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微小RNA-181d-5p调节种植体表面粗糙度诱导的骨髓干细胞成骨分化。

MiR-181d-5p regulates implant surface roughness-induced osteogenic differentiation of bone marrow stem cells.

作者信息

Liu Yanping, Wang Yixiang, Cheng Xian, Zheng Yan, Lyu Mingyue, Di Ping, Lin Ye

机构信息

Department of Oral Implantology, Peking University School and Hospital of Stomatology, Beijing 100081, PR China.

Department of Central Laboratory, Peking University School and Hospital of Stomatology, Beijing 100081, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Feb;121:111801. doi: 10.1016/j.msec.2020.111801. Epub 2020 Dec 16.

Abstract

Constructing moderate surface roughness is a widely used, non-toxic, cost-effective, and outcome-predictable approach to accelerate implant osteointegration in clinical settings. MicroRNAs (miRNAs) play vital regulatory roles in the osteogenic differentiation of bone marrow stem cells (BMSCs). However, their specific contribution to the influence of surface roughness on osteoblastic behavior remains unknown. Therefore, applying the smooth titanium surface as a control, a typical titanium surface with moderate roughness was prepared here to reveal the mechanism through which surface roughness regulates cell osteogenic behavior by altering miRNA expression. First, the morphology and roughness of two surfaces were characterized, and the enhanced osteogenic differentiation of BMSCs on rough surfaces was verified. Then, twenty-nine differentially expressed miRNAs in BMSCs cultured on different surfaces were selected via miRNA chip and corresponding functional prediction. After verifying the expression of these miRNAs using quantitative real-time polymerase chain reaction, four were considered eligible candidates. Among these, only miR-181d-5p significantly affected RUNX2 gene expression based on overexpression and knockdown experiments. From the osteogenesis-related gene and protein expression, as well as alkaline phosphatase and alizarin red experiments, we further confirmed that the downregulation of miR-181d-5p promoted osteogenic differentiation of BMSCs, and vice versa. In addition, rescue assays showed that the knockdown of miR-181d-5p improved the inferior osteogenesis observed on smooth surfaces, whereas the overexpression of miR-181d-5p suppressed the superior osteogenesis observed on rough surfaces. These results indicate that the moderate surface roughness of the implant stimulates the osteogenic differentiation of BMSCs by remarkably downregulating miR-181d-5p. These findings provide helpful information and a theoretical basis for the development of advanced implant materials for fast osteointegration.

摘要

构建适度的表面粗糙度是一种在临床环境中广泛应用的、无毒、经济高效且结果可预测的加速种植体骨整合的方法。微小RNA(miRNA)在骨髓干细胞(BMSC)的成骨分化中发挥着至关重要的调节作用。然而,它们对表面粗糙度影响成骨细胞行为的具体贡献仍不清楚。因此,以光滑钛表面作为对照,制备了具有典型适度粗糙度的钛表面,以揭示表面粗糙度通过改变miRNA表达来调节细胞成骨行为的机制。首先,对两种表面的形态和粗糙度进行了表征,并验证了BMSC在粗糙表面上增强的成骨分化。然后,通过miRNA芯片和相应的功能预测,筛选出在不同表面培养的BMSC中29个差异表达的miRNA。使用定量实时聚合酶链反应验证这些miRNA的表达后,确定了4个合格的候选miRNA。其中,基于过表达和敲低实验,只有miR-181d-5p显著影响RUNX2基因表达。从成骨相关基因和蛋白质表达以及碱性磷酸酶和茜素红实验中,我们进一步证实miR-181d-5p的下调促进了BMSC的成骨分化,反之亦然。此外,挽救实验表明,敲低miR-181d-5p改善了在光滑表面观察到的较差的成骨情况,而miR-181d-5p的过表达则抑制了在粗糙表面观察到的较好的成骨情况。这些结果表明,种植体的适度表面粗糙度通过显著下调miR-181d-5p刺激BMSC的成骨分化。这些发现为快速骨整合的先进种植体材料的开发提供了有用的信息和理论基础。

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