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Activation of adenosine A2B receptor alleviates myocardial ischemia-reperfusion injury by inhibiting endoplasmic reticulum stress and restoring autophagy flux.

Authors :
He, Feng
Wang, Fuyu
Xiang, Hanmin
Ma, Yunna
Lu, Qing
Xia, Yun
Zhou, Huimin
Wang, Yanlin
Ke, Jianjuan
Source :
Archives of Biochemistry & Biophysics. Apr2024, Vol. 754, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Myocardial ischemia-reperfusion injury (MIRI) poses a significant threat to patients with coronary heart disease. Adenosine A2A receptors have been known as a protective role in MIRI by regulating autophagy, so we assumed that activation of adenosine A2B receptor (A2BAR) might exert a similar effect during MIRI and underlying mechanism be related to proteostasis maintenance as well. In situ hearts were subjected to 30 min of ischemia and 120 min of reperfusion (IR), while in vitro cardiomyocytes from neonatal rats experienced 6 h of oxygen-glucose deprivation followed by 12 h of reoxygenation (OGDR). Initially, we observed that post-ischemia-reperfusion induced autophagy flux blockade and ERS both in vivo and in vitro , evident through the increased expression of p62, LC3II, and BIP, which indicated the deteriorated proteostasis. We used a selective A2BAR agonist, Bay 60–6583, to explore the positive effects of A2BAR on cardiomyocytes and found that A2BAR activation rescued damaged cardiac function and morphological changes in the IR group and improved frail cell viability in the OGDR group. The A2BAR agonist also alleviated the blockage of autophagic flux, coupled with augmented ERS in the IR/OGDR group, which was reassured by using an autophagy inhibitor chloroquine (CQ) and ERS inhibitor (4-PBA) in vitro. Additionally, considering cAMP/PKA as a well-known downstream effector of A2BAR, we utilized H89, a selective PKA inhibitor. We observed that the positive efficacy of Bay 60–6583 was inhibited by H89. Collectively, our findings demonstrate that the A2BAR/cAMP/PKA signaling pathway exerts a protective role in MIRI by mitigating impaired autophagic flux and excessive ERS. [Display omitted] • Myocardial I/R injury is related to autophagy and ERS pathogenesis. • A2B receptor activation reduces reperfusion-induced cardiomyocyte injury. • Bay 60–6583 regulates ERS and autophagy flux via the cAMP/PKA signaling pathway. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00039861
Volume :
754
Database :
Academic Search Index
Journal :
Archives of Biochemistry & Biophysics
Publication Type :
Academic Journal
Accession number :
176247996
Full Text :
https://doi.org/10.1016/j.abb.2024.109945