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Decellularized Extracellular Matrix: Characterization, Fabrication and Applications
Contributor(s): Yamaoka, Tetsuji (Editor), Hoshiba, Takashi (Editor)
ISBN: 1788014677     ISBN-13: 9781788014670
Publisher: Royal Society of Chemistry
OUR PRICE:   $209.00  
Product Type: Hardcover - Other Formats
Published: December 2019
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Additional Information
BISAC Categories:
- Technology & Engineering | Biomedical
- Science | Physics - Polymer
- Technology & Engineering | Materials Science - General
LCCN: 2018420797
Series: ISSN
Physical Information: 1.1" H x 6.4" W x 9.3" (1.50 lbs) 368 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

The extracellular matrix (ECM) supports cells and regulates various cellular functions in our body. The native ECM promises to provide an excellent scaffold for regenerative medicine. In order to use the ECM as a scaffold in medicine, its cellular fractions need to be removed while retaining its structural and compositional properties. This process is called decellularization, and the resulting product is known as the decellularized extracellular matrix (dECM). This book focuses on the sources of dECM and its preparation, characterization techniques, fabrication, and applications in regenerative medicine and biological studies. Using this book, the reader will gain a good foundation in the field of ECM decellularization complemented with a broad overview of dECM characterization, ranging from structural observation and compositional assessment to immune responses against dECM and applications, ranging from microfabrication and 3D-printing to the application of tissue-derived dECM in vascular grafts and corneal tissue engineering etc. The book closes with a section dedicated to cultured cell dECM, a complementary technique of tissue-derived dECM preparation, for application in tissue engineering and regenerative medicine, addressing its use in stem cell differentiation and how it can help in the study of the tumor microenvironment as well as in clinical trials of peripheral nerve regeneration.