Various reports have indicated low survival of injected progenitors into unfavorable environments such as the ischemic myocardium or lower limb tissues.. is represents a major bottleneck in stem-cell-based cardiovascular regenerative medicine. Strategies to enhance survival of these cells in recipient tissues have been therefore sought to improve stem cell survival and ensure long-term engraftment. In the present contribution, we show that embedding human cord blood-derived CD34(+) cells into a collagen I-based hydrogel containing cytokines is a suitable strategy to promote stem cell proliferation and protect these cells from anoxia-induced apoptosis.

Various reports have indicated low survival of injected progenitors into unfavorable environments such as the ischemic myocardium or lower limb tissues. This represents a major bottleneck in stem-cell-based cardiovascular regenerative medicine. Strategies to enhance survival of these cells in recipient tissues have been therefore sought to improve stem cell survival and ensure long-term engraftment. In the present contribution, we show that embedding human cord blood-derived CD34(+) cells into a collagen I-based hydrogel containing cytokines is a suitable strategy to promote stem cell proliferation and protect these cells from anoxia-induced apoptosis.

Growth induction and low-oxygen apoptosis inhibition of human CD34+ progenitors in collagen gels / Avitabile, Daniele; K., Salchert; C., Werner; M. C., Capogrossi; M., Pesce. - In: BIOMED RESEARCH INTERNATIONAL. - ISSN 2314-6141. - ELETTRONICO. - 2013:n/a(2013), pp. 542810-542811. [10.1155/2013/542810]

Growth induction and low-oxygen apoptosis inhibition of human CD34+ progenitors in collagen gels.

AVITABILE, DANIELE;
2013

Abstract

Various reports have indicated low survival of injected progenitors into unfavorable environments such as the ischemic myocardium or lower limb tissues.. is represents a major bottleneck in stem-cell-based cardiovascular regenerative medicine. Strategies to enhance survival of these cells in recipient tissues have been therefore sought to improve stem cell survival and ensure long-term engraftment. In the present contribution, we show that embedding human cord blood-derived CD34(+) cells into a collagen I-based hydrogel containing cytokines is a suitable strategy to promote stem cell proliferation and protect these cells from anoxia-induced apoptosis.
2013
Various reports have indicated low survival of injected progenitors into unfavorable environments such as the ischemic myocardium or lower limb tissues. This represents a major bottleneck in stem-cell-based cardiovascular regenerative medicine. Strategies to enhance survival of these cells in recipient tissues have been therefore sought to improve stem cell survival and ensure long-term engraftment. In the present contribution, we show that embedding human cord blood-derived CD34(+) cells into a collagen I-based hydrogel containing cytokines is a suitable strategy to promote stem cell proliferation and protect these cells from anoxia-induced apoptosis.
Antigens; CD34; metabolism, Apoptosis, Cell Hypoxia, Cell Proliferation, Cell Survival, Collagen Type I; chemistry, Fetal Blood; cytology, Flow Cytometry, Humans, Hydrogels; chemistry, Oxygen; metabolism, Stem Cell Transplantation, Stem Cells; cytology
01 Pubblicazione su rivista::01a Articolo in rivista
Growth induction and low-oxygen apoptosis inhibition of human CD34+ progenitors in collagen gels / Avitabile, Daniele; K., Salchert; C., Werner; M. C., Capogrossi; M., Pesce. - In: BIOMED RESEARCH INTERNATIONAL. - ISSN 2314-6141. - ELETTRONICO. - 2013:n/a(2013), pp. 542810-542811. [10.1155/2013/542810]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/739602
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