\r\n\tGlobalization does not represent a pure and generous process for humanity or other species, but rather it implies social exclusion and also provokes situations of vulnerability in groups of people, forced exclusion, and apartheid: poor job opportunities, lack of access to education, worse socio-sanitary conditions. Specifically, it can be said that social segregation entails the apartheid of social groups of different ages, genders, and ethnicities; these groups live a reality manifested through the deepening of poverty, in terms of increased vulnerability of the poor and groups with little economic, social, cultural, labor and health stability.
\r\n\r\n\tThis book aims to talk about some topics that are neglected in the discourses of academic communities and political elites. The inequality process is deeply rooted among humans and is part of many people's lives in the form of modern apartheid, gender segregation, lack of health access, and cultural gap. All those structural inequality processes are the product of the biopower perpetuated and produced in the macrosystem, exosystem, mesosystem, and microsystem. For many people from the academy, the information-consuming public, and the society in general, it is a problem to talk about these processes, since they have either lost interest or have normalized the structural and social inequity. For this reason, we see it as transcendental to explain how this situation occurs from the most internal fibers to the most evident processes, intending to make it more visible and thus expose the situation for possible solutions.
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The history of urban sprawl dates back from the ancient times of the origin of cities (during what is referred to as the first phase of urbanization in the world). While Gordon and Richardson [1] define urban sprawl as leapfrog development, DiLorenzo [2] defines it as growth with cancer or virus. In the confusion in the definition of urban sprawl, Wilson et al. [3] and Galster et al. [4] state that describing would be more suitable than defining. In this long duration, what was witnessed was the growth of cities from ancestral form to small harbor/rail-based towns and to the present-day cities with skyscrapers adorning landscapes. By the end of the 20th century, urban growth was rapidly pushing cities further and further out, and the cities were expanding spatially, while in the 21st century, the automobile revolution changed the dominant form of city living. This stretched form of the city with low density at the periphery is sometimes called sprawl. Since sprawl is one name for many situations, there has been no clear consensus regarding what exactly “urban sprawl” is or how it is caused. Although many researchers tried to get bring with descriptions of the idea, the fundamental component of most descriptions and most people’s acceptance of sprawl is this: Sprawl is the spread out of an urban area, and it is suburban over more considerable for country land at the fringe of an urban area. Urban sprawl, which is asserted to be carried out for urban growth, is in fact not suitable either for urban growth or rural environments in a real sense. In this sense, since it is carried out in a disorganized and uncontrolled way, it has effects that hinder regional sustainable development [5]. This involves the exchange of open space into various land use purposes, such as housing, building industrial estates and health centers, for sustainable living purposes. Al-Kheder et al. [6] explain urban-growth modeling using multitemporal satellite images.
Urbanization is a metropolitan development that is a response to often less understood implications of technological, economic, social, and political forces and to the physical geography of an area. The pattern of urbanization in India is characterized by a continuous concentration of population and activities in large cities. Kingsley Davis used the term “over-urbanization,” “where in urban misery and rural poverty exist side by side with the result that city can hardly be called dynamic” and where inefficient, unproductive informal sector becomes increasingly apparent [7]. Another scholar, Breese, depicts urbanization in India as pseudo urbanization where people arrive in cities not due to urban pull but due to rural push [8].
The considerable economic and livelihood opportunities in urban areas and an increase in accommodating immigrating populations result in greater urbanization. It is never seen as a vulnerability to environmental growth, but it is the accidental urban area and energetic urban growth, or the sprawl that influences the land use of any area that becomes a substance of concern through its habit in the loss of major farming lands. It is very important to study and determine the information and suggestions interrelated with the problem of unexpected urban growth ensuing sprawl.
Urbanization is a global process in which most developing nations experience that has led to the rise of great metropolitans along with slums and squatter. At the same time, a notice concern is also about the exhaustion of natural resources, increasing pollution and environmental hazards apart from the development of urban-rural fringes and suburban divisions, a host of ecological and socioeconomic factors that have become remarkable challenges of the current era. Chandna highlighted these factors [9].
Urbanization is a universal phenomenon. It is a process of enrich growth in a country’s urban inhabitants accompanied by an even huge development in the financial, political, and cultural importance of cities associated with rural areas. In “The Origin and Growth of Urbanization in the World,” Davis explains and gives the world growth of population and the way of urbanization and growth stages.
The term “urbanization” illustrates a development in the human population associated with the development of energy and resource consumption and widespread land use. Since the rise of population becomes more enrich, the need for goods and services is often driven by addition rather than just rapid population growth. Urbanization refers to a growth in the percentage of a population living in urban areas of an exact size.
