Cardiovascular Regenerative Medicine: Tissue Engineering and Clinical Applications
Editat de Vahid Serpooshan, Sean M. Wuen Limba Engleză Paperback – 15 aug 2020
The book begins with an examination of state-of-the-art cellular, biomaterial, and macromolecular technologies for the repair and regeneration of diseased heart tissue. It discusses advances in nanotechnology and bioengineering of cardiac microtissues using acoustic assembly. Subsequent chapters explore the clinical applications and translational potential of current technologies such as cardiac patch-based treatments, cell-based regenerative therapies, and injectable hydrogels. The book examines how these methodologies are used to treat a variety of cardiovascular diseases including myocardial infarction, congenital heart disease, and ischemic heart injuries. Finally, the volume concludes with a summary of the most prominent challenges and perspectives on the field of cardiovascular tissue engineering and clinical cardiovascular regenerative medicine.
Cardiovascular Regenerative Medicine is an essential resource for physicians, residents, fellows, and medical students in cardiology and cardiovascular regeneration as well as clinical and basic researchers in bioengineering, nanomaterial and technology, and cardiovascular biology.
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Specificații
ISBN-13: 9783030200497
ISBN-10: 3030200493
Pagini: 233
Ilustrații: XV, 233 p. 39 illus., 36 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2019
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland
ISBN-10: 3030200493
Pagini: 233
Ilustrații: XV, 233 p. 39 illus., 36 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2019
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland
Cuprins
Chapter 1. Tissue Engineered Stem Cell Models of Cardiovascular Diseases.- Chapter 2. Phenotypic Screening of iPSC-derived Cardiomyocytes for Cardiotoxicity Testing and Therapeutic Target Discovery.- Chapter 3. Decellularized extracellular matrix-based cardiovascular tissue engineering.- Chapter 4. 3D bioprinting of Cardiovascular Tissue Constructs: Cardiac Bioinks.- Chapter 5. Nano-biomaterial Advances in Cardiovascular Tissue Engineering.- Chapter 6. Bioengineering 3D Cardiac Microtissues Using Bioassembly.- Chapter 7. From bench to clinic; Translation of cardiovascular tissue engineering products to clinical applications.- Chapter 8. Cardiac patch-based therapies of ischemic heart injuries.- Chapter 9. Cell-Based Cardiovascular Regenerative Therapies.- Chapter 10. Injectable Hydrogels to Treat Myocardial Infarction.- Chapter 11. Regenerative Medicine for the Treatment of Congenital Heart Disease.- Chapter 12. Cardiovascular Regenerative Medicine: Challenges, perspectives, and future directions
Notă biografică
Vahid Serpooshan, PhD
Wallace H. Coulter Department of Biomedical Engineering
Department of Pediatrics
Emory University and Georgia Institute of Technology
Children’s Healthcare of Atlanta (CHOA)
Stanford University
Stanford, CA
Wallace H. Coulter Department of Biomedical Engineering
Department of Pediatrics
Emory University and Georgia Institute of Technology
Children’s Healthcare of Atlanta (CHOA)
Atlanta, GA
Sean M. Wu, MD, Ph.D.
Associate Professor of Medicine and, by courtesy, Pediatrics
Stanford University
Stanford, CA
Textul de pe ultima copertă
This book is a comprehensive and up-to-date resource on the use of regenerative medicine for the treatment of cardiovascular disease. It provides a much-needed review of the rapid development and evolution of bio-fabrication techniques to engineer cardiovascular tissues as well as their use in clinical settings. The book incorporates recent advances in the biology, biomaterial design, and manufacturing of bioengineered cardiovascular tissue with their clinical applications to bridge the basic sciences to current and future cardiovascular treatment.
The book begins with an examination of state-of-the-art cellular, biomaterial, and macromolecular technologies for the repair and regeneration of diseased heart tissue. It discusses advances in nanotechnology and bioengineering of cardiac microtissues using acoustic assembly. Subsequent chapters explore the clinical applications and translational potential of current technologies such as cardiac patch-based treatments, cell-based regenerative therapies, and injectable hydrogels. The book examines how these methodologies are used to treat a variety of cardiovascular diseases including myocardial infarction, congenital heart disease, and ischemic heart injuries. Finally, the volume concludes with a summary of the most prominent challenges and perspectives on the field of cardiovascular tissue engineering and clinical cardiovascular regenerative medicine.
Cardiovascular Regenerative Medicine is an essential resource for physicians, residents, fellows, and medical students in cardiology and cardiovascular regeneration as well as clinical and basic researchers in bioengineering, nanomaterial and technology, and cardiovascular biology.
The book begins with an examination of state-of-the-art cellular, biomaterial, and macromolecular technologies for the repair and regeneration of diseased heart tissue. It discusses advances in nanotechnology and bioengineering of cardiac microtissues using acoustic assembly. Subsequent chapters explore the clinical applications and translational potential of current technologies such as cardiac patch-based treatments, cell-based regenerative therapies, and injectable hydrogels. The book examines how these methodologies are used to treat a variety of cardiovascular diseases including myocardial infarction, congenital heart disease, and ischemic heart injuries. Finally, the volume concludes with a summary of the most prominent challenges and perspectives on the field of cardiovascular tissue engineering and clinical cardiovascular regenerative medicine.
Cardiovascular Regenerative Medicine is an essential resource for physicians, residents, fellows, and medical students in cardiology and cardiovascular regeneration as well as clinical and basic researchers in bioengineering, nanomaterial and technology, and cardiovascular biology.
Caracteristici
Provides a much-needed review of the rapid development and evolution of bio-fabrication techniques Discusses the use of bioengineered cardiovascular tissues to treat myocardial infarction, congenital heart disease, and ischemic heart injuries Includes updated information on the clinical relevance and translational potential of current methodologies Highlights state-of-the-art cellular, biomaterial, and macromolecular technologies