological processes. This chapter highlights the fundamental concepts in the field of top-down mass spectrometry (TDMS), and provides numerous examples for the use of knowledge obtained from the identification of proteoforms. The identification of mutant proteins is one of the emerging areas of proteogenomics and has the potential to recognize novel disease biomarkers and may point to useful targets for identification of therapeutic approaches.",book:{id:"9352",slug:"proteoforms-concept-and-applications-in-medical-sciences",title:"Proteoforms",fullTitle:"Proteoforms - Concept and Applications in Medical Sciences"},signatures:"Jucélia da Silva Araújo and Olga Lima Tavares Machado",authors:[{id:"30130",title:"Dr.",name:"Olga Lima Tavares",middleName:null,surname:"Machado",slug:"olga-lima-tavares-machado",fullName:"Olga Lima Tavares Machado"},{id:"310148",title:"Dr.",name:"Jucelia",middleName:null,surname:"Da Silva Araujo",slug:"jucelia-da-silva-araujo",fullName:"Jucelia Da Silva Araujo"}]},{id:"65025",title:"E3 Ubiquitin Ligases in Cancer and Their Pharmacological Targeting",slug:"e3-ubiquitin-ligases-in-cancer-and-their-pharmacological-targeting",totalDownloads:1658,totalCrossrefCites:2,totalDimensionsCites:8,abstract:"Ubiquitination plays many critical roles in protein function and regulation. Consequently, mutation and aberrant expression of E3 ubiquitin ligases can drive cancer progression. Identifying key ligase-substrate relationships is crucial to understanding the molecular basis and pathways behind cancer and toward identifying novel targets for cancer therapeutics. Here, we review the importance of E3 ligases in the regulating the hallmarks of cancer, discuss some of the key and novel E3 ubiquitin ligases that drive tumor formation and angiogenesis, and review the clinical development of inhibitors that antagonize their function. We conclude with perspectives on the field and future directions toward understanding ubiquitination and cancer progression.",book:{id:"8301",slug:"ubiquitin-proteasome-system-current-insights-into-mechanism-cellular-regulation-and-disease",title:"Ubiquitin Proteasome System",fullTitle:"Ubiquitin Proteasome System - Current Insights into Mechanism Cellular Regulation and Disease"},signatures:"Joseph Y. Ong and Jorge Z. Torres",authors:[{id:"186645",title:"Dr.",name:"Jorge",middleName:null,surname:"Torres",slug:"jorge-torres",fullName:"Jorge Torres"},{id:"264944",title:"Mr.",name:"Joseph",middleName:null,surname:"Ong",slug:"joseph-ong",fullName:"Joseph Ong"}]},{id:"65109",title:"Ubiquitin Signaling in Regulation of the Start of the Cell Cycle",slug:"ubiquitin-signaling-in-regulation-of-the-start-of-the-cell-cycle",totalDownloads:1559,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"The small protein ubiquitin plays a vital role in virtually all aspects of cellular life. Among the diverse signaling outcomes associated with ubiquitination, the most well-established is the targeted degradation of substrates via the proteasome. During cell growth and proliferation, ubiquitin plays an outsized role in promoting progression through the cell cycle. In particular, ubiquitin-mediated degradation is critically important at transition points where it provides directionality and irreversibility to the cell cycle, which is essential for maintaining genome integrity. Specifically, the boundary between G1 and S-phase is tightly regulated by the ubiquitin proteasome system. Notably, the G1/S boundary represents a major barrier to cell proliferation and is universally dysfunctional in cancer cells, allowing for the unbridled proliferation observed in malignancy. Numerous E3 ubiquitin ligases, which facilitate the ubiquitination of specific substrates, have been shown to control G1/S. In this chapter, we will discuss components in the ubiquitin proteasome system that are implicated in G1/S control, how these enzymes are interconnected, gaps in our current knowledge, and the potential role of these pathways in the cancer cycle and disease