Orthopaedics, The First Affiliated Hospital of Chengdu Medical College, No. 278 Baoguang Avenue, Xindu District, Chengdu, 610500, China.
Pflugers Arch. 2020 Apr;472(4):473-480. doi: 10.1007/s00424-020-02372-7. Epub 2020 Apr 4.
Diabetic osteoporosis is a severe and chronic complication of diabetes in the bone and joint system, and its pathogenesis is needed to be explored. In the present study, we examined the effect and underlying mechanism of miR-155 on osteogenic differentiation in human bone marrow-derived mesenchymal stem cells (hBMSCs) under high glucose and free fatty acids (HG-FFA) conditions. It was shown that miR-155 levels in hBMSCs increased corresponding to the time of exposure to HG-FFA treatment. MiR-155 expression was altered by transfecting miR-155 mimic or miR-155 inhibitor. HG-FFA exposure resulted in an obviously decrease in cell viability and alkaline phosphatase (ALP) activity, and downregulated the expressionof runt-related transcription factor 2 (Runx2) and osteocalcin (OCN) in hBMSCs. Transfection of miR-155 mimic further exacerbated HG-FFA-induced inhibitory effect on osteogenic differentiation, and miR-155 inhibitor neutralized this inhibitory effect. Luciferase assays confirmed that SIRT1 was a direct target of miR-155 and can be negatively modulated by miR-155. Furthermore, SIRT1 siRNA partially counteracted miR-155 inhibitor-induced upregulation of SIRT1in HG-FFA-treated hBMSCs. SIRT1 siRNA also reversed the promotional effect of the miR-155 inhibitor on ALP activity and expression of the Runx2 and OCN proteins under HG-FFA conditions. In conclusion, the results suggest that miR-155 suppression promoted osteogenic differentiation of hBMSCs under HG-FFA conditions by targeting SIRT1. Inhibition of MiR-155 may provide a new therapeutic method for the prevention and treatment of diabetic osteoporosis.
糖尿病性骨质疏松症是一种严重的、慢性的糖尿病骨骼关节系统并发症,其发病机制需要进一步探索。本研究旨在探讨 miR-155 在高糖和游离脂肪酸(HG-FFA)条件下人骨髓间充质干细胞(hBMSCs)成骨分化中的作用及其潜在机制。结果显示,hBMSCs 暴露于 HG-FFA 处理时,miR-155 水平随时间的延长而增加。转染 miR-155 模拟物或抑制剂可改变 miR-155 的表达。HG-FFA 暴露导致 hBMSCs 活力和碱性磷酸酶(ALP)活性明显降低,Runx2 和骨钙素(OCN)的表达下调。转染 miR-155 模拟物进一步加重了 HG-FFA 对成骨分化的抑制作用,而 miR-155 抑制剂中和了这种抑制作用。荧光素酶报告基因实验证实 SIRT1 是 miR-155 的直接靶基因,并可被 miR-155 负调控。此外,SIRT1 siRNA 部分逆转了 miR-155 抑制剂在 HG-FFA 处理的 hBMSCs 中对 SIRT1 的上调作用。SIRT1 siRNA 还逆转了 miR-155 抑制剂在 HG-FFA 条件下对 ALP 活性和 Runx2 和 OCN 蛋白表达的促进作用。综上所述,miR-155 抑制通过靶向 SIRT1 促进了 HG-FFA 条件下 hBMSCs 的成骨分化。抑制 miR-155 可能为糖尿病性骨质疏松症的预防和治疗提供新的治疗方法。