The rapid growth of the population is a result of the sparing scientific and medical knowledge and is the fundamental reason for urban growth and population. However, the rapid development of the population in urban centers is also disturbed by economic development, which is decreasing the percentage of the population engaged in agricultural areas. Structural change in employment, especially the growth of the tertiary (service) sector, has led to an improved number of employments in urban areas. Most service firms need to be central business districts (CBDs) to obtain benefits from close communication with each other.
The central business district (CBD) is the main part of the city that contains the major commercial streets and main commercial buildings. Throughout history, the Central Business District has been characterized by land classification and land use changes that include residential, commercial, industrial, and administration purposes. These spatial changes have been used to support Central Business District development. However, in the wake of post war decentralization and the growth popularity of polycentric regions in both Europe and the US, much of this work has itself come under criticism. The main force of the criticism proposes that Central Business Districts are now more likely to practice for the development of suburban lifestyles. However, similar developments, such as core city regeneration, propose that CBDs are now at the heartbeat of a more extensive back to the city movement that (re)promotes the pleasant appearance of city area living through residential expansion, delightful cultural districts, and an urban cool cultural social scene.
The beginning of the 21st century, the Central Business District had turned into a discrete area of the metropolitan city and built-in residencies, retail shops, commercial malls, Central universities, recreational, government, financial institutions, health care centers, and culture centers. The urban area is located at workplaces or educational institutions in the CBD for regular movement. This includes students, doctors, academics, government officials and civil servants, business peoples, formers, and financiers. In the current era, the rapid development of residential expansion and the growth of shopping malls have given a new life to the Central Business District. In addition, multi residential buildings, mega-malls with theaters, Kochi Lulu international shopping mall is an example of a business district area as an entertainment and shopping center. City walk malls are also familiar in central business districts in an attempt to make the CBD a 24 × 7-hour working destination.
Migration is the movement of people from one place to another place for various purposes. Immigrants go away their nation, while migrate peoples enter a country. Migration impacts two nations and places where migrants enter settle. [9] addressed urbanization, migration and economic development and explained the primary stages of urban growth based on the migration of the population and the economic development of a town.
People have so many reasons why they force to move from one nation to another nation. The reasons behind this movement are employment opportunity, economic, education, globalization, and political or environmental condition. Migration is classified as ‘push factor’ and ‘pull factor.’ Push factors force people to migrate; for example, unemployment, lack of infrastructure (such as hospital, education institutions, etc.), natural disasters (such as floods, droughts, earthquakes, cyclones, etc.), local conflicts, war, etc. The people get experience of life and move one place which gives them good life. Pull factors attract people from different places, such as better opportunities for education and employment, better health facilities, and various sources of entertainment.
In India, rapid population growth and migration, greater than before urban population and urbanization, is not predictable. Barnes et al. highlight sprawl development: its patterns, consequences and measures of particular cities and towns of urbanization [10]. Increasing towns and cities are developed with a change in land use along the national highways, and in the nearby surrounding area of the city, this development occurs outside urban areas such as suburban and urban fringes. Urbanization is a structure of metropolitan city growth that is the reason for social, economic, and political forces and to the physical geography of an area. Some of the reasons for the sprawl contain population growth, urban economy, settlement patterns of infrastructure activities such as the construction of bridges, metal and concrete roads and the provision WiFi using public encouraging development. The direct suggestion of such urban sprawl is the land utilization of the region. Sprawl normally infers some type of expansion with impacts such as loss of farmland, open waste space, and environmentally sensitive habitats. Additionally, sprawl is occasionally equal to the growth of towns or cities. In simple words, as a population in an urban area or a city, the border of the city expands to provide accommodation for growth [11, 12]. This extension is measured as sprawl. Generally, sprawl occurs on the sub-urban area, at the edge of an urban fringe or along the highways [13].
The places of sprawl and the region that is impacted by it are distinct from each other [14]. Urban sprawl takes place at the edge of a town or city, and it might have a direct or indirect force on other parts of the urban area within its administrative boundary or on a nearby city. In general, two adjacent views are taken about the outcome or reflection of sprawl. Urban sprawl may have both positive and negative consequences and impacts; however, negative impacts are often more highlighted, as this is uncontrolled or uncoordinated growth, and eventually, the negative impacts obliterate the positive sides. There are some positive impacts of urban sprawl, such as an increase in economic production, an increase in opportunities for employment, better opportunities and better services creating better living conditions, and better lifestyles. Urban sprawl can extend basic services, infrastructure and social capital, such as transportation, sewer, and water, better educational facilities, and health care facilities, to a larger population. However, since it is an uncontrolled and uncoordinated growth resulting in sprawl, the positive impacts are covered up inviting focus only on the negatives [15].