proliferation.",book:{id:"8301",slug:"ubiquitin-proteasome-system-current-insights-into-mechanism-cellular-regulation-and-disease",title:"Ubiquitin Proteasome System",fullTitle:"Ubiquitin Proteasome System - Current Insights into Mechanism Cellular Regulation and Disease"},signatures:"Michael James Emanuele and Taylor Paige Enrico",authors:[{id:"264977",title:"Dr.",name:"Michael",middleName:null,surname:"Emanuele",slug:"michael-emanuele",fullName:"Michael Emanuele"},{id:"282200",title:"Ms.",name:"Taylor",middleName:null,surname:"Enrico",slug:"taylor-enrico",fullName:"Taylor Enrico"}]},{id:"60432",title:"Protein-Based Detection Methods for Genetically Modified Crops",slug:"protein-based-detection-methods-for-genetically-modified-crops",totalDownloads:1393,totalCrossrefCites:3,totalDimensionsCites:4,abstract:"The generation of genetically modified (GM) crops is rapidly expanding each and every year around the world. The well-being and quality assessment of these harvests are vital issues with respect to buyers’ interests. This drove the administrative specialists to execute an arrangement of extremely strict strategies for the endorsement to develop and use GMOs and to produce an interest in scientific techniques equipped for identifying GM crops. The GM crops have been added to the effective fuse of various attributes by presenting transgenes, for example, Bacillus thuringiensis (Bt) insecticidal qualities, in various crop species. GM crops give critical financial, natural, well-being and social advantages to both small and large agriculturists. The detection strategies incorporate either DNA-based or protein-based measures. Different immunoassays or catalyst connected immunosorbent tests are delicate and more affordable; however, they need experienced technicians. A very simple method, that is, immunochromatographic (ICS) test, is set up in the world, which is modest, compact and simple to utilize. The ICS is a semiquantitative method for indicative screening and semi-measurement of new remote proteins presented through hereditary change of plants. The strip is the easiest method for the assessment of several Bt crop plants for insecticidal quality.",book:{id:"6635",slug:"protein-protein-interaction-assays",title:"Protein-Protein Interaction Assays",fullTitle:"Protein-Protein Interaction Assays"},signatures:"Kausar Malik, Haleema Sadia and Muhammad Hamza Basit",authors:[{id:"238750",title:"Prof.",name:"Kausar",middleName:null,surname:"Malik",slug:"kausar-malik",fullName:"Kausar Malik"},{id:"243713",title:"Dr.",name:"Haleema",middleName:null,surname:"Sadia",slug:"haleema-sadia",fullName:"Haleema Sadia"},{id:"243714",title:"Mr.",name:"Muhammad Hamza",middleName:null,surname:"Basit",slug:"muhammad-hamza-basit",fullName:"Muhammad Hamza Basit"}]},{id:"60064",title:"Rapid Endosomal Recycling",slug:"rapid-endosomal-recycling",totalDownloads:1304,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"Peripheral membrane proteins are endocytosed by constitutive processes of membrane invaginations, followed by internalization driven by diverse endocytic machinery available at the cell surface. It is believed that after endocytic uptake, cargo proteins proceed either through the endosomal recycling circuit of the cell or travel toward late endosomes for degradation. In this chapter, we analyzed trafficking of seven cargo molecules (transferrin receptor, fully conformed MHC-I, non-conformed MHC-I, cholera-toxin B subunit, CD44, ICAM1, and G-protein-coupled receptor Rae-1) known to use the distinct endocytic route. For that purpose, we developed the software for multicompartment analysis of intracellular trafficking. We demonstrate that all endocytosed molecules are rapidly recycled and propose that the rapid recycling is a constitutive process that should be considered in the analysis of intracellular trafficking of peripheral membrane proteins.",book:{id:"6649",slug:"peripheral-membrane-proteins",title:"Peripheral Membrane Proteins",fullTitle:"Peripheral Membrane Proteins"},signatures:"Hana Mahmutefendić, Gordana Blagojević Zagorac, Senka Maćešić\nand