Regenerative medicine applications in organ transplantation

Regenerative Medicine Applications in Organ Transplantation illustrates exactly how these two fields are coming together and can benefit one another. It discusses technologies being developed, methods being implemented, and which of these are the most promising. The text encompasses tissue engineeri...

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Opis bibliograficzny
1. autor: Orlando, Giuseppe, 1970-
Kolejni autorzy: Lerut, Jan (Dyrektor wydawnictwa), Soker, Shay (Dyrektor wydawnictwa)
Format: Livre numérique
Język:Anglais
Wydane: San Diego, CA : Elsevier Science & Technology Books 2014.
Hasła przedmiotowe:
Dostęp online:Accès Université Orléans et IFPM
Komentarz: Notice rédigée d'après la consultation du 2014-03-28
Titre provenant de la page de titre du document numérique
Numérisation de l'édition de Amsterdam ; Boston : Elsevier Academic Press, 2013
Date de publication et éditeur d après le site du fournisseur
La pagination de l'édition imprimée correspondante est de 1049 p.
Cyberlibris (ScholarVox) corpus Santé
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Regenerative medicine applications in organ transplantation, [edited by] Giuseppe Orlando ... [et al.], 1st edition, Amsterdam, Elsevier Academic Press, 2014, 1 vol. (XXXVII-1011 p.), 978-0-12-398523-1
Spis treści:
  • Chapter 1 - Introduction: Regenerative Medicine and Solid Organ Transplantation from a Historical Perspective
  • Chapter 2 - Solid Organ Transplantation: Has the Promise Been Kept and the Needs Met?
  • Part I: Principles of Regenerative Medicine and Cell, Tissue, and Organ Bioengineering
  • Chapter 3 - Strategies for the Specification of Tissue Engineering Biomaterials
  • Chapter 4 - Principles of Stem Cell Biology
  • Chapter 5 - Principles of Cell Sheet Technology
  • Chapter 6 - Principles of Bioprinting Technology
  • Chapter 7 - Synthetic Biomaterials for Regenerative Medicine Applications
  • Chapter 8 - Natural Biomaterials for Regenerative Medicine Applications
  • Chapter 9 - Bioartificial Biomaterials for Regenerative Medicine Applications
  • Chapter 10 - Bioactivated Materials for Cell and Tissue Guidance
  • Chapter 11 - Biocompatibility and Immune Response to Biomaterials
  • Chapter 12 - Harnessing Regenerative and Immunomodulatory Properties of Mesenchymal Stem Cells in Transplantation Medicine
  • Chapter 13 - Bioreactors for Tissue Engineering Purposes
  • Part II: Kidney
  • Chapter 14 - Current Status of Renal Transplantation
  • Chapter 15 - Living Donor Renal Transplantation: Progress, Pitfalls, and Promise
  • Chapter 16 - Machine Perfusion of Kidneys Donated After Circulatory Death: The Carrel and Lindbergh Legacy
  • Chapter 17 - Renal Regeneration: The Bioengineering Approach
  • Chapter 18 - Renal Regeneration: The Stem Cell Biology Approach
  • Chapter 19 - Renal Regeneration: The Developmental Approach
  • Part III: Liver
  • Chapter 20 - Current Status of Liver Transplantation
  • Chapter 21 - Living-Related Liver Transplantation: Progress, Pitfalls, and Promise
  • Chapter 22 - Donation After Cardiac Death in Liver Transplantation
  • Chapter 23 - Artificial Liver Support
  • Chapter 24 - Liver Regeneration: The Bioengineering Approach
  • Chapter 25 - Liver Regeneration: The Developmental Biology Approach
  • Chapter 26 - Liver Regeneration: The Stem Cell Approach
  • Chapter 27 - Liver Regeneration and Bioengineering: The Role of Liver Extra-Cellular Matrix and Human Stem/Progenitor Cells
  • Part IV: Heart
  • Chapter 28 - Current Status of Heart Transplantation
  • Chapter 29 - Artificial Heart Support
  • Chapter 30 - Heart Regeneration: The Bioengineering Approach
  • Chapter 31 - Heart Regeneration: The Developmental and Stem Cell Biology Approach
  • Part V: Small Bowel
  • Chapter 32 - Current Status of Intestinal Transplantation
  • Chapter 33 - Living Related Small Bowel Transplantation: Progress, Pitfalls, and Promise
  • Chapter 34 - Intestinal Regeneration: The Bioengineering Approach
  • Chapter 35 - Intestinal Regeneration: The Developmental Biology Approach
  • Chapter 36 - Intestinal Regeneration: The Stem Cell Approach
  • Chapter 37 - Building Blocks for Engineering the Small Intestine
  • Part VI: Endocrine Pancreas and Islets of Langerhans
  • Chapter 38 - Current Status of Pancreas Transplantation
  • Chapter 39 - Living-Donor Pancreas Transplantation: Progress, Pitfalls, and Promise
  • Chapter 40 - Current Status of Islet Transplantation
  • Chapter 41 - Pancreatic Islets Regeneration: The Bioengineering Approach
  • Chapter 42 - Pancreatic Islet Regeneration: The Developmental and Stem Cell Biology Approach
  • Chapter 43 - Microencapsulation Technology
  • Chapter 44 - Autologous Islets Transplantation
  • Part VII: Lung
  • Chapter 45 - Current Status of Lung Transplantation
  • Chapter 46 - Living Related Lung Transplantation: Progress, Pitfalls, and Promise
  • Chapter 47 - Artificial Lung Support
  • Chapter 48 - Lung Regeneration: The Bioengineering Approach
  • Chapter 49 - Lung Regeneration: The Developmental Biology Approach
  • Chapter 50 - Lung Regeneration: The Stem Cell Approach
  • Part VIII: Composite Tissues Allotransplantation
  • Chapter 51 - Current Status of CTA
  • Chapter 52 - Bioengineering of the Lower Urinary Tract
  • Chapter 53 - Upper Airways Regeneration and Bioengineering
  • Chapter 54 - Skin Regeneration and Bioengineering
  • Chapter 55 - The Use of Skin Substitutes in the Treatment of Burns
  • Chapter 56 - Bone Regeneration and Bioengineering
  • Chapter 57 - Nerve Regeneration and Bioengineering
  • Chapter 58 - Vessel Regeneration and Bioengineering
  • Chapter 59 - Corneal Bioengineering
  • Chapter 60 - Esophagus Bioengineering
  • Part IX: Immunosuppression-free Transplantation in the Regenerative Medicine Era
  • Chapter 61 - Stem Cell-Based Approach to Immunomodulation
  • Chapter 62 - Immunosuppression-Free Renal Transplantation
  • Chapter 63 - Immunosuppression-Free Liver Transplantation
  • Chapter 64 - Biomarkers of Operational Tolerance in Liver Transplantation
  • Chapter 65 - Biomarkers of Tolerance in Renal Transplantation
  • Chapter 66 - Immunocloaking
  • Chapter 67 - The Need for Immune Modulation Despite Regenerative Medicine
  • Chapter 68 - Stem Cells Approach to I/R Injury
  • Chapter 69 - Xenotransplantation: Past, Present, and Future
  • Chapter 70 - Regenerative Medicine as an Industry
  • Chapter 71 - Ethics in Regenerative Medicine and Transplantation
  • Chapter 72 - Epilogue: Organ Bioengineering and Regeneration as The New Holy Grail of Organ Transplantation