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Jiao, L.* ; Shao, Y.* ; Yu, Q.* ; Li, M.* ; Wang, Y.* ; Gong, M.* ; Yang, X.* ; Liu, T.* ; Li, Z.* ; Liu, H.* ; Zhang, Y.* ; Tan, Z.* ; Sun, L.* ; Xuan, L.* ; Yin, H. ; Cai, B.* ; Yang, B.*

GDF11 replenishment protects against hypoxia-mediated apoptosis in cardiomyocytes by regulating autophagy.

Eur. J. Pharmacol. 885:173495 (2020)
DOI
Open Access Green möglich sobald Postprint bei der ZB eingereicht worden ist.

GDF11 has been reported to play a critical role in rejuvenating hypertrophy heart, skeletal muscle, and blood vessel regeneration in aged mice. Whether GDF11 can regulate autophagy in cardiomyocytes remains largely unknown. Thus, the purpose of the present study was to investigate the effects of GDF11 on cardiomyocyte autophagy induced by hypoxia, in addition to the underlying mechanisms. By using the MTT assay, Flow cytometry assay, LIVE/DEAD® Viability/Cytotoxicity Kit Stains and TUNEL assay, we found that exogenous GDF11 decreased apoptosis caused by prolonged hypoxia in cardiomyocytes. The expression of GDF11 was decreased obviously both in the cardiac tissue of myocardial infarction mice and the hypoxia treated cardiomyocytes. Protein levels of cleaved caspase-3, p-AMPK, SQSTM1, LC3B–I/II and GDF11 were detected by western blot. Autophagosomes and autolysosomes were identified by confocal laser microscopy after transfecting with the mRFP-eGFP-LC3 plasmids. Antibody against GDF11 (anti-GDF11) was used to inhibit the function of GDF11. At the molecular level, exogenous GDF11 increased AMPK function and enhanced autophagy activity. Anti-GDF11 inhibited autophagy and aggravated hypoxia-induced apoptosis in cardiomyocytes. Thus, GDF11 might be a potential target for myocardial infarction therapy.

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Publikationstyp Artikel: Journalartikel
Dokumenttyp Wissenschaftlicher Artikel
Schlagwörter Apoptosis ; Autophagy ; Gdf11 ; Hypoxia ; P-ampk
Sprache englisch
Veröffentlichungsjahr 2020
HGF-Berichtsjahr 2020
ISSN (print) / ISBN 0014-2999
e-ISSN 0014-2999
Quellenangaben Band: 885, Heft: , Seiten: , Artikelnummer: 173495 Supplement: ,
Verlag Elsevier
Verlagsort Radarweg 29, 1043 Nx Amsterdam, Netherlands
Begutachtungsstatus Peer reviewed
POF Topic(s) 30203 - Molecular Targets and Therapies
Forschungsfeld(er) Enabling and Novel Technologies
PSP-Element(e) G-505200-001
Förderungen National Natural Science Foundation of China
Key Project of National Science Foundation of China
National Key Research and Development Program of China
Scopus ID 85090247455
Erfassungsdatum 2021-02-08