Pero Lučin",authors:[{id:"152008",title:"Prof.",name:"Pero",middleName:null,surname:"Lučin",slug:"pero-lucin",fullName:"Pero Lučin"},{id:"245873",title:"Prof.",name:"Hana",middleName:null,surname:"Mahmutefendić",slug:"hana-mahmutefendic",fullName:"Hana Mahmutefendić"},{id:"245875",title:"Prof.",name:"Gordana",middleName:null,surname:"Blagojević Zagorac",slug:"gordana-blagojevic-zagorac",fullName:"Gordana Blagojević Zagorac"},{id:"245876",title:"Prof.",name:"Senka",middleName:null,surname:"Maćešić",slug:"senka-macesic",fullName:"Senka Maćešić"}]}],onlineFirstChaptersFilter:{topicId:"913",limit:6,offset:0},onlineFirstChaptersCollection:[{id:"81188",title:"Structure- and Design-Based Difficulties in Recombinant Protein Purification in Bacterial Expression",slug:"structure-and-design-based-difficulties-in-recombinant-protein-purification-in-bacterial-expression",totalDownloads:24,totalDimensionsCites:0,doi:"10.5772/intechopen.103958",abstract:"Protein purification is not a simple task. Yet, overexpression at bacterial systems with recombinant modifications brings further difficulties. Adding a tag, an affinity label, and expressing particular domains of the whole protein, especially hydrophobic sections, make purification a challenging process. Protein folding pattern may perturb N- or C-terminal tag and this terminal preference may lead to poor purification yield. Codon optimization, solvent content and type, ionic conditions, resin types, and self-cleavage of recombinant proteins bring further difficulties to protein expression and purification steps. The chapter overviews problems of protein purification through a small peptide overexpression in bacteria (Recombinant anti-SARS Coronavirus 2 (SARS-Cov-2) Spike protein Receptor Binding Domain (RBD) antibody (Clone Sb#14). The chapter also covers troubleshooting at distinct steps and highlights essential points to solve crucial issues of protein purification.",book:{id:"10839",title:"Protein Detection",coverURL:"https://cdn.intechopen.com/books/images_new/10839.jpg"},signatures:"Kubra Acikalin Coskun, Nazlıcan Yurekli, Elif Cansu Abay, Merve Tutar, Mervenur Al and Yusuf Tutar"},{id:"79353",title:"Protein Detection in Clinical Diagnosis and Management of Prevalent Neurodegenerative Diseases and Metabolic Disorders",slug:"protein-detection-in-clinical-diagnosis-and-management-of-prevalent-neurodegenerative-diseases-and-m",totalDownloads:88,totalDimensionsCites:0,doi:"10.5772/intechopen.101051",abstract:"An accurate diagnosis gives leeway to cost-effective treatments. However, many diseases continue to evolve; hence, their etiology is sometimes missed due to the procedures used during diagnosis. Protein-related diseases include proteopathies (proteinopathies) such as neurodegenerative diseases and metabolic disorders like protein-energy malnutrition and some hormonopathies. Hormonopathies are associated with the change in the production of hormones. Diabetes mellitus, a type of hormonopathy, is reviewed in this work alongside neurodegenerative diseases and protein-energy malnutrition. This chapter aims to elucidate more on the diagnosis of these diseases considering the structure and function of their proteins viz-a-viz their deficiencies and hyper-production in man. Their pathogenesis and the principles underlying their diagnosis are further discussed to optimize the management of these diseases among patients.",book:{id:"10839",title:"Protein Detection",coverURL:"https://cdn.intechopen.com/books/images_new/10839.jpg"},signatures:"Ohanube A.K. Goodluck, Obeta M. Uchejeso and Ikeagwulonu R. 