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https://doi.org/10.1155/2017/3794817
Title: | Transplantation of rat mesenchymal stem cells overexpressing hypoxia-inducible factor 2 α improves blood perfusion and arteriogenesis in a rat hindlimb ischemia model | Authors: | Lu, W Chen, X Si, Y Hong, S Shi, Z Fu, W |
Keywords: | cytokine delta like ligand 4 fibroblast growth factor 2 Hey1 protein hypoxia inducible factor 2alpha matrigel Notch intracellular domain Notch receptor protein Bax stromal cell derived factor 1 transcription factor HES 1 unclassified drug vasculotropin angiogenesis animal cell animal experiment animal model apoptosis Article blood perfusion bone marrow derived mesenchymal stem cell capillary density cell invasion cell migration cell proliferation controlled study DNA modification embryo endothelium cell hindlimb human human cell hypoxia immobility in vitro study limb ischemia male mesenchymal stem cell transplantation motor performance nonhuman Notch signaling outcome assessment perfusion protein expression rat therapy effect upregulation Western blotting |
Issue Date: | 2017 | Citation: | Lu, W, Chen, X, Si, Y, Hong, S, Shi, Z, Fu, W (2017). Transplantation of rat mesenchymal stem cells overexpressing hypoxia-inducible factor 2 α improves blood perfusion and arteriogenesis in a rat hindlimb ischemia model. Stem Cells International 2017 : 3794817. ScholarBank@NUS Repository. https://doi.org/10.1155/2017/3794817 | Rights: | Attribution 4.0 International | Abstract: | Mesenchymal stem cells (MSCs) have been increasingly tested in cell-based therapy to treat numerous diseases. Genetic modification to improve MSC behavior may enhance posttransplantation outcome. This study aims to test the potential therapeutic benefits of rat bone marrow MSCs overexpressing hypoxia-inducible factor 2α (rMSCsHIF-2α) in a rat hindlimb ischemia model. PBS, rMSCs, or rMSCsHIF-2α were injected into rat ischemic hindlimb. Compared with the injection of PBS or rMSCs, transplantation of rMSCsHIF-2α significantly improved blood perfusion, increased the number of vessel branches in the muscle of the ischemic hindlimb, and improved the foot mobility of the ischemic hindlimb (all P<0.05). rMSCHIF-2α transplantation also markedly increased the expression of proangiogenic factors VEGF, bFGF, and SDF1 and Notch signaling proteins including DII4, NICD, Hey1, and Hes1, whereas it reduced the expression of proapoptotic factor Bax in the muscle of the ischemic hindlimb. Overexpression of HIF-2α did not affect rMSC stemness and proliferation under normoxia but significantly increased rMSC migration and tube formation in matrigel under hypoxia (all P<0.05). RMSCsHIF-2α stimulated endothelial cell invasion under hypoxia significantly (P<0.05). Genetic modification of rMSCs via overexpression of HIF-2α improves posttransplantation outcomes in a rat hindlimb ischemia model possibly by stimulating proangiogenic growth factors and cytokines. © 2017 Weifeng Lu et al. | Source Title: | Stem Cells International | URI: | https://scholarbank.nus.edu.sg/handle/10635/179535 | ISSN: | 16879678 | DOI: | 10.1155/2017/3794817 | Rights: | Attribution 4.0 International |
Appears in Collections: | Elements Staff Publications |
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