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Handbook of Tissue Engineering Scaffolds: Volume One

  • 1 Edición - 15 de junio de 2019
  • Última edición
  • Editores: Masoud Mozafari, Farshid Sefat, Anthony Atala
  • Idioma: Inglés

Handbook of Tissue Engineering Scaffolds: Volume One, provides a comprehensive and authoritative review on recent advancements in the application and use of composite scaffo… Leer más

Descripción

Handbook of Tissue Engineering Scaffolds: Volume One, provides a comprehensive and authoritative review on recent advancements in the application and use of composite scaffolds in tissue engineering. Chapters focus on specific tissue/organ (mostly on the structure and anatomy), the materials used for treatment, natural composite scaffolds, synthetic composite scaffolds, fabrication techniques, innovative materials and approaches for scaffolds preparation, host response to the scaffolds, challenges and future perspectives, and more. Bringing all the information together in one major reference, the authors systematically review and summarize recent research findings, thus providing an in-depth understanding of scaffold use in different body systems.

Puntos claves

  • Dedicated to the specialist topic of composite scaffolds, featuring all human body systems
  • Covers basic fundamentals and advanced clinical applications
  • Includes up-to-date information on preparation methodology and characterization techniques
  • Highlights clinical data and case studies

De interès para

Graduates, students and researchers in the fields of tissue engineering, biomaterials and regenerative medicine, biomedical science and engineering, materials science and engineering, nanoscience and engineering, biomedical nanotechnology, biotechnology

Índice

Part 1: An introduction to tissue engineering scaffolds

1. Introduction to tissue engineering scaffolds

2. The role of scaffolds in tissue engineering

3. Scaffolds mimicking the native structure of tissues

4. Computational design of tissue engineering scaffolds

5. Research progress of scaffold materials

6. Fabrication techniques of tissue engineering scaffolds

7. Scaffolds implanted: what is next?

8. Moving from clinical trials to clinical practice

9. Tissue engineering scaffolds: future perspectives

Part 2: Musculoskeletal tissue engineering scaffolds

10. Scaffold for bone tissue engineering

11. Scaffolds for cartilage tissue engineering

12. Scaffolds for skeletal muscle tissue engineering

13. Scaffolds for tendon tissue engineering

14. Scaffolds for ligament tissue engineering

15. Scaffolds for regeneration of meniscus lesions

Part 3: Craniomaxillofacial tissue engineering scaffolds

16. Scaffolds for mandibular reconstruction

17. Scaffolds suitable for maxillary sinus augmentation

18. Scaffolds for nasal reconstruction

19. Scaffolds for repair of orbital wall defects

20. Scaffolds for cleft lip and cleft palate reconstruction

21. Scaffolds for temporomandibular joint disc engineering

Part 4: Dental tissue engineering scaffolds

22. Scaffolds for regeneration of the pulp–dentine complex

23. Scaffolds for periodontal tissue engineering

24. Tissue-engineered alloplastic scaffold for reconstruction of alveolar defects

25. Scaffolds for gingival tissues

26. Scaffolds that promote enamel remineralization

27. Scaffolds for dental cementum

28. Scaffolds for engineering tooth-ligament interfaces

Part 5: Cardiaovascular tissue engineering scaffolds

29. Whole heart scaffolds - how to build a heart

30. Scaffolds for engineering heart valve

31. Scaffolds for blood vessel tissue engineering

32. Scaffolds for tissue engineering of functional cardiac muscle

33. Bioengineered cardiac patch scaffolds

Reseñas

"This in-depth analysis has led to the recent publication of a uniquely comprehensive two volume book: ‘The Handbook of Tissue Engineering Scaffolds’ part one and part two. With 66 chapters, this book currently represents the largest published collection of tissue engineering scaffold research in the world."—University of Bradford / Business / News and Events

Detalles del producto

  • Edición: 1
  • Última edición
  • Publicado: 15 de junio de 2019
  • Idioma: Inglés

Sobre los editores

MM

Masoud Mozafari

Dr. Masoud Mozafari is a Fellow at Lunenfeld Tanenbaum Research Institute, Mount Sinai Health Hospital, University of Toronto. He was previously Assistant Professor and Director of the Bioengineering Lab, at the Nanotechnology and Advanced Materials Department, Materials and Energy Research Center, Cellular and Molecular Research Center, and Department of Tissue Engineering and Regenerative Medicine of the Iran University of Medical Sciences (IUMS), Tehran, Iran. Dr. Mozafari’s research interests range across biomaterials, nanotechnology, and tissue engineering, and he is known for the development of strategies for the treatment of damaged tissues and organs, and controlling biological substances for targeted delivery into the human body. Dr. Mozafari has received several awards, including the Khwarizmi Award and the Julia Polak European Doctorate Award for outstanding translational research contributions to the field of biomaterials. He has also received the WIPO Medal for Inventors from The World Intellectual Property Organization (WIPO), in recognition of his contributions to economic and technological development. Dr. Mozafari is currently working on the editorial board of several journals.
Afiliaciones y experiencia
Research Fellow, Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, University of Toronto, Canada

FS

Farshid Sefat

Dr. Farshid Sefat is Associate Professor and Programme Leader in the Biomedical and Electronic Engineering Department at the University of Bradford (UK). He was head of Biomedical Engineering Department at King Faisal University (Saudi Arabia) and Visiting Professor at Stevens Institute of Technology (New Jersey, USA). He completed his post doctorate research assistant at University of Sheffield (UK) in cornea tissue engineering. Dr. Sefat received his Ph.D. and BEng. degrees from University of Bradford in Biomedical Engineering. His research is based on developing biomaterials to control cellular behavior with particular emphasis in developing engineered materials for various tissue engineering applications. He’s an author of >150 peer-reviewed journal articles, editorials, and review papers and >80 book chapters/edited books. He’s on the editorial boards and reviewer of >30 numerous journals including Materials Today, Acta Biomaterialia, IEEE, Bone, MDPI, Journal of Orthopaedics & Rheumatology, Materials Science and Engineering C and Journal of Biomechanics.

Afiliaciones y experiencia
Associate Professor, Biomedical and Electronic Engineering Department, University of Bradford, UK

AA

Anthony Atala

Anthony Atala, MD, is the G. Link Professor and Director of the Wake Forest Institute for Regenerative Medicine. Seventeen of his lab’s technologies have been translated to patients, including the first tissue-engineered organ for permanent implantation in a human. His research led to the discovery of a multipotent source of stem cells from amniotic fluid and placenta, advances in 3D printing of tissues and organs, and body-on-a-chip technologies. His work was twice listed among Time Magazine’s top 10 medical breakthroughs of the year, and he is a recipient of the Smithsonian Ingenuity Award. He has published over 900 journal articles, is the editor of 25 books, and holds over 250 national and international patents. Dr. Atala is a member of the National Academy of Medicine, the National Academy of Inventors, and the American Institute for Medical and Biological Engineering.

Afiliaciones y experiencia
G. Link Professor and Director of the Wake Forest Institute for Regenerative Medicine; W. Boyce Professor and Chair, Department of Urology, and G. Link Professor and Director, Wake Forest Institute for Regenerative Medicine, Wake Forest University. Winston Salem, North Carolina, USA

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