During the nineteenth and early twentieth centuries, in developed countries, urbanization was created, and it also led to industrialization. The surplus population from the villages was motivated to make a mass movement towards cities because of new job opportunities created there. For the cities too, these migrants provided cheap labor for the newly established factories. Due to the present globalized scenario and opening up of economies, the circumstances are similar in developing countries. The huge concentration of investments in cities attracts a large number of migrants from villages who are looking for employment. This creates a large surplus labor force, and because of this, the wages remain low. Developed and developing nations of the world are different not only in the percentage of people living in urban areas but also in the way in which urban centers are taking place. Most megacities are developing worldwide, urban sprawl is a universal problem, and a significant number of city inhabitants live in slums within the city or in urban centers in poverty and polluted environments. These large settlements are frequently highly polluted due to the shortage of urban sanitation services, including drinking water, drainage, garbage pickup, electricity or paved roads. However, urban areas give life for poor people with more employment opportunities and better income to renovate their life compared to rural areas.
Some social welfare societies and environmental welfare and helpers claim that for countries such as India with large land areas, there are too large farmlands and open waste spaces to be concerned about how much land is transformed. They also strain the main benefit of sprawl, which is the delegation of employment to various places in urban areas. Most of the urban centers affected by air pollution based on car culture enable people to commute shorter distances at any time and home. Urban areas construct their own buildings or residential villa like better houses. It is not healthy for people to live in areas with increased densities and smaller meter square of space per individual. Therefore, the better suggestion is for those people to live in larger plots with their own green spaces to go away from city centers and work areas.
The percentage of open land space used by each dweller has improved in the last 25 years by two or three times.
The level of pollution due to motorcar needs can more easily be connected to population densities. Currently, the peoples use their own vehicles for transportation purposes to avoid common transport facilities, and the percentage of usage has rapidly increased. This kind of activity polluted the environment hour’s base movement of vehicles.
All spread out directly to the loss of a significant partial resource that is land. Over the years, urban sprawl has openly been given to result in the poverty and decline of natural surroundings such as woodlands, swamp and wildlife habits. It has also reduced open land spaces. Natural resource use has increased. Urban Sprawl guides land-use patterns that are adverse to the development of sustainable transport and increases the use of personal cars, which in turn results in greater than before changes, traffic, rapid use in fuel utilization and air smog. It is in general a hazard to the human environment.
In areas where sprawl is not controlled, the concentration of humans in residential and industrial areas of urban sprawl might directly amend urban ecosystem patterns and processes. Urban growth connected with urban sprawl not only reduces the amount of ecosystem, open farmland woodland, and open space. The arrival of urban sprawl into rural areas and land loss may also raise agricultural lands for the purpose of roads, power (tower) lines, and pipelines. This kind of activity disturbs the rural ecosystem.
Urban sprawl and urbanization contribute to the loss of farmlands and open spaces. Only in the United States is urban sprawl predicted to consume 7 million acres of farmland, 7 million acres of environmentally sensitive land, and 5 million acres of other lands during the period 2000–2025. Preferred taxation and land use policies work in sync to generate economic pressures that force farmers to sale their land to the urban developer. Builders and urban developers are forced to sell land at a low price due to the former economic crises, and the unreasonable prices of farmland often result in far more sales of their land than continuing farming. Additionally, the number of small land parcels of agricultural land is being separated off to create rural residential and industrial development. These small activities guide the loss of a large amount of dynamic farmland each year. The loss of farmland to build up urban sprawl means not only the loss of food sources but also the loss of ecosystems, since farms include plant and animal habitats in woodlots and hedgerows. The presence of farms on the rural landscape provides reimbursement such as green space, urban–rural economic stability, and protection of the traditional rural lifestyle.
It is an economic theory that productivity is much more enhanced with dense development since ideas move quickly when people are in close proximity. However, when jobs move to the suburbs, people follow them. This may reduce productivity in the city, leading to social loss. In addition, authors state that sprawl leads to creating regional imbalances, such as pulling jobs and people further away from poor communities, increasing inequality. Sprawl also creates segregation of rich and poor or social isolation in general. The problem lies not to the people who have moved to the suburbs but rather to the people who have been left behind. The low-income groups are abandoned in the downtown because they cannot afford a car-based lifestyle. The role of transport technology can explain this social fragmentation. The much congested and deteriorated central towns end up being favorable places for crime and social unrest.
Due to climatic changes, urban regions can have warmer temperatures than urban areas, resulting in urban heat land. The heat land outcome is caused by two reasons. First, dark surfaces such as road networks and building terraces efficiently absorb heat from sunlight and reradiate it as thermal infrared; these dark surfaces can reach temperatures higher than environmental air. Second, urban regions are moderately split of urban vegetation, particularly trees that would provide shadow and fresh air through ecological action. As urban sprawl, the heat land results increase, both in larger geographic extent and in intensity. This is especially true if the urban pattern and features develop extensive tree-cutting and wide road construction. Two decades of urban climate research: a review of turbulence, exchanges of energy and water, and the urban heat island. Satellite multisensor data analysis of urban surface temperatures and land cover.