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The whole process of submitting an article and editing of the submitted article goes extremely smooth and fast, the number of reads and downloads of chapters is high, and the contributions are also frequently cited.",author:{id:"55578",name:"Antonio",surname:"Jurado-Navas",institutionString:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRisIQAS/Profile_Picture_1626166543950",slug:"antonio-jurado-navas",institution:{id:"720",name:"University of Malaga",country:{id:null,name:"Spain"}}}},{id:"6",text:"It is great to work with the IntechOpen to produce a worthwhile collection of research that also becomes a great educational resource and guide for future research endeavors.",author:{id:"259298",name:"Edward",surname:"Narayan",institutionString:null,profilePictureURL:"https://mts.intechopen.com/storage/users/259298/images/system/259298.jpeg",slug:"edward-narayan",institution:{id:"3",name:"University of Queensland",country:{id:null,name:"Australia"}}}}]},series:{item:{id:"14",title:"Artificial Intelligence",doi:"10.5772/intechopen.79920",issn:"2633-1403",scope:"Artificial Intelligence (AI) is a rapidly developing multidisciplinary research area that aims to solve increasingly complex problems. In today's highly integrated world, AI promises to become a robust and powerful means for obtaining solutions to previously unsolvable problems. This Series is intended for researchers and students alike interested in this fascinating field and its many applications.",coverUrl:"https://cdn.intechopen.com/series/covers/14.jpg",latestPublicationDate:"May 18th, 2022",hasOnlineFirst:!0,numberOfPublishedBooks:9,editor:{id:"218714",title:"Prof.",name:"Andries",middleName:null,surname:"Engelbrecht",slug:"andries-engelbrecht",fullName:"Andries Engelbrecht",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRNR8QAO/Profile_Picture_1622640468300",biography:"Andries Engelbrecht received the Masters and PhD degrees in Computer Science from the University of Stellenbosch, South Africa, in 1994 and 1999 respectively. He is currently appointed as the Voigt Chair in Data Science in the Department of Industrial Engineering, with a joint appointment as Professor in the Computer Science Division, Stellenbosch University. Prior to his appointment at Stellenbosch University, he has been at the University of Pretoria, Department of Computer Science (1998-2018), where he was appointed as South Africa Research Chair in Artifical Intelligence (2007-2018), the head of the Department of Computer Science (2008-2017), and Director of the Institute for Big Data and Data Science (2017-2018). In addition to a number of research articles, he has written two books, Computational Intelligence: An Introduction and Fundamentals of Computational Swarm Intelligence.",institutionString:null,institution:{name:"Stellenbosch University",institutionURL:null,country:{name:"South Africa"}}},editorTwo:null,editorThree:null},subseries:{paginationCount:10,paginationItems:[{id:"22",title:"Applied Intelligence",coverUrl:"https://cdn.intechopen.com/series_topics/covers/22.jpg",editor:{id:"27170",title:"Prof.",name:"Carlos",middleName:"M.",surname:"Travieso-Gonzalez",slug:"carlos-travieso-gonzalez",fullName:"Carlos Travieso-Gonzalez",profilePictureURL:"https://mts.intechopen.com/storage/users/27170/images/system/27170.jpeg",biography:"Carlos M. Travieso-González received his MSc degree in Telecommunication Engineering at Polytechnic University of Catalonia (UPC), Spain in 1997, and his Ph.D. degree in 2002 at the University of Las Palmas de Gran Canaria (ULPGC-Spain). He is a full professor of signal processing and pattern recognition and is head of the Signals and Communications Department at ULPGC, teaching from 2001 on subjects on signal processing and learning theory. His research lines are biometrics, biomedical signals and images, data mining, classification system, signal and image processing, machine learning, and environmental intelligence. He has researched in 52 international and Spanish research projects, some of them as head researcher. He is co-author of 4 books, co-editor of 27 proceedings books, guest editor for 8 JCR-ISI international journals, and up to 24 book chapters. He has over 450 papers published in international journals and conferences (81 of them indexed on JCR – ISI - Web of Science). He has published seven patents in the Spanish Patent and Trademark Office. He has been a supervisor on 8 Ph.D. theses (11 more are under supervision), and 130 master