Plasma-derived extracellular vesicles transfer microRNA-130a-3p to alleviate myocardial ischemia/reperfusion injury by targeting ATG16L1

被引:0
作者
Sisi Yu
Xuepei Tang
Tian Zheng
Shuhao Li
Haibo Ren
Hailong Wu
Fei Peng
Lianggeng Gong
机构
[1] The Second Affiliated Hospital of Nanchang University,Department of Radiology
来源
Cell and Tissue Research | 2022年 / 389卷
关键词
Moderate endoplasmic reticulum stress; Extracellular vesicles; MicroRNA-130a-3p; Autophagy; Myocardial ischemia/reperfusion injury; ATG16L1;
D O I
暂无
中图分类号
学科分类号
摘要
Extracellular vesicles (EVs) are implicated in myocardial ischemia/reperfusion (I/R) injury as modulators by shuttling diverse cargoes, including microRNAs (miRNAs). The current study was initiated to unravel the potential involvement of plasma-derived EVs carrying miR-130a-3p on myocardial I/R injury. Rats were induced with moderate endoplasmic reticulum stress, followed by isolation of plasma-derived EVs. Then, an I/R rat model and hypoxia/reoxygenation (H/R) cardiomyoblast model were established to simulate a myocardial I/R injury environment where miR-130a-3p was found to be abundantly expressed. miR-130a-3p was confirmed to target and negatively regulate autophagy-related 16-like 1 (ATG16L1) in cardiomyoblasts. Based on a co-culture system, miR-130a-3p delivered by EVs derived from plasma protected H/R-exposed cardiomyoblasts against H/R-induced excessive cardiomyoblast autophagy, inflammation, and damage, improving cardiac dysfunction as well as myocardial I/R-induced cardiac dysfunction and tissue injury. The mechanism underlying the functional role of EVs-loaded miR-130a-3p was found to be dependent on its targeting relation with ATG16L1. The protective action of EV-carried miR-130a-3p was further re-produced in a rat model serving as in vivo validation as evidenced by improved cardiac function, tissue injury, myocardial fibrosis, and myocardial infarction. Collectively, miR-130a-3p shuttled by plasma-derived EVs was demonstrated to alleviate excessive cardiomyoblast autophagy and improve myocardial I/R injury.
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页码:99 / 114
页数:15
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[1]  
Ayuk SM(2016)The role of photobiomodulation on gene expression of cell adhesion molecules in diabetic wounded fibroblasts in vitro J Photochem Photobiol B 161 368-374
[2]  
Abrahamse H(2017)Exercise-induced circulating extracellular vesicles protect against cardiac ischemia-reperfusion injury Basic Res Cardiol 112 38-1554
[3]  
Houreld NN(2018)Endoplasmic reticulum chaperone GRP78 protects heart from ischemia/reperfusion injury through Akt activation Circ Res 122 1545-5806
[4]  
Bei Y(2019)Ischemia reperfusion injury: mechanisms of damage/protection and novel strategies for cardiac recovery/regeneration Int J Mol Sci 36 5798-41
[5]  
Xu T(2020)MicroRNAs in the regulation of cellular redox status and its implications in myocardial ischemia-reperfusion injury Redox Biol 54 27-2100
[6]  
Lv D(2017)ER stress induced by tunicamycin triggers alpha-synuclein oligomerization, dopaminergic neurons death and locomotor impairment: a new model of Parkinson’s disease Mol Neurobiol 170 2092-1471
[7]  
Yu P(2021)Extracellular vesicles from patients with acute coronary syndrome impact on ischemia-reperfusion injury Pharmacol Res 136 348-1239
[8]  
Xu J(2019)Molecular machinery and interplay of apoptosis and autophagy in coronary heart disease J Mol Cell Cardiol 135 1454-172
[9]  
Che L(2020)Extracellular vesicles and cardiovascular system: biomarkers and cardioprotective effectors Vascul Pharmacol 9 1229-2384
[10]  
Das A(2014)Isolation, characterization and potential role in beta cell-endothelium cross-talk of extracellular vesicles released from human pancreatic islets PLoS ONE 19 166-765