Stem cells : from potential to promise /

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Bibliographic Details
Imprint:Singapore : Springer, [2021]
©2021
Description:1 online resource : illustrations (chiefly color)
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/12665277
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Other authors / contributors:Haider, Khawaja Husnain, editor.
ISBN:9789811603013
9811603014
9789811603006
9811603006
Notes:Includes index.
Summary:The book highlights the therapeutic applications of various stem cells, and introduces readers to thymus stem cells and their applications in the reconstitution of thymic structure and function. It also discusses the significant role of mesenchymal stem cells (MSCs) in the treatment of autoimmune diseases and the use of MSC-derived exosomes in cell-free therapy. Moreover, it explores the application of hematopoietic stem cells in the vasculoprotection of the ischemially injured heart. Further topics include the regenerative potential of ovarian germline stem cells and the significance of endometrial stem cells in the pathogenesis of female reproductive tract diseases. Lastly, the book addresses stem cells from perinatal tissues and their immunoregulatory and differentiation potentials, and summarizes new strategies for targeting cancer stem cells to treat tumors.
Other form:Original 9811603006 9789811603006
Standard no.:10.1007/978-981-16-0301-3
Table of Contents:
  • 1 Imaging Stem Cell-Based Myocardial Vasculoprotection
  • 2 Stem Cells of the Thymus
  • 3 Characteristic and Regenerative Potential of Human Endometrial Stem Cells and Progenitors
  • 4 Ovarian Stem Cells and Progenitors and their Regenerative Capabilities
  • 5 Genomic Instability in Stem Cells: The Basic Issues
  • 6 Mesenchymal stem cell-based heart cell therapy: The effect of route of cell delivery in the clinical perspective
  • 7 Researches and applications of stem cell secretome
  • 8 Therapeutic Application of Perinatal Stem Cells in Cardiovascular Diseases: Current Progress and Future Prospects
  • 9 Chromatin Remodeling and Cardiac Differentiation of Stem Cells. .