theses. He is the founder of The IEEE IWOBI conference series and the president of its Steering Committee, as well as the founder of both the InnoEducaTIC and APPIS conference series. He is an evaluator of project proposals for the European Union (H2020), Medical Research Council (MRC, UK), Spanish Government (ANECA, Spain), Research National Agency (ANR, France), DAAD (Germany), Argentinian Government, and the Colombian Institutions. He has been a reviewer in different indexed international journals (<70) and conferences (<250) since 2001. He has been a member of the IASTED Technical Committee on Image Processing from 2007 and a member of the IASTED Technical Committee on Artificial Intelligence and Expert Systems from 2011. \n\nHe has held the general chair position for the following: ACM-APPIS (2020, 2021), IEEE-IWOBI (2019, 2020 and 2020), A PPIS (2018, 2019), IEEE-IWOBI (2014, 2015, 2017, 2018), InnoEducaTIC (2014, 2017), IEEE-INES (2013), NoLISP (2011), JRBP (2012), and IEEE-ICCST (2005)\n\nHe is an associate editor of the Computational Intelligence and Neuroscience Journal (Hindawi – Q2 JCR-ISI). He was vice dean from 2004 to 2010 in the Higher Technical School of Telecommunication Engineers at ULPGC and the vice dean of Graduate and Postgraduate Studies from March 2013 to November 2017. He won the “Catedra Telefonica” Awards in Modality of Knowledge Transfer, 2017, 2018, and 2019 editions, and awards in Modality of COVID Research in 2020.\n\nPublic References:\nResearcher ID http://www.researcherid.com/rid/N-5967-2014\nORCID https://orcid.org/0000-0002-4621-2768 \nScopus Author ID https://www.scopus.com/authid/detail.uri?authorId=6602376272\nScholar Google https://scholar.google.es/citations?user=G1ks9nIAAAAJ&hl=en \nResearchGate https://www.researchgate.net/profile/Carlos_Travieso",institutionString:null,institution:{name:"University of Las Palmas de Gran Canaria",institutionURL:null,country:{name:"Spain"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"13633",title:"Prof.",name:"Abdelhamid",middleName:null,surname:"Mellouk",slug:"abdelhamid-mellouk",fullName:"Abdelhamid Mellouk",profilePictureURL:"https://mts.intechopen.com/storage/users/13633/images/1567_n.jpg",institutionString:null,institution:{name:"Paris 12 Val de Marne University",institutionURL:null,country:{name:"France"}}},{id:"109268",title:"Dr.",name:"Ali",middleName:null,surname:"Al-Ataby",slug:"ali-al-ataby",fullName:"Ali Al-Ataby",profilePictureURL:"https://mts.intechopen.com/storage/users/109268/images/7410_n.jpg",institutionString:null,institution:{name:"University of Liverpool",institutionURL:null,country:{name:"United Kingdom"}}},{id:"3807",title:"Dr.",name:"Carmelo",middleName:"Jose Albanez",surname:"Bastos-Filho",slug:"carmelo-bastos-filho",fullName:"Carmelo Bastos-Filho",profilePictureURL:"https://mts.intechopen.com/storage/users/3807/images/624_n.jpg",institutionString:null,institution:{name:"Universidade de Pernambuco",institutionURL:null,country:{name:"Brazil"}}},{id:"38850",title:"Dr.",name:"Efren",middleName:null,surname:"Gorrostieta Hurtado",slug:"efren-gorrostieta-hurtado",fullName:"Efren Gorrostieta Hurtado",profilePictureURL:"https://mts.intechopen.com/storage/users/38850/images/system/38850.jpg",institutionString:null,institution:{name:"Autonomous University of Queretaro",institutionURL:null,country:{name:"Mexico"}}},{id:"239041",title:"Prof.",name:"Yang",middleName:null,surname:"Yi",slug:"yang-yi",fullName:"Yang Yi",profilePictureURL:"https://mts.intechopen.com/storage/users/239041/images/system/239041.jpeg",institutionString:"Virginia Tech",institution:{name:"Virginia Tech",institutionURL:null,country:{name:"United States of America"}}}]},{id:"23",title:"Computational Neuroscience",coverUrl:"https://cdn.intechopen.com/series_topics/covers/23.jpg",editor:{id:"14004",title:"Dr.",name:"Magnus",middleName:null,surname:"Johnsson",slug:"magnus-johnsson",fullName:"Magnus Johnsson",profilePictureURL:"https://mts.intechopen.com/storage/users/14004/images/system/14004.png",biography:"Dr Magnus Johnsson is a