Atash [12] highlighted the deterioration of urban environments in developing countries. The lifestyle need on automobiles for transportation especially cars forced by sprawl guide to increase in fossil fuel utilization and emissions of greenhouse gases Urban sprawl create to poor air quality by accepting more automobile use, thereby adding more air pollutants such as carbon monoxide, volatile organic carbons, ground-level ozone, carbon dioxide, nitrogen oxides, sulfur dioxide, and microscopic particles. These pollutants can slow plant growth, create air smog and acid rain, cause global warming, and cause serious human health issues.
A new growth be it intended or unexpected could begin on waste land or on land that was before used for some other agricultural purpose. In most cases, however, whenever the need arises, it is the outer edge of the city that provides for “boundless” open land because urban areas are usually unbroken. Urban sprawl is a dynamic process. This results in changes and the transformation of urban areas. Urban sprawl means the migration of people from urban rural areas to suburban or urban fringes. It also defined a small village’s conversion into a town and city. In India, urban settlement is defined as places having minimum inhabitants of 5000, with at least 75% of male employees being occupied in secondary and tertiary activities, and the density of the population should be 400 inhabitants per sq.km. Urban sprawl means unexpected, uncontrolled spreading of urban growth into rural areas sharing the border with the outer edge of a city. Urban migration and dwellers have changed the urban environment due to the overpopulation. If the population increases the need for transportation and space for living, all other needs to be provided. The overpopulation and development of unexpected urban settlements have risen to change the urban environment. Different situations are observed to cause sprawl. In almost all cases, the rise in population plays a major role as a main cause. Urban sprawl has been recognized as a problematic aspect of metropolitan growth and development worldwide. The growing concern about the issue is shared among planners, policy makers, environmentalists and people in general.
IntechOpen - where academia and industry create content with global impact
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Catarina Guedes and F. Xavier Malcata",authors:[{id:"83136",title:"Prof.",name:"F. Xavier",middleName:null,surname:"Malcata",slug:"f.-xavier-malcata",fullName:"F. 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Labella, C. Berbel, M. Manchado, D. Castro and J.J. Borrego",authors:[{id:"67855",title:"Prof.",name:"Juan J.",middleName:null,surname:"Borrego",slug:"juan-j.-borrego",fullName:"Juan J. Borrego"},{id:"71146",title:"Dr.",name:"Alejandro",middleName:null,surname:"Labella",slug:"alejandro-labella",fullName:"Alejandro Labella"},{id:"71148",title:"Dr.",name:"Concepcion",middleName:null,surname:"Berbel",slug:"concepcion-berbel",fullName:"Concepcion Berbel"},{id:"71149",title:"Dr.",name:"Manuel",middleName:null,surname:"Manchado",slug:"manuel-manchado",fullName:"Manuel Manchado"},{id:"71151",title:"Dr.",name:"Dolores",middleName:null,surname:"Castro",slug:"dolores-castro",fullName:"Dolores Castro"}]}],mostDownloadedChaptersLast30Days:[{id:"35141",title:"Antibiotics in Aquaculture – Use, Abuse and Alternatives",slug:"antibiotics-in-aquaculture-use-abuse-and-alternatives",totalDownloads:19366,totalCrossrefCites:138,totalDimensionsCites:294,abstract:null,book:{id:"2052",slug:"health-and-environment-in-aquaculture",title:"Health and Environment in Aquaculture",fullTitle:"Health and Environment in Aquaculture"},signatures:"Jaime Romero, Carmen Gloria Feijoo and Paola Navarrete",authors:[{id:"72898",title:"Dr.",name:"Jaime",middleName:null,surname:"Romero",slug:"jaime-romero",fullName:"Jaime Romero"},{id:"79684",title:"Dr.",name:"Paola",middleName:null,surname:"Navarrete",slug:"paola-navarrete",fullName:"Paola Navarrete"},{id:"83411",title:"Dr.",name:"Carmen",middleName:null,surname:"Feijoo",slug:"carmen-feijoo",fullName:"Carmen Feijoo"}]},{id:"69948",title:"Floating Cage: A New Innovation of Seaweed Culture",slug:"floating-cage-a-new-innovation-of-seaweed-culture",totalDownloads:978,totalCrossrefCites:2,totalDimensionsCites:2,abstract:"Eucheumatoid cultivation continues to expand with a variety of methods that can increase production. This chapter will discuss an innovation in seaweed cultivation of the genus Eucheuma, which is the prime marine commodity in the tropical regions of the world. Research conducted during 2015-2017 and 2019 in Southeast Sulawesi Province, Indonesia, provided an overview of the use of floating cage that showed very significant growth results. The research result showed that the growth rates of Eucheuma denticulatum and Kappaphycus alvarezii