학술논문

Transcriptional profiling of young and old mesenchymal stem cells in response to oxygen deprivation and reparability of the infarcted myocardium
Document Type
Report
Source
Journal of Molecular and Cellular Cardiology. March, 2008, Vol. 44 Issue 3, p582, 15 p.
Subject
Stem cells -- Genetic aspects
Stem cells -- Transplantation
Language
English
ISSN
0022-2828
Abstract
To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.yjmcc.2007.11.014 Byline: Shujia Jiang, Husnain Kh Haider, Rafeeq P.H. Ahmed, Niagara M. Idris, Asmat Salim, Muhammad Ashraf Keywords: Aging; Angiogenesis; Myocardium; Myogenesis; Myocardial infarction; Stem cells; Transplantation Abstract: Most clinical studies have used autologous bone marrow (BM) stem cells for myocardial regeneration in elderly patients. We hypothesize that aging impairs the survival and differentiation potential of BM stem cells thus limiting their therapeutic efficacy. BM-derived MSCs from young (.sup.YngMSCs; 8-12 weeks) and old (.sup.OldMSCs; 24-26 months) rats were purified and assessed for their responsiveness to anoxia and reparability of infarcted heart. Higher expression of angiogenic growth factors was observed by.sup.YngMSCs under anoxia as compared to.sup.OldMSCs, cultured either alone or in co-culture (.sup.Co-oldMSCs) with.sup.YngMSCs. Likewise,.sup.YngMSCs were more tolerant to apoptotic stimuli and showed higher ability to form tubular structures during in vitro Matrigel assay as compared to.sup.OldMSCs and.sup.Co-oldMSCs with a possible role of p21 and p27 as contributory survival factors. For in vivo studies, acute myocardial infarction model was developed in Fischer-344 rats (n =38). The animals were grouped to receive 70 [mu]l basal DMEM without cells (group 1) or containing 2x10.sup.6.sup.YngMSCs (PKH67 labeled; group 2) or.sup.OldMSCs (PKH26 labeled; group 3) and mixture of.sup.YngMSCs +.sup.OldMSCs (1x10.sup.6 cells each; group 4). Histological studies revealed that by day 7,.sup.YngMSCs showed elongated morphology with orientation similar to the host muscle architecture. Electron microscopy and confocal imaging after fluorescent immunostaining showed superior angiomyogenic potential of.sup.YngMSCs. Echocardiography showed significantly preserved heart function indices in the animals transplanted with.sup.YngMSCs. Aging impairs the responsiveness of.sup.OldMSCs to anoxia and their differentiation potential..sup.YngMSCs fail to alter the survival of.sup.OldMSCs under in vitro as well as in vivo conditions. It is therefore concluded that transplantation of stem cells from young donors would be a better option for heart cell therapy in future clinical studies. Author Affiliation: Department of Pathology and Laboratory Medicine, 231-Albert Sabin Way, University of Cincinnati, OH 45267-0529, USA Article History: Received 13 September 2007; Revised 13 November 2007; Accepted 29 November 2007