Circulating exosomal mir-16-2-3p is associated with coronary microvascular dysfunction in diabetes through regulating the fatty acid degradation of endothelial cells

被引:2
作者
Liu, Yihai [1 ]
Zhong, Chongxia [1 ]
Chen, Shan [2 ]
Xue, Yanan [1 ]
Wei, Zhonghai [1 ]
Dong, Li [3 ]
Kang, Lina [1 ]
机构
[1] Nanjing Univ, Dept Cardiol, Affiliated Drum Tower Hosp, Med Sch, Nanjing 210009, Peoples R China
[2] Nanjing Univ, Dept Gen Med, Affiliated Drum Tower Hosp, Med Sch, Nanjing 210009, Peoples R China
[3] Nanjing Cent Hosp, Dept Endocrinol, Nanjing 210018, Peoples R China
关键词
miR-16-2-3p; Diabetes; Coronary microvascular dysfunction; Exosomes; Microvascular endothelial cells; METABOLISM; MELLITUS; OXIDATION; HEALTH;
D O I
10.1186/s12933-024-02142-0
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BackgroundCoronary microvascular dysfunction (CMD) is a frequent complication of diabetes mellitus (DM) characterized by challenges in both diagnosis and intervention. Circulating levels of microRNAs are increasingly recognized as potential biomarkers for cardiovascular diseases.MethodsSerum exosomes from patients with DM, DM with coronary microvascular dysfunction (DM-CMD) or DM with coronary artery disease (DM-CAD) were extracted for miRNA sequencing. The expression of miR-16-2-3p was assessed in high glucose-treated human aortic endothelial cells and human cardiac microvascular endothelial cells. Fluorescence in situ hybridization (FISH) was used to detect miR-16-2-3p within the myocardium of db/db mice. Intramyocardial injection of lentivirus overexpressing miR-16-2-3p was used to explore the function of the resulting gene in vivo. Bioinformatic analysis and in vitro assays were carried out to explore the downstream function and mechanism of miR-16-2-3p. Wound healing and tube formation assays were used to explore the effect of miR-16-2-3p on endothelial cell function.ResultsmiR-16-2-3p was upregulated in circulating exosomes from DM-CMD, high glucose-treated human cardiac microvascular endothelial cells and the hearts of db/db mice. Cardiac miR-16-2-3p overexpression improved cardiac systolic and diastolic function and coronary microvascular reperfusion. In vitro experiments revealed that miR-16-2-3p could regulate fatty acid degradation in endothelial cells, and ACADM was identified as a potential downstream target. MiR-16-2-3p increased cell migration and tube formation in microvascular endothelial cells.ConclusionsOur findings suggest that circulating miR-16-2-3p may serve as a biomarker for individuals with DM-CMD. Additionally, miR-16-2-3p appears to alleviate coronary microvascular dysfunction in diabetes by modulating ACADM-mediated fatty acid degradation in endothelial cells.
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页数:15
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