Biofabrication and 3D Tissue Modeling
Book Details
Format
Hardback or Cased Book
Book Series
Biomaterials Science Series
ISBN-10
1788011988
ISBN-13
9781788011983
Publisher
Royal Society of Chemistry
Imprint
Royal Society of Chemistry
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jan 3rd, 2019
Print length
352 Pages
Weight
710 grams
Dimensions
24.10 x 16.10 x 2.70 cms
Product Classification:
Industrial chemistry and chemical engineeringChemical engineeringMaterials science
Ksh 28,600.00
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3D tissue modelling is an emerging field used for the investigation of disease mechanisms and drug development. Integrating physics, chemistry, materials science, and stem cell and biomedical engineering, this book provides a complete foundation to this exciting, and interdisciplinary field.
3D tissue modelling is an emerging field used for the investigation of disease mechanisms and drug development. The two key drivers of this upsurge in research lie in its potential to offer a way to reduce animal testing with respect to biotoxicity analysis, preferably on physiology recapitulated human tissues and, additionally, provides an alternative approach to regenerative medicine. Integrating physics, chemistry, materials science, and stem cell and biomedical engineering, this book provides a complete foundation to this exciting, and interdisciplinary field. Beginning with the basic principles of 3D tissue modelling, the reader will find expert reviews on key fabrication technologies and processes, including microfluidics, microfabrication technology such as 3D bioprinting, and programming approaches to emulating human tissue complexity. The next stage introduces the reader to a range of materials used for 3D tissue modelling, from synthetic to natural materials, as well as the emerging field of tissue derived decellularized extracellular matrix (dECM). A whole host of critical applications are covered, with several chapters dedicated to hard and soft tissues, as well as focused reviews on the respiratory and central nervous system. Finally, the development of in vitro tissue models to screen drugs and study progression and etiologies of diseases, with particular attention paid to cancer, can be found.
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