cross-disciplinary scientist, lecturer, scientific editor and AI/machine learning consultant from Sweden. \n\nHe is currently at Malmö University in Sweden, but also held positions at Lund University in Sweden and at Moscow Engineering Physics Institute. \nHe holds editorial positions at several international scientific journals and has served as a scientific editor for books and special journal issues. \nHis research interests are wide and include, but are not limited to, autonomous systems, computer modeling, artificial neural networks, artificial intelligence, cognitive neuroscience, cognitive robotics, cognitive architectures, cognitive aids and the philosophy of mind. \n\nDr. Johnsson has experience from working in the industry and he has a keen interest in the application of neural networks and artificial intelligence to fields like industry, finance, and medicine. \n\nWeb page: www.magnusjohnsson.se",institutionString:null,institution:{name:"Malmö University",institutionURL:null,country:{name:"Sweden"}}},editorTwo:null,editorThree:null,editorialBoard:[{id:"13818",title:"Dr.",name:"Asim",middleName:null,surname:"Bhatti",slug:"asim-bhatti",fullName:"Asim Bhatti",profilePictureURL:"https://mts.intechopen.com/storage/users/13818/images/system/13818.jpg",institutionString:null,institution:{name:"Deakin University",institutionURL:null,country:{name:"Australia"}}},{id:"151889",title:"Dr.",name:"Joao Luis Garcia",middleName:null,surname:"Rosa",slug:"joao-luis-garcia-rosa",fullName:"Joao Luis Garcia Rosa",profilePictureURL:"https://mts.intechopen.com/storage/users/151889/images/4861_n.jpg",institutionString:null,institution:{name:"University of Sao Paulo",institutionURL:null,country:{name:"Brazil"}}},{id:"103779",title:"Prof.",name:"Yalcin",middleName:null,surname:"Isler",slug:"yalcin-isler",fullName:"Yalcin 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Biochemistry examines macromolecules - proteins, nucleic acids, carbohydrates, and lipids – and their building blocks, structures, functions, and interactions. Much of biochemistry is devoted to enzymes, proteins that catalyze chemical reactions, enzyme structures, mechanisms of action and their roles within cells. Biochemistry also studies small signaling molecules, coenzymes, inhibitors, vitamins, and hormones, which play roles in life processes. Biochemical experimentation, besides coopting classical chemistry methods, e.g., chromatography, adopted new techniques, e.g., X-ray diffraction, electron microscopy, NMR, radioisotopes, and developed sophisticated microbial genetic tools, e.g., auxotroph mutants and their revertants, fermentation, etc. More recently, biochemistry embraced the ‘big data’ omics systems. Initial biochemical studies have been exclusively analytic: dissecting, purifying, and examining individual components of a biological system; in the apt words of Efraim Racker (1913 –1991), “Don’t waste clean thinking on dirty enzymes.” Today, however, biochemistry is becoming more agglomerative and comprehensive, setting out to integrate and describe entirely particular biological systems. The ‘big data’ metabolomics can define the complement of small molecules, e.g., in a soil or biofilm sample; proteomics can distinguish all the comprising proteins, e.g., serum; metagenomics can identify all the genes in a complex environment, e.g., the bovine rumen. 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Dr. Blumenberg’s research is focused on the epidermis, expression of keratin genes, transcription profiling, keratinocyte differentiation, inflammatory diseases and cancers, and most recently the effects of the microbiome on the skin. 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In recent years, the application of chemistry to biological molecules has gained significant interest in medicinal and pharmacological studies. This topic will be devoted to understanding the interplay between biomolecules and chemical compounds, their structure and function, and their potential applications in related fields. Being a part of the biochemistry discipline, the ideas and concepts that have emerged from Chemical Biology have affected other related areas. 