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Bio-inspired Materials for Biomedical Engineering
Anthony B. Brennan (Edited by), AB Brennan (Author), Chelsea M. Kirschner (Edited by)
9781118369364, Wiley
Hardback, published 23 May 2014
400 pages
23.6 x 15.5 x 2.8 cm, 0.658 kg
This book covers the latest bio-inspired materials synthesis techniques and biomedical applications that are advancing the field of tissue engineering. Bio-inspired concepts for biomedical engineering are at the forefront of tissue engineering and regenerative medicine. Scientists, engineers and physicians are working together to replicate the sophisticated hierarchical organization and adaptability found in nature and selected by evolution to recapitulate the cellular microenvironment. This book demonstrates the dramatic clinical breakthroughs that have been made in engineering all four of the major tissue types and modulating the immune system. Part I (Engineering Bio-inspired Material Microenvironments) covers Bio-inspired Presentation of Chemical Cues, Bio-inspired Presentation of Physical Cues, and Bio-inspired Integration of Natural Materials.
Part II (Bio-inspired Tissue Engineering) addresses tissue engineering in epithelial tissue, muscle tissue, connective tissue, and the immune system.
Contributors vii Preface xi Introduction 1 Part I Engineering Bio-Inspired Material Microenvironments 5 Chapter 1 ECM-Inspired Chemical Cues: Biomimetic Molecules and Techniques of Immobilization 7 Chapter 2 Dynamic Materials Mimic Developmental and Disease Changes in Tissues 25 Chapter 3 The Role of Mechanical Cues in Regulating Cellular Activities and Guiding Tissue Development 45 Chapter 4 Contribution of Physical Forces on the Design of Biomimetic Tissue Substitutes 59 Chapter 5 Cellular Responses to Bio-Inspired Engineered Topography 77 Chapter 6 Engineering The Mechanical and Growth Factor Signaling Roles of Fibronectin Fibrils 99 Chapter 7 Biologic Scaffolds Composed of Extracellular Matrix as a Natural Material for Wound Healing 111 Chapter 8 Bio-Inspired Integration of Natural Materials 125 Part II Bio-Inspired Tissue Engineering 151 Chapter 9 Bio-Inspired Design of Skin Replacement Therapies 153 Chapter 10 Epithelial Engineering: From Sheets to Branched Tubes 161 Chapter 11 A Biomimetic Approach Toward The Fabrication of Epithelial-Like Tissue 175 Chapter 12 Nano- and Microstructured ECM and Biomimetic Scaffolds for Cardiac Tissue Engineering 195 Chapter 13 Strategies and Challenges for Bio-Inspired Cardiovascular Biomaterials 227 Chapter 14 Evaluation of Bio-Inspired Materials for Mineralized Tissue Regeneration Using Type I Collagen Reporter Cells 259 Chapter 15 Learning from Tissue Equivalents: Biomechanics and Mechanobiology 281 Chapter 16 Mimicking the Hematopoietic Stem Cell Niche by Biomaterials 309 Chapter 17 Engineering Immune Responses to Allografts 327 Chapter 18 Immunomimetic Materials 357 Index 371
Sang Jin Lee and Anthony Atala
Roger Y. Tam, Shawn C. Owen, and Molly S. Shoichet
Matthew G. Ondeck and Adam J. Engler
Liming Bian
Menekse Ermis, Erkan Türker Baran, Tuğba Dursun, Ezgi Antmen, and Vasif Hasirci
Chelsea M. Kirschner, James F. Schumacher, and Anthony B. Brennan
Christopher A. Lemmon
Elizabeth W. Kollar, Christopher L. Dearth, and Stephen F. Badylak
Albino Martins, Marta Alves da Silva, Ana Costa-Pinto, Rui L. Reis, and Nuno M. Neves
Dennis P. Orgill
Hye Young Kim and Celeste M. Nelson
Hongjun Wang and Meng Xu
Quentin Jallerat, John M. Szymanski, and Adam W. Feinberg
Elaine L. Lee and Joyce Y. Wong
Liisa T. Kuhn, Emily Jacobs, and A. Jon Goldberg
David D. Simon and Jay D. Humphrey
Eike Müller, Michael Ansorge, Carsten Werner, and Tilo Pompe
Anthony W. Frei and Cherie L. Stabler
Jamal S. Lewis and Benjamin G. Keselowsky
Subject Areas: Other branches of medicine [MM]
