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Inhibiting Rev-erbα-mediated ferroptosis alleviates susceptibility to myocardial ischemia-reperfusion injury in type 2 diabetes.

Authors :
Huang, Qin
Tian, Hao
Tian, Liqun
Zhao, Xiaoshuai
Li, Lu
Zhang, Yuxi
Qiu, Zhen
Lei, Shaoqing
Xia, Zhongyuan
Source :
Free Radical Biology & Medicine. Nov2023:Part 1, Vol. 209, p135-150. 16p.
Publication Year :
2023

Abstract

The complex progression of type-2 diabetes (T2DM) may result in increased susceptibility to myocardial ischemia-reperfusion (IR) injury. IR injuries in multiple organs involves ferroptosis. Recently, the clock gene Rev-erbα has aroused considerable interest as a novel therapeutic target for metabolic and ischemic heart diseases. Herein, we investigated the roles of Rev-erbα and ferroptosis in myocardial IR injury during T2DM and its potential mechanisms. A T2DM model, myocardial IR and a tissue-specific Rev-erbα−/− mouse in vivo were established, and a high-fat high glucose environment with hypoxia-reoxygenation (HFHG/HR) in H9c2 were also performed. After myocardial IR, glycolipid profiles, creatine kinase-MB, AI, and the expression of Rev-erbα and ferroptosis-related proteins were increased in diabetic rats with impaired cardiac function compared to non-diabetic rats, regardless of the time at which IR was induced. The ferroptosis inhibitor ferrostatin-1 decreased AI in diabetic rats given IR and LPO levels in cells treated with HFHG/HR, as well as the expression of Rev-erbα and ACSL4. The ferroptosis inducer erastin increased AI and LPO levels and ACSL4 expression. Treatment with the circadian regulator nobiletin and genetically targeting Rev-erbα via siRNA or CRISPR/Cas9 technology both protected against severe myocardial injury and decreased Rev-erbα and ACSL4 expression, compared to the respective controls. Taken together, these data suggest that ferroptosis is involved in the susceptibility to myocardial IR injury during T2DM, and that targeting Rev-erbα could alleviate myocardial IR injury by inhibiting ferroptosis. [Display omitted] • The T2DM in rats have a higher susceptibility to myocardial IR, relating to the clock gene Rev-erbα and ferroptosis. • ACSL4 participates in diabetic myocardial IR injury, also characterized by rhythmic expression across the circadian cycle. • Pharmacological or genetic targeting of Rev-erbα attenuated myocardial IR injury during T2DM by inhibiting ferroptosis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08915849
Volume :
209
Database :
Academic Search Index
Journal :
Free Radical Biology & Medicine
Publication Type :
Academic Journal
Accession number :
173456864
Full Text :
https://doi.org/10.1016/j.freeradbiomed.2023.09.034