Protective effect of BM-MSCs-derived exosome-mediated ferroptosis against anoxia-reoxygenation injury in rat cardiomyoblastl cell line H9c2

Objective To investigate the protective effect and molecular mechanism of bone marrow mesenchymal stem cells(BM-MSCs)-derived exosomes against anoxia-reoxygenation (A/R) injury in rat cardiomyoblast cell line H9c2. Methods The A/R injury model of H9c2 cells was constructed. Electron microscopy and W...

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Veröffentlicht in:Ji chu yi xue yu lin chuang = Jichu yixue yu linchuang = Basic medical sciences and clinics 2023-05, Vol.43 (5), p.771-776
1. Verfasser: YAN Lin, LU Juexiu, LUO Ying, LIU Xianxia
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Sprache:chi
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Zusammenfassung:Objective To investigate the protective effect and molecular mechanism of bone marrow mesenchymal stem cells(BM-MSCs)-derived exosomes against anoxia-reoxygenation (A/R) injury in rat cardiomyoblast cell line H9c2. Methods The A/R injury model of H9c2 cells was constructed. Electron microscopy and Western blot were used to identify BM-MSCs-derived exosomes(BM-MSCs-exos); PHK26 red fluorescence-labeled exosomes were used to observe the endocytosis of H9c2 cells; CCK-8 assay was used to detect cell viability; EdU cell proliferation assay was used to detect cell proliferation ability; Ferroptosis-related detection kits were used to determine Fe2+, MDA, GSH content; Flow cytometry was used to detect reactive oxygen species free radical ROS level. Results BM-MSCs-exos were successfully identified, and the endocytosis of BM-MSCs-exos by H9c2 cells was found. Compared with A/R group, cell viability and proliferation in A/R+ MSCs-exo group were significantly improved (P<0.05).Ferroptosis marker protein GPX4, SLC7A11
ISSN:1001-6325
DOI:10.16352/j.issn.1001-6325.2023.05.0771