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   simulated microgravity condition alters the gene expression of some ecm and adhesion molecules in adipose derived stem cells  
   
نویسنده ebnerasuly farid ,hajebrahimi zahra ,tabaie mehdi ,darbouy mojtaba
منبع international journal of molecular and cellular medicine - 2018 - دوره : 7 - شماره : 3 - صفحه:146 -157
چکیده    Adipose- derived stem cells (adscs) are widely used for tissue engineering and regenerative medicine. the beneficial effects of adscs on wound healing have already been reported. remodeling of extracellular matrix (ecm) is the most important physiological event during wound healing. ecm is sensitive to mechanical stresses and the expression of its components can be therefore influenced. the aim of this study was to investigate the effect of simulated microgravity on gene expression of some ecm and adhesion molecules in human adscs. after isolation and characterization of adscs, cells were exposed to simulated microgravity for 1, 3 and 7 days. real-time pcr, fluorescence immunocytochemistry, and mtt assay were performed to evaluate the alterations of integrin subunit beta 1 (itgb1), collagen type 3 (coliii), matrix metalloproteinase-1 (mmp1), cd44, fibrillin (fbn1), vimentin (vim) genes, and coliii protein levels as well as cells viability. microgravity simulation increased the expression of itgb1, coliii, mmp1, and cd44 and declined the expression of fbn1 and vim genes. coliii protein levels also increased. there were no significant changes in the viability of cells cultured in microgravity. since the high expression of ecm components is known as one of the fibroblast markers, our data suggest that pretreatment of adscs by simulated microgravity may increase their differentiation capacity towards fibroblastic cells. microgravity had not adversely affected the viability of adscs, and it is likely to be used alone or in combination with biochemical inducers for cell manipulation.
کلیدواژه adipose- derived stem cells ,simulated microgravity ,extracellular matrix ,adhesion molecules
آدرس islamic azad university, fars science and research branch, department of biology, iran. islamic azad university, marvdasht branch, department of biology, iran, ministry of science research and technology, aerospace research institute, iran, academic center for education, culture and research (acecr), medical laser research center, yara institute, department of photo healing and regeneration, iran, islamic azad university, fars science and research branch, department of biology, iran. islamic azad university, marvdasht branch, department of biology, iran
پست الکترونیکی m.darbouy@lycos.com
 
     
   
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