in floating cage seemed faster and resulted in better thallus morphology. Daily production of E. denticulatum and K. alvarezii that were cultivated in floating cage was higher than daily production of E. denticulatum and K. alvarezii cultivated on longline. Specific growth rate (SGR) of E. denticulatum and K. alvarezii cultivated by using floating cage method was also higher than E. denticulatum and K. alvarezii cultivated by using longline method. Moreover, the cultivation by using floating cages produces good growth rates with no effect of herbivore attacks.",book:{id:"8928",slug:"emerging-technologies-environment-and-research-for-sustainable-aquaculture",title:"Emerging Technologies, Environment and Research for Sustainable Aquaculture",fullTitle:"Emerging Technologies, Environment and Research for Sustainable Aquaculture"},signatures:"Ma’ruf Kasim, Abdul Muis Balubi, Ahmad Mustafa, Rahman Nurdin, Rahmad Sofyan Patadjai and Wardha Jalil",authors:[{id:"309893",title:"Prof.",name:"Maruf",middleName:null,surname:"Kasim",slug:"maruf-kasim",fullName:"Maruf Kasim"},{id:"313040",title:"MSc.",name:"Abdul Muis",middleName:null,surname:"Balubi",slug:"abdul-muis-balubi",fullName:"Abdul Muis Balubi"},{id:"313041",title:"MSc.",name:"Wardha",middleName:null,surname:"Jalil",slug:"wardha-jalil",fullName:"Wardha Jalil"},{id:"313042",title:"MSc.",name:"Ahmad",middleName:null,surname:"Mustafa",slug:"ahmad-mustafa",fullName:"Ahmad Mustafa"},{id:"313043",title:"MSc.",name:"Rahman",middleName:null,surname:"Nurdin",slug:"rahman-nurdin",fullName:"Rahman Nurdin"},{id:"313044",title:"MSc.",name:"Rahmat Sofyan",middleName:null,surname:"Patadjai",slug:"rahmat-sofyan-patadjai",fullName:"Rahmat Sofyan Patadjai"}]},{id:"62842",title:"Integrated Rice and Aquaculture Farming",slug:"integrated-rice-and-aquaculture-farming",totalDownloads:1920,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"The burning problems like scarcity of food for ever-growing human population in the present world are addressed by adapting various methods for production of protein, carbohydrate, oils and other food materials. One of the methods to produce high amount of food is integrated farming including rice-aquaculture farming, which produces protein and carbohydrate as major components besides others. Rice-aquaculture farming produces grain (carbohydrate) and animal protein without affecting the quality and quantity of rice yield on the same piece of land and renders additional financial gain besides main crop (rice) like conventional monoculture. The aquatic species grown in the integrated culture are mainly distinct types of fishes, selected crustaceans and other selected species. Profitable rice-aquaculture integrated farming is popular in Asian countries than in Western countries. However, the integrated rice-aquaculture farming has its own limitations. The type of methods, culture species, influencing factors, and pros and cons of rice-aquaculture integrated farming are discussed in the present chapter.",book:{id:"7229",slug:"aquaculture-plants-and-invertebrates",title:"Aquaculture",fullTitle:"Aquaculture - Plants and Invertebrates"},signatures:"Pamuru Ramachandra Reddy and Battina Kishori",authors:[{id:"242524",title:"Dr.",name:"Ramachandra Reddy",middleName:null,surname:"Pamuru",slug:"ramachandra-reddy-pamuru",fullName:"Ramachandra Reddy Pamuru"},{id:"255022",title:"Dr.",name:"Kishori",middleName:null,surname:"Battina",slug:"kishori-battina",fullName:"Kishori Battina"}]},{id:"24074",title:"Embryonic and Larval Development of Freshwater Fish",slug:"embryonic-and-larval-development-of-freshwater-fish",totalDownloads:7469,totalCrossrefCites:1,totalDimensionsCites:2,abstract:null,book:{id:"612",slug:"recent-advances-in-fish-farms",title:"Recent Advances in Fish Farms",fullTitle:"Recent Advances in Fish Farms"},signatures:"Faruk Aral, Erdinç Şahınöz and Zafer Doğu",authors:[{id:"25600",title:"Prof.",name:"Faruk",middleName:null,surname:"Aral",slug:"faruk-aral",fullName:"Faruk Aral"},{id:"29132",title:"Dr.",name:"Zafer",middleName:null,surname:"Dogu",slug:"zafer-dogu",fullName:"Zafer Dogu"},{id:"39952",title:"Dr.",name:"Erdinc",middleName:null,surname:"Sahinoz",slug:"erdinc-sahinoz",fullName:"Erdinc Sahinoz"}]},{id:"68966",title:"Novel Biofloc Technology (BFT) for Ammonia Assimilation and Reuse in Aquaculture In Situ",slug:"novel-biofloc-technology-bft-for-ammonia-assimilation-and-reuse-in-aquaculture-in-situ",totalDownloads:1954,totalCrossrefCites:2,totalDimensionsCites:8,abstract:"Ammonia is one of the most harmful risks for success of fish and shrimp culture. There is no effective solution for harmlessness of ammonia in traditional aquaculture operations except exchanging water, which would bring negative effects on environment, or fixing expensive equipment. Biofloc technology (BFT) that appeared in recent years supplies a novel solution for this issue without exchanging huge water and fixing equipment. This technology could assimilate ammonia almost in real time with many other supplemental benefits. Because of the very high nutritional value for fish and shrimp, bioflocs, the by-product of BFT, could also be reused as a complemented food in situ or a gradient for feedstuff to replace expensive fishmeal or be processed to pellet diet to feed fish and shrimp directly. 