He Lei, Xu Jinsheng, Bai Yaling, Zhang Huiran, Zhou Wei, Cheng Meijuan, Zhang Dongxue, Zhang Lu, Zhang Shenglei
Department of Nephrology, The Fourth Hospital of Hebei Medical University, Hebei Key Laboratory of Vascular Calcification in Kidney Disease, Hebei Clinical Research Center for Chronic Kidney Disease, Shijiazhuang, Hebei 050011, P.R. China.
Exp Ther Med. 2021 Sep;22(3):1036. doi: 10.3892/etm.2021.10468. Epub 2021 Jul 19.
Vascular calcification, such as atherosclerosis, is a serious complication of chronic kidney disease that is characterized by tunica media calcification, and has gained increasing attention from researchers. The commonly observed association between vascular calcification and osteoporosis suggests a link between bone and vascular disorders. As microRNAs (miRNAs) have a wide range of gene regulation functions, such as cell proliferation, apoptosis, stress and transdifferentiation, the current study aimed to determine whether miRNAs play a vital role in the calcification and osteoblastic differentiation of rat thoracic aorta vascular smooth muscle cells (VSMCs). Gene expression analysis was performed on seven miRNAs (miR-29a, -30b, -103a, -125b, -133a, -143 and -211) that maybe potentially involved in the differentiation of smooth muscle cells into osteoblastic cells. The results showed that the levels of miR-29a, -30b, -103a, -125b and -143 were markedly reduced in the VSMC calcification model, particularly miR-103a, whereas runt-related transcription factor 2 () expression was increased. Furthermore, it was found that the expression of was significantly decreased following the upregulation of miR-103a, and that the expression of was significantly increased by downregulating miR-103a in VSMCs. Therefore, it was concluded that miR-103a plays a notable role in the transdifferentiation of the VSMCs in high phosphorus-induced calcification by targeting the regulation of , and may therefore constitute a new target for the diagnosis and treatment of vascular calcification.
血管钙化,如动脉粥样硬化,是慢性肾脏病的一种严重并发症,其特征为中膜钙化,已日益受到研究人员的关注。血管钙化与骨质疏松症之间常见的关联表明骨骼和血管疾病之间存在联系。由于微小RNA(miRNA)具有广泛的基因调控功能,如细胞增殖、凋亡、应激和转分化,本研究旨在确定miRNA是否在大鼠胸主动脉血管平滑肌细胞(VSMC)的钙化和成骨细胞分化中发挥重要作用。对可能潜在参与平滑肌细胞向成骨细胞分化的7种miRNA(miR-29a、-30b、-103a、-125b、-133a、-143和-211)进行了基因表达分析。结果显示,在VSMC钙化模型中,miR-29a、-30b、-103a、-125b和-143的水平显著降低,尤其是miR-103a,而 runt相关转录因子2()的表达增加。此外,发现上调miR-103a后,的表达显著降低,而在VSMC中下调miR-103a可使的表达显著增加。因此,得出结论,miR-103a通过靶向调控在高磷诱导钙化的VSMC转分化中发挥显著作用,因此可能构成血管钙化诊断和治疗的新靶点。