Perinatal Stem Cells, second variation builds at the first version to supply an up-to-date educational on perinatal stem cells, together with stem cells harvested from the amniotic fluid, placenta, maternal blood offer, umbilical twine and Wharton's Jelly. As within the first variation, assurance comprises the underlying biology of every of the resources of being pregnant comparable stem cells, mobilephone tradition, and strength healing makes use of, in addition to insights at the effect of those stem cells from obstetricians and gynecologists, cardiologists, hematologists, tissue engineers, and rope blood bankers.

Normally discarded as clinical waste, perinatal stem cells supply a robust healing instrument field substitute to the debatable embryonic stem cells. considering e-book of the 1st version, a burgeoning commerical has built round numerous resources of perinatal cells, and the second one version now contains an summary of this becoming industry.

With contributions from a few of the best educational stem phone laboratories within the usa in addition to new chapters from overseas stem telephone scientists, Perinatal Stem Cells presents an replace on the cutting-edge research in the sector whereas protecting its signature clinical focus.

Chapter 1 Amniotic Fluid Stem Cells (pages 1–15): Sean Vincent Murphy and Anthony Atala
Chapter 2 twine Blood Transplants: Perinatal Stem Cells in medical perform (pages 17–36): Richard L. Haspel and Karen ok. Ballen
Chapter three Hematopoietic Stem phone improvement within the Placenta (pages 37–52): Katrin E. R. Ericson, Akanksha Chhabra and Hanna ok. A. Mikkola
Chapter four Perinatal Mesenchymal Stem cellphone Banking for Umbilical twine Blood Transplantation and Regenerative medication (pages 53–69): Rouzbeh R. Taghizadeh
Chapter five Making Organ and Stem mobilephone Transplantation more secure: The function of Mesenchymal Stem Cells (pages 71–76): Hans Klingemann
Chapter 6 Wharton's Jelly Mesenchymal Stem Cells and Immune Modulation: Regenerative drugs Meets Tissue fix (pages 77–88): Rita Anzalone, Felicia Farina, Melania Lo Iacono, Simona Corrao, Tiziana Corsello, Giovanni Zummo and Giampiero los angeles Rocca
Chapter 7 Immunogenicity as opposed to Immunomodulation of Perinatal Stem Cells (pages 89–103): Bram Lutton and Raimon Duran?Struuck
Chapter eight The Translational capability of Perinatal Stem Cells in scientific medication: Mesenchymal Stem Cells (pages 105–117): Radbeh Torabi, Vincenzo Villani, Christopher A. Mallard and Curtis L. Cetrulo
Chapter nine baby Stem Cells: identification, functionality, and medical strength (pages 119–137): Anthony Park, Louis Chan, Mayur Danny I. Gohel, Sean Murphy, Ursula Manuelpillai, Ann Chidgey and Richard Boyd
Chapter 10 Biomedical capability of Human Perinatal Stem Cells (pages 139–153): Oleg V. Semenov and Christian Breymann
Chapter eleven Progenitor telephone remedy for the therapy of anxious mind damage (pages 155–176): Alex Bryan Olsen, Robert A. Hetz, Supinder S. Bedi and Charles S. Cox
Chapter 12 The Human Amniotic Membrane: A Tissue with Multifaceted houses and diverse power medical purposes (pages 177–195): Maddalena Caruso, Antonietta Silini and Ornella Parolini
Chapter thirteen Advances and attainable functions of Human Amnion for the administration of Liver disorder (pages 197–208): Fabio Marongiu, Maria Paola Serra, Marcella Sini, Ezio Laconi, Marc C. Hansel, Kristen J. Skvorak, Roberto Gramignoli and Stephen C. Strom
Chapter 14 Amnion?Derived Cells for Stroke Restorative treatment (pages 209–219): Naoki Tajiri, Loren E. Glover and Cesar V. Borlongan
Chapter 15 Pregnancy?Acquired Fetal Progenitors as average telephone treatment (pages 221–234): Elke Seppanen, Nicholas M. Fisk and Kiarash Khosrotehrani
Chapter sixteen Perinatal Stem Cells: An point of view (pages 235–247): Kyle J. Cetrulo
Chapter 17 Patent defense of Stem mobilephone ideas (pages 249–257): John R. Wetherell
Chapter 19 Umbilical wire Blood Banking: An Obstetrician's viewpoint (pages 271–277): Jordan H. Perlow
Chapter 18 Interview with Frances Verter, founding father of Parent's advisor to twine Blood beginning (pages 259–269): Frances Verter and Kyle J. Cetrulo

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Furth ME, Atala A. 2009. Stem cell sources to treat diabetes. J Cell Biochem. 106:507–511. Gekas J, Walther G, Skuk D, Bujold E, Harvey I, et al. 2010. In vitro and in vivo study of human amniotic fluid-derived stem cell differentiation into myogenic lineage. Clin Exp Med. 10:1–6. Guan X, Delo DM, Atala A, Soker S. 2011. In vitro cardiomyogenic potential of human amniotic fluid stem cells. J Tissue Eng Regen Med. 5:220–228. Heidari Z, Isobe K, Goto S, Nakashima I, Kiuchi K, et al. 1996. Characterization of the growth factor activity of amniotic fluid on cells from hematopoietic and lymphoid organs of different life stages.

5:220–228. Heidari Z, Isobe K, Goto S, Nakashima I, Kiuchi K, et al. 1996. Characterization of the growth factor activity of amniotic fluid on cells from hematopoietic and lymphoid organs of different life stages. Microbiol Immunol. 40:583–589. Hinterberger TJ, Sassoon DA, Rhodes SJ, Konieczny SF. 1991. Expression of the muscle regulatory factor MRF4 during somite and skeletal myofiber development. Dev Biol. 147:144–156. Hoehn H, Bryant EM, Karp LE, Martin GM. 1975. Cultivated cells from diagnostic amniocentesis in second trimester pregnancies.

Torricelli F, Brizzi L, Bernabei PA, Gheri G, Di Lollo S, et al. 1993. Identification of hematopoietic progenitor cells in human amniotic fluid before the 12th week of gestation. Ital J Anat Embryol. 98:119–126. Troyer DL, Weiss ML. 2008. Wharton’s jelly-derived cells are a primitive stromal cell population. Stem Cells. 26:591–599. Tsai MS, Lee JL, Chang YJ, Hwang SM. 2004. Isolation of human multipotent mesenchymal stem cells from second-trimester amniotic fluid using a novel two-stage culture protocol.

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