Department of Oral Biology, College of Dentistry, University of Illinois at Chicago, 801 S Paulina St., Room 561C, Chicago, IL, 60612, USA.
Sci Rep. 2021 Mar 15;11(1):5953. doi: 10.1038/s41598-021-85306-2.
The differentiation of osteoblasts is under complex regulation that includes autocrine and paracrine signaling from MSCs. Exosomes are important components of the MSC secretome and their cargo contains numerous miRNAs. In this study, the importance of MSC miRNAs in modulation of osteoblastic differentiation was examined by global reduction of miRNA biosynthesis in Dicer knock down hMSCs. We additionally impaired hMSC responses to miRNAs by knockdown of Argonaute 2 expression. Knockdown of Dicer and Argonaute 2 both reduced osteoblastic differentiation of hMSCs. This was observed at the levels of hMSC culture mineralization and osteoblastic gene expression. The treatment of Dicer deficient hMSCs with wild type hMSC exosomes effectively recovered the impaired osteoblastic differentiation. Dicer knockdown reduced the quantity and diversity of miRNAs present in hMSC exosomes. miRSeq data and KEGG analysis implicated the miRNA-dependent effects on multiple osteoinductive pathways in Dicer deficient cells, including the Hippo signaling and TGF-beta signaling pathways. Treatment of hMSCs with mimics of miRNAs significantly downregulated in Dicer knockdown cells recovered functions of exosome-mediated signaling in hMSCs. These results indicate that hMSC exosomes exert miRNA-dependent control that contributes to osteoblastic differentiation.
成骨细胞的分化受到复杂的调节,包括 MSC 的自分泌和旁分泌信号。外泌体是 MSC 分泌组的重要组成部分,其货物包含许多 miRNA。在这项研究中,通过 Dicer 敲低 hMSC 中 miRNA 生物合成的全局减少,研究了 MSC miRNAs 在调节成骨细胞分化中的重要性。我们还通过敲低 Argonaute 2 的表达来损害 hMSC 对 miRNA 的反应。Dicer 和 Argonaute 2 的敲低都降低了 hMSCs 的成骨细胞分化。这在 hMSC 培养矿化和成骨基因表达水平上都观察到了。用野生型 hMSC 外泌体处理 Dicer 缺陷型 hMSCs 可有效恢复受损的成骨细胞分化。Dicer 敲低减少了 hMSC 外泌体中存在的 miRNA 的数量和多样性。miRSeq 数据和 KEGG 分析表明,miRNA 依赖性影响在 Dicer 缺陷细胞中的多个成骨诱导途径中,包括 Hippo 信号和 TGF-β 信号通路。用 Dicer 敲低细胞中显著下调的 miRNA 模拟物处理 hMSCs,可恢复外泌体介导的 hMSCs 信号转导的功能。这些结果表明,hMSC 外泌体发挥 miRNA 依赖性控制作用,有助于成骨细胞分化。