Literature DB >> 21566712

Cryopreservation of Human Stem Cells for Clinical Application: A Review.

Charles J Hunt1.   

Abstract

SUMMARY: Stem cells have been used in a clinical setting for many years. Haematopoietic stem cells have been used for the treatment of both haematological and non-haematological disease; while more recently mesenchymal stem cells derived from bone marrow have been the subject of both laboratory and early clinical studies. Whilst these cells show both multipotency and expansion potential, they nonetheless do not form stable cell lines in culture which is likely to limit the breadth of their application in the field of regenerative medicine. Human embryonic stem cells are pluripotent cells, capable of forming stable cell lines which retain the capacity to differentiate into cells from all three germ layers. This makes them of special significance in both regenerative medicine and toxicology. Induced pluripotent stem (iPS) cells may also provide a similar breadth of utility without some of the confounding ethical issues surrounding embryonic stem cells. An essential pre-requisite to the commercial and clinical application of stem cells are suitable cryopreservation protocols for long-term storage. Whilst effective methods for cryopreservation and storage have been developed for haematopoietic and mesenchymal stem cells, embryonic cells and iPS cells have proved more refractory. This paper reviews the current state of cryopreservation as it pertains to stem cells and in particular the embryonic and iPS cell.

Entities:  

Year:  2011        PMID: 21566712      PMCID: PMC3088734          DOI: 10.1159/000326623

Source DB:  PubMed          Journal:  Transfus Med Hemother        ISSN: 1660-3796            Impact factor:   3.747


  191 in total

1.  Hematopoietic stem cell transplantation: a global perspective.

Authors:  Alois Gratwohl; Helen Baldomero; Mahmoud Aljurf; Marcelo C Pasquini; Luis Fernando Bouzas; Ayami Yoshimi; Jeff Szer; Jeff Lipton; Alvin Schwendener; Michael Gratwohl; Karl Frauendorfer; Dietger Niederwieser; Mary Horowitz; Yoshihisa Kodera
Journal:  JAMA       Date:  2010-04-28       Impact factor: 56.272

Review 2.  Potential of human embryonic stem cells in cartilage tissue engineering and regenerative medicine.

Authors:  Wei Seong Toh; Eng Hin Lee; Tong Cao
Journal:  Stem Cell Rev Rep       Date:  2011-09       Impact factor: 5.739

Review 3.  Bioprocessing of embryonic stem cells for drug discovery.

Authors:  Hazel Thomson
Journal:  Trends Biotechnol       Date:  2007-03-26       Impact factor: 19.536

4.  ROCK inhibitor improves survival of cryopreserved serum/feeder-free single human embryonic stem cells.

Authors:  Xiangyun Li; Roman Krawetz; Shiying Liu; Guoliang Meng; Derrick E Rancourt
Journal:  Hum Reprod       Date:  2008-12-04       Impact factor: 6.918

5.  Follicle survival and growth to antral stages in short-term murine ovarian cortical transplants after Cryologic solid surface vitrification or slow-rate freezing.

Authors:  Jan M J Aerts; Janina B P De Clercq; Silke Andries; Jo L M R Leroy; Stefan Van Aelst; Peter E J Bols
Journal:  Cryobiology       Date:  2008-08-07       Impact factor: 2.487

6.  Stem cell characteristics of amniotic epithelial cells.

Authors:  Toshio Miki; Thomas Lehmann; Hongbo Cai; Donna B Stolz; Stephen C Strom
Journal:  Stem Cells       Date:  2005-08-04       Impact factor: 6.277

Review 7.  High-content screening of small compounds on human embryonic stem cells.

Authors:  Ivana Barbaric; Paul J Gokhale; Peter W Andrews
Journal:  Biochem Soc Trans       Date:  2010-08       Impact factor: 5.407

8.  Human embryonic stem cell lines derived from single blastomeres.

Authors:  Irina Klimanskaya; Young Chung; Sandy Becker; Shi-Jiang Lu; Robert Lanza
Journal:  Nature       Date:  2006-08-23       Impact factor: 49.962

9.  Mesenchymal precursor cells in the blood of normal individuals.

Authors:  N J Zvaifler; L Marinova-Mutafchieva; G Adams; C J Edwards; J Moss; J A Burger; R N Maini
Journal:  Arthritis Res       Date:  2000-08-31

10.  Aging of mesenchymal stem cell in vitro.

Authors:  Mandana Mohyeddin Bonab; Kamran Alimoghaddam; Fatemeh Talebian; Syed Hamid Ghaffari; Ardeshir Ghavamzadeh; Behrouz Nikbin
Journal:  BMC Cell Biol       Date:  2006-03-10       Impact factor: 4.241

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  85 in total

1.  Derivation and propagation of human embryonic stem cell lines from frozen embryos in an animal product-free environment.

