[No authors listed]
Vascular complications are the primary reason for disability and mortality associated with diabetes mellitus (DM), and numerous microRNAs (miRNAs/miRs) are involved in the process, such as miRâ122, miRâ24 and miRâ423. It has been reported that miRâ328 regulates DM and cardiovascular disease; however, the role and mechanism of action underlying miRâ328 in HUVECs is not completely understood. The present study aimed to investigate the role and mechanism of action underlying the effects of miRâ328 on the functions of HUVECs. To simulate hyperglycemia combined with ischemiaâinduced tissue starvation, HUVECs were cultured in endothelial cell medium with 25 mmol/l Dâglucose and 2% FBS for 24 h [high glucose (HG) + 2% FBS group]. HUVEC miRâ328 expression levels were detected by reverse transcriptionâquantitative PCR. Cell migration, cytotoxicity and tubeâlike structure formation were analyzed using wound healing, Cell Counting Kitâ8 and tube formation assays, respectively. Following transfection with miRâ328 inhibitor, miRâ328 expression was downregulated in HUVECs. Protein expression levels were determined by western blotting. Compared with the control group, the migration and tubeâlike structure formation of HUVECs were decreased, and cell cytotoxicity was increased in the HG + 2% FBS group. The protein expression levels of vascular endothelial growth factor were also decreased, and the expression levels of miRNAâ328 in the HG + 2% FBS group were increased compared with the control group. However, miRNAâ328 downregulation reversed the aforementioned effects. Further experiments indicated that the AKT signaling pathway was inhibited in the HG + 2% FBS group; however, miRâ328 downregulation activated the AKT/mTOR signaling pathway, which was blocked by the AKT signaling pathway inhibitor, perifosine. Gene prediction and western blotting demonstrated that miRâ328 displayed a regulatory role via Pimâ1 protoâoncogene, serine/threonine kinase (PIM1). In conclusion, miRâ328 expression was upregulated and angiogenesis was inhibited when HUVECs were subjected to high glucose and low serum conditions. miRâ328 downregulation enhanced angiogenesis by increasing PIM1 expression and activating the AKT/mTOR signaling pathway in HUVECs under high glucose and low serum conditions.
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