The book provides comprehensive coverage of the application of 3D bioprinting technology. The diverse applications of 3D bioprinting, from drug development to tissue engineering, provide readers with insights into how this technology is revolutionizing the biomedical field.
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Dr. Mohanan is a Fellow of the National Academy of Science, India and Royal Society of Biologists, UK. He was a JSPS Postdoctoral Fellow at the University of Tsukuba, Japan in the field of Neurotoxicity. As a toxicologist, he has been intimately associated with all the medical devices/technologies developed at SCTIMST (Govt. of India). Currently he heads both the Division of Toxicology and Dept. of Applied Biology. Dr. Mohanan is a member in the Empowered Committee on the 'Rapid Response Regulatory Framework for COVID-19 to deal with applications for development of vaccines, diagnostics, prophylactics and therapeutics and an expert member in the statutory Committee, RCGM, DBT, New Delhi. Mohanan is also serving as an expert member at the DST, SERB, DBT, ICMR, CSIR and FSSAI Scientific committees. He is an Expert member at the Joint Food and Agriculture Organization of the United Nations and the World Health Organization (JECFA), USA. Mohanan is a member in the Scientific Advisory Committee of ICMR-NARFBR, Hyderabad. He is a Visiting Professor and Visiting Researcher at Toyo University, Japan and a Certified Biological Safety Specialist. Mohanan is an Adjunct Professor at the Indian Institute of Technology, Hyderabad and Jamia Hamdard University, New Delhi. He received lifetime achievement award from the Society of Toxicology India, for his outstanding contribution in toxicology. The development of Human-on-a-chip is a new mega project, apart from several other externally funded research projects. Patented an ELISA kit for the measurement of pyrogenicity. Mohanan made significant contributions for the development of medical device regulations in India. He received certificate of appreciation from the Hon. Minister of Science and Technology, Govt. of India for his contribution to India getting full adherent status on GLP from OECD. He has authored more than 300 publications, edited 10 books, 5 patent filed and 3 design registrations. Presently he is the Secretary General, Society of Toxicology, India and Vice President, Kerala Academy of Sciences, India.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. 3D bioprinting is an emerging innovative technology that involves the fabrication of essential 3D functional biomedical constructs by combining cells and biomaterials with vital growth and differentiation factors. It aims to replicate the natural tissue milieu and holds great promise in fields like tissue engineering, regenerative medicine, drug development and testing, precision medicine, etc. 3D bioprinted disease-specific models help to study, screen the treatment methods and understand the mechanism of action. In personalized medicine, patient-specific tissue and organ constructs can be developed for specific surgeries and treatments tailored to a patients unique anatomy and genetics. 3D functional tissue construct addresses the problem of organ shortage as it lowers the risk of rejection of tissues and organs. The technique also replaces the need to experiment on animals and improves the accuracy of pre-clinical studies to test the safety and efficacy of new drugs in bioprinted tissues.This book provides comprehensive coverage of the application of 3D bioprinting technology. It is a collection of contributions by experts with cutting-edge know-how. The book is meant for medical practitioners, pharma companies, CROs, product developers, students, researchers, academicians, policymakers and practitioners. The book provides comprehensive coverage of the application of 3D bioprinting technology. The diverse applications of 3D bioprinting, from drug development to tissue engineering, provide readers with insights into how this technology is revolutionizing the biomedical field. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9781032818337
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Hardcover. Etat : new. Hardcover. 3D bioprinting is an emerging innovative technology that involves the fabrication of essential 3D functional biomedical constructs by combining cells and biomaterials with vital growth and differentiation factors. It aims to replicate the natural tissue milieu and holds great promise in fields like tissue engineering, regenerative medicine, drug development and testing, precision medicine, etc. 3D bioprinted disease-specific models help to study, screen the treatment methods and understand the mechanism of action. In personalized medicine, patient-specific tissue and organ constructs can be developed for specific surgeries and treatments tailored to a patients unique anatomy and genetics. 3D functional tissue construct addresses the problem of organ shortage as it lowers the risk of rejection of tissues and organs. The technique also replaces the need to experiment on animals and improves the accuracy of pre-clinical studies to test the safety and efficacy of new drugs in bioprinted tissues.This book provides comprehensive coverage of the application of 3D bioprinting technology. It is a collection of contributions by experts with cutting-edge know-how. The book is meant for medical practitioners, pharma companies, CROs, product developers, students, researchers, academicians, policymakers and practitioners. The book provides comprehensive coverage of the application of 3D bioprinting technology. The diverse applications of 3D bioprinting, from drug development to tissue engineering, provide readers with insights into how this technology is revolutionizing the biomedical field. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. N° de réf. du vendeur 9781032818337
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