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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Biologi

    Tissue Engineering

    Current Status and Challenges

    AvChandra P. Sharma,Thomas Chandy

    Häftad, Engelska, 2022

    1 938 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Tissue Engineering: Current Status and Challenges bridges the gap between biomedical scientists and clinical practitioners. The work reviews the history of tissue engineering, covers the basics required for the beginner, and inspires those in the field toward future research and application emerging in this fast-moving field. Written by global experts in the field for those studying and researching tissue engineering, the book reviews regenerative technologies, stem cell research and regeneration of organs. It then moves to soft tissue engineering (heart, vascular, muscle and 3D scaffolding and printing), hard tissue engineering (bone, dental myocardial and musculoskeletal) and translational avenues in the field.



    • Introduces readers to the history and benefits of tissue engineering
    • Includes coverage of new techniques and technologies, such as nanotechnology and nanoengineering
    • Presents concepts, ideology and theories which form the foundation for next-generation tissue engineering

    Produktinformation

    • Utgivningsdatum:2022-01-26
    • Mått:191 x 235 x undefined mm
    • Vikt:450 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:724
    • Förlag:Elsevier Science
    • ISBN:9780128240649

    Utforska kategorier

    • Biologi inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Chandra P. Sharma is an Adjunct Professor, Department of Pharmaceutical Biotechnology, Manipal College of Pharmaceutical Sciences, Manipal University, and Hon. Emeritus Professor, College of Biomedical Engineering & Applied Sciences, Purbanchal University, Kathmandu, Nepal. Dr. Sharma is a Solid-State Physicist from IIT Delhi and received his training in Biomaterials area in the University of Utah with Prof. D.J. Lyman as a graduate student and in the University of Liverpool, England with Prof. D.F. Williams as a Post-Doctoral Research Associate. Dr. Sharma has been awarded FBSE (Fellow Biomaterials Science & Engineering) by The International Union of Societies for Biomaterials Science & Engineering (IUS-BSE) in 2008 and FBAO (Fellow Biomaterials and Artificial Organs) by Society for Biomaterials & Artificial Organs (India) (SBAOI) in 2011 and shares Whitaker and National Science Foundation Award – International Society for Artificial Organs (ISAO) USA, invited member ACS (2015-2018). Dr. Thomas Chandy is a biomaterial expert with unique combination of medical device and technical knowledge. He has strong academic credentials in human physiology and bio-compatible materials with test methods and model development. Dr. Chandy has published over 80 scientific papers in international Journals and 3 patents in the medical device and drug delivery area. Reviewer to 7+ international journals of repute in Drug delivery and Biomedical Research. Twenty-Five years of experience as a project lead in medical device and technology development. Strong experience with broad range of medical products including polymeric and tissue-based implantable, site specific drug delivery, medical diagnostics and combination devices. Product/process development skills with demonstrated success from concept through commercialization involving selection of materials, characterization, biological evaluation of materials, bench, feasibility tests and pre-clinical (animal) testing. Dr. Vinoy Thomas is an Associate Professor and Graduate Program Director in the Department of Mechanical and Materials Engineering at the University of Alabama at Birmingham, with secondary appointments in Biomedical Engineering, Physics, and Environmental Science & Health. He's also an Associate Scientist at the Center for Nanoscale Materials and Biointegration and the Center for Clinical and Translational Sciences. Following his PhD in Biomaterials & Technology, he completed postdoctoral training at Friedrich-Schiller University, Germany, and the National Institute of Standards and Technology (NIST), USA. His research focuses on biomaterials processing–property relationships and nanomaterials for tissue engineering and drug delivery. Dr. Thomas has published over 120 articles and co-edited two books on tissue engineering and AI in regenerative medicine. He serves as Associate Editor of Heliyon (Engineering) and has received multiple honors, including FBAO, FAAS, and the IAAM Scientist Medal. He currently leads several professional organizations in biomaterials and materials science. Dr. Finosh Thankam is an assistant professor and researcher in Tissue Engineering and Regenerative Medicine, in the Department of Translational Research, at the Western University of Health Sciences, in Pomona, CA. His undergraduate studies were in Biochemistry, before completing his post-graduate degree in Medical Biochemistry from Mahatma Gandhi University, in India. As a research fellow he was exposed to the new world of tissue engineering and regenerative medicine and published many original articles on various aspects of cardiac tissue engineering. His current research interests include investigating the pathogenesis of various musculoskeletal disorders, and cardiovascular diseases, and applying the knowledge and principles of tissue engineering to develop artificial tissue constructs to improve the care for the sufferers.

    Innehållsförteckning

    • 1. Preface2. Introductory ChapterSection 1: Regenerative Technologies3. Overview of current technologies for TE and RM4. Myocardial tissue engineering: Fundamentals and advanced technologies5. Oro-dental regeneration6. Tissue Regeneration: Fetal to adult transition7. Chronic wounds and tissue engineering: Prospects and promiseSection 2: Stem Cell Research and Tissue Engineering8. Emerging bioengineering strategies for regulating stem cell fate: Scaffold physical and biochemical cues9. Stem cell research and tissue engineeringSection 3: Tissue Engineering and Nanomedicine10. Nanomatrix and organ regeneration11. Future of nanotechnology in tissue engineering12. Green Nanotechnology in cardiovascular tissue engineeringSection 4: Soft Tissue Engineering13. Retinal repair in tissue engineering perspectives14. Dental pulp tissue regeneration15. Prospects of collagen scaffolds for muscle regeneration16. Nerve tissue engineering on degradable scaffold17. Bioengineering of brain organoids: Advancements and challenges18. 3D bio printing/additive manufacturing in tissue engineering19. Biosensors in tissue engineering20. Cardiovascular regenerationsSection 5: Hard Tissue Engineering21. Bone tissue engineering22. Dental tissue engineering23. Musculoskeletal tissue engineeringSection 6: Regulatory guidelines, modeling, management, and ethical issues in translational tissue engineering24. Translational tissue engineering25. Tissue engineered products – translational avenues26. 3D Modeling of the lung in health and disease27. Modeling viral infection with tissue engineering: Covid-19 and the next outbreaks28. Ethical issues