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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/24922


    Title: Inhibition of cell death-inducing p53 target 1 through miR-210-3p overexpression attenuates reactive oxygen species and apoptosis in rat adipose-derived stem cells challenged with Angiotensin II
    Authors: Lai, CH;Barik, P;Hsieh, DJY;Day, CH;Ho, TJ;Chen, RJ;Kuo, WW;Padma, VV;Shibu, MA;Huang, CY
    Keywords: Hypoxia;Angiotensin II;Apoptosis;Mesenchymal stem cells;microRNA
    Date: 2020
    Issue Date: 2022-08-09T08:10:12Z (UTC)
    Publisher: ACADEMIC PRESS INC ELSEVIER SCIENCE
    ISSN: 0006-291X
    Abstract: Hypoxic preconditioning is a well-known strategy to improve the survival and therapeutic potential of stem cells against various challenges including hemodynamic and neurohormonal modulations. However, the mechanism involved in hypoxia-induced benefits on stem cells is still ambiguous. In pathological hypertension, the elevation of the neurohormonal mediator Angiotensin II (Ang II) causes the adverse effects to stem cells. In this study, we investigate the effect and mechanism of action of short term hypoxia-inducible miRNA in suppressing the effects of AngIl on stem cells. According to the results obtained, Ang II affects the normal cell cycle and triggers apoptosis in rADSCs with a corresponding increase in the expression of cell death-inducing p53 target 1 (CDIP1) protein. However, the short term hypoxia-inducible miRNA-miR-210-3p was found to target CDIP1 and reduce their levels upon the Ang II challenge. CDIP1 induces stress-mediated apoptosis involving the extrinsic apoptosis pathway via Bid/Bax/cleaved caspase3 activation. Administration of mimic miR-210-3p targets CDIP1 mRNA by binding to the 3' UTR region as confirmed by dual luciferase assay and also reduced Ang II-induced mitochondrial ROS accumulation as analyzed by MitoSOX staining. Moreover, the present study demonstrates the mechanism of miR-210-3p in the regulation of Ang II-induced CDIP1-associated apoptotic pathway in rADSCs. (C) 2020 Elsevier Inc. All rights reserved.
    URI: http://dx.doi.org/10.1016/j.bbrc.2020.07.052
    https://www.webofscience.com/wos/woscc/full-record/WOS:000577987300004
    https://ir.csmu.edu.tw:8080/handle/310902500/24922
    Relation: BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS ,2020 ,v532 ,issue 3 ,p347-354
    Appears in Collections:[中山醫學大學研究成果] 期刊論文

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