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Cardiac tissue engineering : principles, materials, and applications

Author: Emil Ruvinov; Yulia Sapir; Smadar Cohen
Publisher: [San Rafael, Calif.] : Morgan & Claypool, ©2012.
Series: Synthesis lectures on tissue engineering, #9.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
Cardiac tissue engineering aims at repairing damaged heart muscle and producing human cardiac tissues for application in drug toxicity studies. This book offers a comprehensive overview of the cardiac tissue engineering strategies, including presenting and discussing the various concepts in use, research directions and applications. Essential basic information on the major components in cardiac tissue engineering,  Read more...
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Details

Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Emil Ruvinov; Yulia Sapir; Smadar Cohen
ISBN: 9781608452057 1608452050
OCLC Number: 812199773
Notes: Title from PDF title page (Morgan & Claypool, viewed Oct. 8, 2012).
Description: 1 online resource (xv, 184 pages) : illustrations.
Contents: 1. Introduction --
1.1 Cardiac tissue engineering --
1.2 Objectives and scopes --
1.3 Organization of the monograph --
Bibliography. 2. The heart, structure, cardiovascular diseases, and regeneration --
2.1 Introduction --
2.2 The heart and cardiac muscle structure --
2.3 Myocardial infarction and heart failure --
2.4 Cardiac extracellular matrix (ECM), its function and pathological changes after MI --
2.5 Congenital heart defects --
2.6 Endogenous myocardial regeneration --
2.7 Potential therapeutic targets and strategies to induce myocardial regeneration --
Bibliography. 3. Cell sources for cardiac tissue engineering --
3.1 Introduction --
3.2 Sources for de novo cardiomyocytes for clinical applications --
3.3 Contemporary alternatives, adult autologous stem and progenitor cells --
3.4 Clinical trials and "paracrine effect" hypothesis of stem/progenitor cell transplantation --
3.5 Summary and conclusions --
Bibliography. 4. Biomaterials, polymers, scaffolds, and basic design criteria --
4.1 Introduction --
4.2 Basic biomaterial design criteria --
4.3 Biomaterial classification --
4.4 Basic scaffold fabrication forms --
4.5 Summary and conclusions --
Bibliography. 5. Biomaterials as vehicles for stem cell delivery and retention in the infarct --
5.1 Introduction --
5.2 Stem cell delivery by biomaterials --
5.3 Clinical trials --
5.4 Summary and conclusions --
Bibliography. 6. Bioengineering of cardiac patches, in vitro --
6.1 Introduction --
6.2 Cardiac cell entrapment in hydrogels, engineered heart tissue (EHT) --
6.3 Cell sheet-based cardiac tissue engineering --
6.4 Myocardial tissue grafts created in preformed implantable scaffolds --
6.5 Biomimetic scaffolds and integration of cell-matrix interactions --
6.6 Micro- and nanotechnology for scaffold fabrication --
6.7 Summary and conclusions --
Bibliography. 7. Perfusion bioreactors and stimulation patterns in cardiac tissue engineering --
7.1 Introduction --
7.2 Bioreactor cultivation of engineered cardiac tissue --
7.3 Inductive stimulation patterns in cardiac tissue engineering --
7.4 Summary and conclusions --
Bibliography. 8. Vascularization of cardiac patches --
8.1 Introduction --
8.2 Prevascularization of the patch by incorporating endothelial cells (ECS) --
8.3 The body as a bioreactor for patch vascularization --
8.4 Summary and conclusions --
Bibliography. 9. Acellular biomaterials for cardiac repair --
9.1 Introduction --
9.2 Acellular implantable scaffolds for in situ tissue support --
9.3 Decellularized ECM --
9.4 Injectable biomaterials --
9.5 First-in-man trial of intracoronary delivery of alginate biomaterial --
9.6 Mechanism of biomaterial effects on cardiac repair --
9.7 Immunomodulation of the macrophages by liposomes for infarct repair --
9.8 Summary and conclusions --
Bibliography. 10. Biomaterial-based controlled delivery of bioactive molecules for myocardial regeneration --
10.1 Introduction --
10.2 Evolution of bioactive material approach for myocardial regeneration --
10.3 Bioactive molecules for myocardial regeneration and repair --
10.4 Scaffold- and hydrogel sheet-based molecule delivery --
10.5 Injectable systems --
10.6 Affinity-binding alginate biomaterial for multiple growth factor delivery --
10.7 Summary and conclusions --
Bibliography --
Authors' biographies.
Series Title: Synthesis lectures on tissue engineering, #9.
Responsibility: Emil Ruvinov, Yulia Sapir, and Smadar Cohen.

Abstract:

Cardiac tissue engineering aims at repairing damaged heart muscle and producing human cardiac tissues for application in drug toxicity studies. This book offers a comprehensive overview of the  Read more...

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