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   Exosomes Secreted by Normoxic and Hypoxic Cardiosphere-derived Cells Have Anti-apoptotic Effect  
   
نویسنده namazi helia ,namazi iman ,ghiasi parisa ,ansari hassan ,rajabi sarah ,hajizadeh-saffar ensiyeh ,aghdami nasser ,mohit elham
منبع iranian journal of pharmaceutical research - 2018 - دوره : 17 - شماره : 1 - صفحه:377 -385
چکیده    Cardiosphere-derived cells (cdcs) have emerged as one of the most promising stem celltypes for cardiac protection and repair. exosomes are required for the regenerative effects of human cdcs and mimic the cardioprotective benefits of cdcs such as anti-apoptotic effect in animal myocardial infarction (mi) models. here we aimed to investigate the anti-apoptotic effect of the hypoxic and normoxic human cdcs-derived exosomes on induced apoptosis in human embryonic stem cell-derived cardiomyocytes (hesc-cms). in this study, cdcs were cultured under normoxic (18% o2) and hypoxic (1% o_2) conditions and cdc-exosomes were isolated from conditioned media by differential ultracentrifugation. cobalt chloride as hypoxiamimetic agents at a high concentration was used to induce apoptosis in hesc-cms. the caspase-3/7 activity was determined in apoptosis-induced hesc-cms. the results indicated that the caspase-positive hesc-cms were significantly decreased from 30.63 ± 1.44% (normalized against untreated cardiomyocytes) to 1.65 ± 0.1 and 1.1 ± 1.09 in the presence of normoxicexosomes (n-exo) at concentration of 25 and 50 ìg/ml, respectively. furthermore, hypoxicexosomes (h-exo) at concentration of 25 and 50 ìg/ml led to 8.75 and 12.86 % reduction incaspase-positive cells, respectively. the anti-apoptotic activity of n-exo at the concentrations of 25 and 50 ìg/ml was significantly higher than h-exo. these results could provide insights into optimal preparation of cdcs which would greatly influence the anti-apoptotic effect of cdc-exosomes. totally, cdc-secreted exosomes have the potential to increase the survival of cardiomyocytes by inhibiting apoptosis. therefore, cdc-exosomes can be developed as therapeutic strategy in ischemic cardiac disease.
کلیدواژه Cardiosphere-derived cells; Exosomes; Hypoxia preconditioning; Anti apoptotic effect.
آدرس shahid beheshti university of medical sciences, school of pharmacy, department of pharmaceutical biotechnology, Iran. shahid beheshti university of medical sciences, students’ research committee, iran, mashhad university of medical sciences, school of medicine, Iran, royan institute for stem cell biology and technology, acecr, cell science research center, department of stem cells and developmental biology, Iran, mashhad university of medical sciences, school of medicine, Iran, mashhad university of medical sciences, school of medicine, Iran, mashhad university of medical sciences, school of medicine, Iran, mashhad university of medical sciences, school of medicine, Iran, shahid beheshti university of medical sciences, school of pharmacy, department of pharmaceutical biotechnology, Iran. shahid beheshti university of medical sciences, protein technology research center, iran
 
     
   
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