Introduction to tissue engineering : applications and challenges /
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| Format: | eBook |
| Language: | English |
| Published: |
Hoboken, N. J. :
Wiley,
[2014]
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| Series: | IEEE Press series in biomedical engineering.
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| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- Cover; Title Page; Contents; Preface; Acknowledgments; List of Abbreviations; Important Terminology and Concepts; Chapter 1 Introduction to Tissue Engineering; 1.1 Introduction to Tissue Engineering; 1.2 Chronic Shortage of Donor Organs; 1.3 The Tissue Engineering Paradigm; 1.4 Definition of Tissue Engineering; 1.5 Process of Bioengineering 3D Artificial Tissue; 1.6 Design Principles for Tissue Engineering; 1.7 Building Blocks of Tissue Engineering; 1.8 Scientific and Technological Challenges; 1.9 Functional Assessment of Artificial Tissue; 1.10 Seminal Papers in Tissue Engineering
- 1.11 Applications of 3D Artificial Tissue; 1.12 Two-Dimensional Versus Three-Dimensional Culture; 1.13 Integration of Core Technologies; 1.14 Growth of Tissue Engineering; 1.15 Disciplines in Tissue Engineering; 1.16 Tissue Engineering and Related Fields; Summary; Practice Questions; References; Chapter 2 Cells for Tissue Engineering; 2.1 Cells and Tissue Engineering; 2.2 Cell Structure and Function; 2.3 The Dynamic Extracellular Matrix; 2.4 Cell Signaling; 2.5 Cellular Junctions; 2.6 Mammalian Tissue and Artificial Tissue; 2.7 Cell Sourcing; 2.8 The Cell Transplantation Process
- 2.9 Cells for Cell Transplantation; 2.10 Mode of Action of Cells During Cell Transplantation; 2.11 Cell Transplantation and Tissue Engineering; 2.12 The Cell Culture Process; 2.13 Applications of Monolayer 2D Cell Culture; 2.14 Cell Culture Versus Tissue Engineering; 2.15 Introduction to Stem Cell Engineering; 2.16 Human Embryonic Stem Cells; 2.17 Induced Pluripotent Stem Cells; 2.18 Adult Stem Cells; Summary; Practice Questions; References; Chapter 3 Biomaterials for Tissue Engineering; 3.1 Definition of Biomaterials; 3.2 Scheme for Biomaterial Development
- 3.3 Historical Perspective on Biomaterials; 3.4 Tensile Properties; 3.5 Modulation of Tensile Properties; 3.6 Material Degradation; 3.7 Biocompatibility; 3.8 Biomimetic Biomaterial; 3.9 Classification of Biomaterials; 3.10 Biomaterial Platforms; 3.11 Smart Materials; 3.12 The Dynamic Extracellular Matrix; 3.13 Idealized Biomaterial; Summary; Practice Questions; References; Chapter 4 Tissue Fabrication Technology; 4.1 Introduction to Tissue Fabrication Technologies; 4.2 Self-Organization Technology; 4.3 Cell Sheet Engineering; 4.4 Scaffold-Based Tissue Fabrication; 4.5 Cell and Organ Printing
- 4.6 Solid Freeform Fabrication; 4.7 Soft Lithography and Microfluidics; 4.8 Cell Patterning; 4.9 Idealized System to Support Tissue Fabrication; Summary; Practice Questions; References; Chapter 5 Vascularization of Artificial Tissue; 5.1 Introduction; 5.2 Seminal Publications in Angiogenesis Research; 5.3 Vascularization Defined; 5.4 Molecular Mechanism of Vasculogenesis; 5.5 Molecular Mechanism of Angiogenesis; 5.6 Molecular Mechanism of Arteriogenesis; 5.7 Therapeutic Angiogenesis; 5.8 Tissue Engineering and Vascularization