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Since 1983, he has been a faculty member of the RO Perelman Department of Dermatology, NYU School of Medicine, where he is codirector of a training grant in cutaneous biology. 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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He worked as a Executive Research & Development @ Cadila Pharmaceuticals Ltd, Ahmedabad. He received DBT-postdoc fellow @ Molecular Biophysics Unit, Indian Institute of Science, Bangalore under the supervision of Prof. P. Balaram, later he moved to NIH-postdoc researcher at Drexel University College of Medicine, Philadelphia, USA, after his return from postdoc joined NITK-Surthakal as a Adhoc faculty at department of chemistry. Since from August 2013 working as a Associate Professor, and in 2016 promoted to Profeesor in the School of Basic Sciences: Department of Chemistry and having 20 years of teaching and research experiences.",institutionString:null,institution:{name:"Rani Channamma University, Belagavi",country:{name:"India"}}},{id:"158492",title:"Prof.",name:"Yusuf",middleName:null,surname:"Tutar",slug:"yusuf-tutar",fullName:"Yusuf Tutar",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/158492/images/system/158492.jpeg",biography:"Prof. Dr. Yusuf Tutar conducts his research at the Hamidiye Faculty of Pharmacy, Department of Basic Pharmaceutical Sciences, Division of Biochemistry, University of Health Sciences, Turkey. He is also a faculty member in the Molecular Oncology Program. He obtained his MSc and Ph.D. at Oregon State University and Texas Tech University, respectively. He pursued his postdoctoral studies at Rutgers University Medical School and the National Institutes of Health (NIH/NIDDK), USA. His research focuses on biochemistry, biophysics, genetics, molecular biology, and molecular medicine with specialization in the fields of drug design, protein structure-function, protein folding, prions, microRNA, pseudogenes, molecular cancer, epigenetics, metabolites, proteomics, genomics, protein expression, and characterization by spectroscopic and calorimetric methods.",institutionString:"University of Health Sciences",institution:null},{id:"180528",title:"Dr.",name:"Hiroyuki",middleName:null,surname:"Kagechika",slug:"hiroyuki-kagechika",fullName:"Hiroyuki Kagechika",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/180528/images/system/180528.jpg",biography:"Hiroyuki Kagechika received his bachelor’s degree and Ph.D. in Pharmaceutical Sciences from the University of Tokyo, Japan, where he served as an associate professor until 2004. He is currently a professor at the Institute of Biomaterials and Bioengineering (IBB), Tokyo Medical and Dental University (TMDU). From 2010 to 2012, he was the dean of the Graduate School of Biomedical Science. Since 2012, he has served as the vice dean of the Graduate School of Medical and Dental Sciences. He has been the director of the IBB since 2020. Dr. Kagechika’s major research interests are the medicinal chemistry of retinoids, vitamins D/K, and nuclear receptors. He has developed various compounds including a drug for acute promyelocytic leukemia.",institutionString:"Tokyo Medical and Dental University",institution:{name:"Tokyo Medical and Dental University",country:{name:"Japan"}}},{id:"94311",title:"Prof.",name:"Martins",middleName:"Ochubiojo",surname:"Ochubiojo Emeje",slug:"martins-ochubiojo-emeje",fullName:"Martins Ochubiojo Emeje",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/94311/images/system/94311.jpeg",biography:"Martins Emeje obtained a BPharm with distinction from Ahmadu Bello University, Nigeria, and an MPharm and Ph.D. from the University of Nigeria (UNN), where he received the best Ph.D. award and was enlisted as UNN’s “Face of Research.” He established the first nanomedicine center in Nigeria and was the pioneer head of the intellectual property and technology transfer as well as the technology innovation and support center. 