Gao Tianlin, Fan Heng, Wang Jiawen, Wang Rui
Department of Cardiovascular Medicine, Ankang Central Hospital, Ankang City, China.
Postepy Kardiol Interwencyjnej. 2022 Dec;18(4):373-391. doi: 10.5114/aic.2023.124797. Epub 2023 Feb 2.
Myocardial infarction (MI) is a severe disease that has an association with angiogenesis dysfunction.
This study explores the mechanism of extracellular vesicles (EVs) derived from human umbilical cord mesenchymal stem cells (hucMSCs) affecting angiogenesis in MI via the microRNA (miR)-423-5p/EFNA3 axis.
HucMSC-derived EVs (hucMSC-EVs) were isolated, extracted, and identified. EVs and human umbilical vein endothelial cells (HUVECs) were co-cultured. Migration capacity and angiogenesis ability of HUVECs were measured, and VEGF levels in cell supernatants were tested by ELISA. rat MI models were established, and hucMSC-EVs were injected into the MI rat heart-infarcted area. Cardiac function, capillary density, and the degree of myocardial fibrosis were observed.
HUVEC migration and angiogenesis were promoted by hucMSC-EVs, and more significantly enhanced by hucMSC-EVs containing miR-423-5p. Furthermore, miR-423-5p inhibited EFNA3 expression and EFNA3 overexpression reversed the promoting effects of EVs on HUVEC migration and angiogenesis. miR-423-5p expression was elevated and EFNA3 expression was reduced in myocardial tissues of MI rats after EV treatment. Both EVs and EVs containing miR-423-5p could improve cardiac function, reduce the area of fibrosis, and promote angiogenesis, improving cardiac repair.
EVs promote angiogenesis in MI rats via the miR-423-5p/EFNA3 axis, thus improving cardiac repair.
心肌梗死(MI)是一种与血管生成功能障碍相关的严重疾病。
本研究探讨人脐带间充质干细胞(hucMSCs)衍生的细胞外囊泡(EVs)通过微小RNA(miR)-423-5p/EFNA3轴影响MI血管生成的机制。
分离、提取并鉴定hucMSC衍生的EVs(hucMSC-EVs)。将EVs与人脐静脉内皮细胞(HUVECs)共培养。检测HUVECs的迁移能力和血管生成能力,并用酶联免疫吸附测定法检测细胞上清液中的血管内皮生长因子(VEGF)水平。建立大鼠MI模型,并将hucMSC-EVs注射到MI大鼠心脏梗死区域。观察心功能、毛细血管密度和心肌纤维化程度。
hucMSC-EVs促进HUVEC迁移和血管生成,含miR-423-5p的hucMSC-EVs促进作用更显著。此外,miR-423-5p抑制EFNA3表达,EFNA3过表达逆转了EVs对HUVEC迁移和血管生成的促进作用。EV治疗后MI大鼠心肌组织中miR-423-5p表达升高,EFNA3表达降低。EVs和含miR-423-5p的EVs均可改善心功能,减少纤维化面积,促进血管生成,改善心脏修复。
EVs通过miR-423-5p/EFNA3轴促进MI大鼠血管生成,从而改善心脏修复。