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Behind these definitions are hidden all the aspects of normal and pathological functioning of all processes that the topic ‘Metabolism’ will cover within the Biochemistry Series. 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Thus proteomics, an area of research that detects all protein forms expressed in an organism, including splice isoforms and post-translational modifications, is more suitable than genomics for a comprehensive understanding of the biochemical processes that govern life. The most common proteomics applications are currently in the clinical field for the identification, in a variety of biological matrices, of biomarkers for diagnosis and therapeutic intervention of disorders. From the comparison of proteomic profiles of control and disease or different physiological states, which may emerge, changes in protein expression can provide new insights into the roles played by some proteins in human pathologies. Understanding how proteins function and interact with each other is another goal of proteomics that makes this approach even more intriguing. Specialized technology and expertise are required to assess the proteome of any biological sample. Currently, proteomics relies mainly on mass spectrometry (MS) combined with electrophoretic (1 or 2-DE-MS) and/or chromatographic techniques (LC-MS/MS). MS is an excellent tool that has gained popularity in proteomics because of its ability to gather a complex body of information such as cataloging protein expression, identifying protein modification sites, and defining protein interactions. The Proteomics topic aims to attract contributions on all aspects of MS-based proteomics that, by pushing the boundaries of MS capabilities, may address biological problems that have not been resolved yet.",annualVolume:11414,isOpenForSubmission:!0,coverUrl:"https://cdn.intechopen.com/series_topics/covers/18.jpg",editor:{id:"200689",title:"Prof.",name:"Paolo",middleName:null,surname:"Iadarola",fullName:"Paolo Iadarola",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bSCl8QAG/Profile_Picture_1623568118342",institutionString:null,institution:{name:"University of Pavia",institutionURL:null,country:{name:"Italy"}}},editorTwo:{id:"201414",title:"Dr.",name:"Simona",middleName:null,surname:"Viglio",fullName:"Simona Viglio",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRKDHQA4/Profile_Picture_1630402531487",institutionString:null,institution:{name:"University of Pavia",institutionURL:null,country:{name:"Italy"}}},editorThree:null,editorialBoard:[{id:"72288",title:"Dr.",name:"Arli Aditya",middleName:null,surname:"Parikesit",fullName:"Arli Aditya Parikesit",profilePictureURL:"https://mts.intechopen.com/storage/users/72288/images/system/72288.jpg",institutionString:null,institution:{name:"Indonesia International Institute for Life Sciences",institutionURL:null,country:{name:"Indonesia"}}},{id:"40928",title:"Dr.",name:"Cesar",middleName:null,surname:"Lopez-Camarillo",fullName:"Cesar Lopez-Camarillo",profilePictureURL:"https://mts.intechopen.com/storage/users/40928/images/3884_n.png",institutionString:null,institution:{name:"Universidad Autónoma de la Ciudad de México",institutionURL:null,country:{name:"Mexico"}}},{id:"81926",title:"Dr.",name:"Shymaa",middleName:null,surname:"Enany",fullName:"Shymaa Enany",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRqB9QAK/Profile_Picture_1626163237970",institutionString:null,institution:{name:"Suez Canal University",institutionURL:null,country:{name:"Egypt"}}}]}]}},libraryRecommendation:{success:null,errors:{},institutions:[]},route:{name:"profile.detail",path:"/profiles/416191",hash:"",query:{},params:{id:"416191"},fullPath:"/profiles/416191",meta:{},from:{name:null,path:"/",hash:"",query:{},params:{},fullPath:"/",meta:{}}}},function(){var e;(e=document.currentScript||document.scripts[document.scripts.length-1]).parentNode.removeChild(e)}()