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He received his post-doctoral training in oncology and cancer proteomics for two years at the Cancer Research Institute of Human Medical University in China. In 2001, he went to the University of Tennessee Health Science Center (UTHSC) in USA, where he was a post-doctoral researcher and focused on mass spectrometry and cancer proteomics. Then, he was appointed as an Assistant Professor of Neurology, UTHSC in 2005. He moved to the Cleveland Clinic in USA as a Project Scientist/Staff in 2006 where he focused on the studies of eye disease proteomics and biomarkers. He returned to UTHSC as an Assistant Professor of Neurology in the end of 2007, engaging in proteomics and biomarker studies of lung diseases and brain tumors, and initiating the studies of predictive, preventive, and personalized medicine (PPPM) in cancer. In 2010, he was promoted to Associate Professor of Neurology, UTHSC. Currently, he is a Professor at Xiangya Hospital of Central South University in China, Fellow of Royal Society of Medicine (FRSM), the European EPMA National Representative in China, Regular Member of American Association for the Advancement of Science (AAAS), European Cooperation of Science and Technology (e-COST) grant evaluator, Associate Editors of BMC Genomics, BMC Medical Genomics, EPMA Journal, and Frontiers in Endocrinology, Executive Editor-in-Chief of Med One. He has\npublished 116 peer-reviewed research articles, 16 book chapters, 2 books, and 2 US patents. His current main research interest focuses on the studies of cancer proteomics and biomarkers, and the use of modern omics techniques and systems biology for PPPM in cancer, and on the development and use of 2DE-LC/MS for the large-scale study of human proteoforms.",institutionString:null,institution:{name:"Xiangya Hospital Central South University",country:{name:"China"}}},{id:"40482",title:null,name:"Rizwan",middleName:null,surname:"Ahmad",slug:"rizwan-ahmad",fullName:"Rizwan Ahmad",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/40482/images/system/40482.jpeg",biography:"Dr. Rizwan Ahmad is a University Professor and Coordinator, Quality and Development, College of Medicine, Imam Abdulrahman bin Faisal University, Saudi Arabia. Previously, he was Associate Professor of Human Function, Oman Medical College, Oman, and SBS University, Dehradun. Dr. Ahmad completed his education at Aligarh Muslim University, Aligarh. He has published several articles in peer-reviewed journals, chapters, and edited books. His area of specialization is free radical biochemistry and autoimmune diseases.",institutionString:"Imam Abdulrahman Bin Faisal University",institution:{name:"Imam Abdulrahman Bin Faisal University",country:{name:"Saudi Arabia"}}},{id:"41865",title:"Prof.",name:"Farid A.",middleName:null,surname:"Badria",slug:"farid-a.-badria",fullName:"Farid A. Badria",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/41865/images/system/41865.jpg",biography:"Farid A. Badria, Ph.D., is the recipient of several awards, including The World Academy of Sciences (TWAS) Prize for Public Understanding of Science; the World Intellectual Property Organization (WIPO) Gold Medal for best invention; Outstanding Arab Scholar, Kuwait; and the Khwarizmi International Award, Iran. He has 250 publications, 12 books, 20 patents, and several marketed pharmaceutical products to his credit. He continues to lead research projects on developing new therapies for liver, skin disorders, and cancer. Dr. Badria was listed among the world’s top 2% of scientists in medicinal and biomolecular chemistry in 2019 and 2020. He is a member of the Arab Development Fund, Kuwait; International Cell Research Organization–United Nations Educational, Scientific and Cultural Organization (ICRO–UNESCO), Chile; and UNESCO Biotechnology France",institutionString:"Mansoura University",institution:{name:"Mansoura University",country:{name:"Egypt"}}},{id:"329385",title:"Dr.",name:"Rajesh K.",middleName:"Kumar",surname:"Singh",slug:"rajesh-k.-singh",fullName:"Rajesh K. Singh",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/329385/images/system/329385.png",biography:"Dr. Singh received a BPharm (2003) and MPharm (2005) from Panjab University, Chandigarh, India, and a Ph.D. (2013) from Punjab Technical University (PTU), Jalandhar, India. He has more than sixteen years of teaching experience and has supervised numerous postgraduate and Ph.D. students. He has to his credit more than seventy papers in SCI- and SCOPUS-indexed journals, fifty-five conference proceedings, four books, six Best Paper Awards, and five projects from different government agencies. He is currently an editorial board member of eight international journals and a reviewer for more than fifty scientific journals. He received Top Reviewer and Excellent Peer Reviewer Awards from Publons in 2016 and 2017, respectively. He is also on the panel of The International Reviewer for reviewing research proposals for grants from the Royal Society. He also serves as a Publons Academy mentor and Bentham brand ambassador.",institutionString:"Punjab Technical University",institution:{name:"Punjab Technical University",country:{name:"India"}}},{id:"142388",title:"Dr.",name:"Thiago",middleName:"Gomes",surname:"Gomes Heck",slug:"thiago-gomes-heck",fullName:"Thiago