The First Clinical Medical College, Zhejiang Chinese Medical University, Hangzhou, Zhejiang, China.
Department of Orthopaedic Surgery, The First Affiliated Hospital of Zhejiang Chinese Medical University, Hangzhou, Zhejiang, China.
J Cell Physiol. 2019 Dec;234(12):21877-21888. doi: 10.1002/jcp.28751. Epub 2019 May 2.
Emerging evidence suggests that microRNAs (miRNAs) may be pathologically involved in osteoarthritis (OA). Subchondral bone (SCB) sclerosis is accounted for the knee osteoarthritis (KOA) development and progression. In this study, we aimed to screen the miRNA biomarkers of KOA and investigated whether these miRNAs regulate the differentiation potential of mesenchymal stem cells (MSCs) and thus contributing to SCB. We identified 48 miRNAs in the blood samples in KOA patients (n = 5) through microarray expression profiling detection. After validation with larger sample number, we confirmed hsa-miR-582-5p and hsa-miR-424-5p were associated with the pathology of SCB sclerosis. Target genes prediction and pathway analysis were implemented with online databases, indicating these two candidate miRNAs were closely related to the pathways of pluripotency of stem cells and pathology of OA. Surprisingly, mmu-miR-582-5p (homology of hsa-miR-582-5p) was downregulated in osteogenic differentiation and upregulated in adipogenic differentiation of mesenchymal progenitor C3H10T1/2 cells, whereas mmu-mir-322-5p (homology of hsa-miR-424-5p) showed no change through the in vitro study. Supplementing mmu-miR-582-5p mimics blocked osteogenic and induced adipogenic differentiation of C3H10T1/2 cells, whereas silencing of the endogenous mmu-miR-582-5p enhanced osteogenic and repressed adipogenic differentiation. Further mechanism studies showed that mmu-miR-582-5p was directly targeted to Runx2. Mutation of putative mmu-miR-582-5p binding sites in Runx2 3' untranslated region (3'UTR) could abolish the response of the 3'UTR-luciferase construct to mmu-miR-582-5p supplementation. Generally speaking, our data suggest that miR-582-5p is an important biomarker of KOA and is able to regulate osteogenic and adipogenic differentiation of MSCs via targeting Runx2. The study also suggests that miR-582-5p may play a crucial role in SCB sclerosis of human KOA.
新出现的证据表明,微小 RNA(miRNA)可能在骨关节炎(OA)的病理中起作用。软骨下骨(SCB)硬化是膝骨关节炎(KOA)发展和进展的原因。在这项研究中,我们旨在筛选 KOA 的 miRNA 生物标志物,并研究这些 miRNA 是否调节间充质干细胞(MSCs)的分化潜能,从而有助于 SCB。我们通过微阵列表达谱检测在 5 例 KOA 患者的血液样本中鉴定出 48 个 miRNA。在用更大的样本数进行验证后,我们证实 hsa-miR-582-5p 和 hsa-miR-424-5p 与 SCB 硬化的病理学有关。通过在线数据库进行靶基因预测和通路分析,表明这两个候选 miRNA 与干细胞多能性途径和 OA 病理学密切相关。令人惊讶的是,mmu-miR-582-5p(hsa-miR-582-5p 的同源物)在间充质祖细胞 C3H10T1/2 的成骨分化中下调,而在脂肪生成分化中上调,而 mmu-mir-322-5p(hsa-miR-424-5p 的同源物)在体外研究中没有变化。补充 mmu-miR-582-5p 模拟物阻断 C3H10T1/2 细胞的成骨分化并诱导脂肪生成分化,而内源性 mmu-miR-582-5p 的沉默增强成骨分化并抑制脂肪生成分化。进一步的机制研究表明,mmu-miR-582-5p 直接靶向 Runx2。Runx2 3'非翻译区(3'UTR)中假定的 mmu-miR-582-5p 结合位点的突变可以消除 3'UTR-荧光素酶构建体对 mmu-miR-582-5p 补充的反应。总的来说,我们的数据表明 miR-582-5p 是 KOA 的一个重要生物标志物,能够通过靶向 Runx2 调节 MSC 的成骨和脂肪生成分化。该研究还表明,miR-582-5p 可能在人类 KOA 的 SCB 硬化中起关键作用。