Mitochondrial gene replacement in human pluripotent stem cell-derived neural progenitors.
Iyer S, Xiao E, Alsayegh K, Eroshenko N, Riggs MJ, Bennett JP Jr, Rao RR.
Abstract
Human pluripotent stem cell-derived neural progenitor (hNP) cells are an excellent resource for understanding early neural d...
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Pediatr Res. 2008 May;63(5):461-6.
Stem cells bioprocessing: an important milestone to move regenerative medicine research into the clinical arena.
Polak JM, Mantalaris S.
Abstract
Regenerative Medicine is a new, multidisciplinary field that combines expertise in biology, chemistry, engineering,...
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Stem Cell Res. 2011 Jan;6(1):60-9. Epub 2010 Aug 27.
Unrestricted somatic stem cells (USSC) from human umbilical cord blood display uncommitted epigenetic signatures of the major stem cell pluripotency genes.
Santourlidis S, Wernet P, Ghanjati F, Graffmann N, Springer J, Kriegs C, Zhao X, Brands J...
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Neurotherapeutics. 2011 Oct 6. [Epub ahead of print]
Human Pluripotent Stem Cell Therapy for Huntington's Disease: Technical, Immunological, and Safety Challenges.
Nicoleau C, Viegas P, Peschanski M, Perrier AL.
Abstract
Intra-striatal transplantation of homotypic fetal tissue at the time of pea...
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Rev Diabet Stud. 2010 Summer;7(2):168-82. Epub 2010 Aug 10.
Human placenta-derived mesenchymal stem cells and islet-like cell clusters generated from these cells as a novel source for stem cell therapy in diabetes.
Kadam S, Muthyala S, Nair P, Bhonde R.
Abstract
Placental tissue holds great prom...
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Odontology. 2011 Jul;99(2):105-11. Epub 2011 Jul 31.
Potential feasibility of dental stem cells for regenerative therapies: stem cell transplantation and whole-tooth engineering.
Nakahara T.
Abstract
Multipotent mesenchymal stem cells from bone marrow are expected to be a somatic stem cell sourc...
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