Gomes Heck",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/142388/images/7259_n.jpg",biography:null,institutionString:null,institution:{name:"Universidade Regional do Noroeste do Estado do Rio Grande do Sul",country:{name:"Brazil"}}},{id:"336273",title:"Assistant Prof.",name:"Janja",middleName:null,surname:"Zupan",slug:"janja-zupan",fullName:"Janja Zupan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/336273/images/14853_n.jpeg",biography:"Janja Zupan graduated in 2005 at the Department of Clinical Biochemistry (superviser prof. dr. Janja Marc) in the field of genetics of osteoporosis. Since November 2009 she is working as a Teaching Assistant at the Faculty of Pharmacy, Department of Clinical Biochemistry. In 2011 she completed part of her research and PhD work at Institute of Genetics and Molecular Medicine, University of Edinburgh. She finished her PhD entitled The influence of the proinflammatory cytokines on the RANK/RANKL/OPG in bone tissue of osteoporotic and osteoarthritic patients in 2012. From 2014-2016 she worked at the Institute of Biomedical Sciences, University of Aberdeen as a postdoctoral research fellow on UK Arthritis research project where she gained knowledge in mesenchymal stem cells and regenerative medicine. She returned back to University of Ljubljana, Faculty of Pharmacy in 2016. She is currently leading project entitled Mesenchymal stem cells-the keepers of tissue endogenous regenerative capacity facing up to aging of the musculoskeletal system funded by Slovenian Research Agency.",institutionString:null,institution:{name:"University of Ljubljana",country:{name:"Slovenia"}}},{id:"357453",title:"Dr.",name:"Radheshyam",middleName:null,surname:"Maurya",slug:"radheshyam-maurya",fullName:"Radheshyam Maurya",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/357453/images/16535_n.jpg",biography:null,institutionString:null,institution:{name:"University of Hyderabad",country:{name:"India"}}},{id:"418340",title:"Dr.",name:"Jyotirmoi",middleName:null,surname:"Aich",slug:"jyotirmoi-aich",fullName:"Jyotirmoi Aich",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000038Ugi5QAC/Profile_Picture_2022-04-15T07:48:28.png",biography:"Biotechnologist with 15 years of research including 6 years of teaching experience. Demonstrated record of scientific achievements through consistent publication record (H index = 13, with 874 citations) in high impact journals such as Nature Communications, Oncotarget, Annals of Oncology, PNAS, and AJRCCM, etc. Strong research professional with a post-doctorate from ACTREC where I gained experimental oncology experience in clinical settings and a doctorate from IGIB where I gained expertise in asthma pathophysiology. A well-trained biotechnologist with diverse experience on the bench across different research themes ranging from asthma to cancer and other infectious diseases. An individual with a strong commitment and innovative mindset. Have the ability to work on diverse projects such as regenerative and molecular medicine with an overall mindset of improving healthcare.",institutionString:"DY Patil Deemed to Be University",institution:null},{id:"349288",title:"Prof.",name:"Soumya",middleName:null,surname:"Basu",slug:"soumya-basu",fullName:"Soumya Basu",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000035QxIDQA0/Profile_Picture_2022-04-15T07:47:01.jpg",biography:"Soumya Basu, Ph.D., is currently working as an Associate Professor at Dr. D. Y. Patil Biotechnology and Bioinformatics Institute, Dr. D. Y. Patil Vidyapeeth, Pune, Maharashtra, India. With 16+ years of trans-disciplinary research experience in Drug Design, development, and pre-clinical validation; 20+ research article publications in journals of repute, 9+ years of teaching experience, trained with cross-disciplinary education, Dr. Basu is a life-long learner and always thrives for new challenges.\r\nHer research area is the design and synthesis of small molecule partial agonists of PPAR-γ in lung cancer. She is also using artificial intelligence and deep learning methods to understand the exosomal miRNA’s role in cancer metastasis. Dr. Basu is the recipient of many awards including the Early Career Research Award from the Department of Science and Technology, Govt. of India. She is a reviewer of many journals like Molecular Biology Reports, Frontiers in Oncology, RSC Advances, PLOS ONE, Journal of Biomolecular Structure & Dynamics, Journal of Molecular Graphics and Modelling, etc. She has edited and authored/co-authored 21 journal papers, 3 book chapters, and 15 abstracts. She is a Board of Studies member at her university. She is a life member of 'The Cytometry Society”-in India and 'All India Cell Biology Society”- in India.",institutionString:"Dr. D.Y. Patil Vidyapeeth, Pune",institution:{name:"Dr. D.Y. 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