Authors:  Emma Stephenson; Laureen Jacquet; Cristian Miere; Victoria Wood; Neli Kadeva; Glenda Cornwell; Stefano Codognotto; Yaser Dajani; Peter Braude; Dusko Ilic
Journal:  Nat Protoc       Date:  2012-06-21       Impact factor: 13.491

2.  Continuous passages accelerate the reprogramming of mouse induced pluripotent stem cells.

Authors:  Zhi-yan Shan; Yan-shuang Wu; Xue Li; Xing-hui Shen; Zhen-dong Wang; Zhong-hua Liu; Jing-ling Shen; Lei Lei
Journal:  Cell Reprogram       Date:  2014-01-04       Impact factor: 1.987

3.  Transportation conditions for prompt use of ex vivo expanded and freshly harvested clinical-grade bone marrow mesenchymal stromal/stem cells for bone regeneration.

Authors:  Elena Veronesi; Alba Murgia; Anna Caselli; Giulia Grisendi; Maria Serena Piccinno; Valeria Rasini; Rosaria Giordano; Tiziana Montemurro; Philippe Bourin; Luc Sensebé; Markus T Rojewski; Hubert Schrezenmeier; Pierre Layrolle; Maria Pau Ginebra; Carmen Bunu Panaitescu; Enrique Gómez-Barrena; Fabio Catani; Paolo Paolucci; Jorge S Burns; Massimo Dominici
Journal:  Tissue Eng Part C Methods       Date:  2013-08-20       Impact factor: 3.056

Review 4.  Concise review: guidance in developing commercializable autologous/patient-specific cell therapy manufacturing.

Authors:  Shannon Eaker; Myriam Armant; Harvey Brandwein; Scott Burger; Andrew Campbell; Carmine Carpenito; Dominic Clarke; Timothy Fong; Ohad Karnieli; Knut Niss; Wouter Van't Hof; Ravenska Wagey
Journal:  Stem Cells Transl Med       Date:  2013-10-07       Impact factor: 6.940

5.  Thermo-mechanical stress analysis of cryopreservation in cryobags and the potential benefit of nanowarming.

Authors:  Prem K Solanki; John C Bischof; Yoed Rabin
Journal:  Cryobiology       Date:  2017-02-10       Impact factor: 2.487

6.  Looking Back from the Future to the Present: Biopreservation Will Get Us There!

Authors:  Andreas Sputtek; Arthur W Rowe
Journal:  Transfus Med Hemother       Date:  2011       Impact factor: 3.747

7.  Cryopreserved cell-laden alginate microgel bioink for 3D bioprinting of living tissues.

Authors:  Oju Jeon; Yu Bin Lee; Thomas J Hinton; Adam W Feinberg; Eben Alsberg
Journal:  Mater Today Chem       Date:  2019-01-14

8.  Inducing Heat Shock Proteins Enhances the Stemness of Frozen-Thawed Adipose Tissue-Derived Stem Cells.

Authors:  Shahensha Shaik; Daniel Hayes; Jeffrey Gimble; Ram Devireddy
Journal:  Stem Cells Dev       Date:  2017-02-16       Impact factor: 3.272

9.  The microenvironment of embryoid bodies modulated the commitment to neural lineage postcryopreservation.

Authors:  Sébastien Sart; Yuanwei Yan; Yan Li
Journal:  Tissue Eng Part C Methods       Date:  2014-10-09       Impact factor: 3.056

10.  Cryopreservation effects on Wharton's Jelly Stem Cells proteome.

Authors:  F Di Giuseppe; L Pierdomenico; E Eleuterio; M Sulpizio; P Lanuti; A Riviello; G Bologna; M Gesi; C Di Ilio; S Miscia; M Marchisio; S Angelucci
Journal:  Stem Cell Rev Rep       Date:  2014-06       Impact factor: 5.739

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