Fr. 198.00

Study on Microextrusion-based 3D Bioprinting and Bioink Crosslinking Mechanisms

English · Hardback

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Description

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This book presents a comprehensive study on microextrusion-based 3D bioprinting technologies for bioinks with various crosslinking mechanisms, chiefly focusing on the bioprinting process and bioink properties to provide readers with a better understanding of this state-of-the-art technology. Further, it summarizes a number of general criteria and research routes for microextrusion-based 3D bioprinting using three experimental studies based on shear-thinning, thermo-sensitive and non-viscous hydrogel bioinks. The book also presents sample applications in the areas of stem cells and cell matrix interaction. 
The book highlights pioneering results in the development of bioprinting technologies and bioinks, which were published in high-quality journals such as Advanced Materials, Biofabrication and ACS Biomaterials Science & Engineering. These include an in-situ crosslinking strategy that overcomes the viscosity limits for bioinks, which is virtually impossible using conventional strategies, and can be generalized for other bioink formulations.

List of contents

Introduction.- General criteria for bioprinting process and bioinks.- Bioprinting of shear-thinning bioink.- Bioprinting of thermo-sensitive bioink.- Bioprinting of non-viscous photo-crosslinkable bioink.- Biological studies and characterization.- Conclusion.

Summary

This book presents a comprehensive study on microextrusion-based 3D bioprinting technologies for bioinks with various crosslinking mechanisms, chiefly focusing on the bioprinting process and bioink properties to provide readers with a better understanding of this state-of-the-art technology. Further, it summarizes a number of general criteria and research routes for microextrusion-based 3D bioprinting using three experimental studies based on shear-thinning, thermo-sensitive and non-viscous hydrogel bioinks. The book also presents sample applications in the areas of stem cells and cell matrix interaction. 
The book highlights pioneering results in the development of bioprinting technologies and bioinks, which were published in high-quality journals such as Advanced Materials, Biofabrication and ACS Biomaterials Science & Engineering. These include an in-situ crosslinking strategy that overcomes the viscosity limits for bioinks, which is virtually impossible using conventional strategies, and can be generalized for other bioink formulations.

Product details

Authors Liliang Ouyang
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2019
 
EAN 9789811394546
ISBN 978-981-1394-54-6
No. of pages 129
Dimensions 157 mm x 241 mm x 14 mm
Weight 344 g
Illustrations XVI, 129 p.
Series Springer Theses
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, biotechnology, Chemistry and Materials Science, polymers, Manufactures, Polymer Sciences, Manufacturing, Machines, Tools, Processes, Production engineering, Machines, Tools, Processes, Polymer chemistry, Biomaterials

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