首页> 外文期刊>Nanoscale Research Letters >F-actin Regulates Osteoblastic Differentiation of Mesenchymal Stem Cells on TiO 2 Nanotubes Through MKL1 and YAP/TAZ
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F-actin Regulates Osteoblastic Differentiation of Mesenchymal Stem Cells on TiO 2 Nanotubes Through MKL1 and YAP/TAZ

机译:F-actin通过MKL1和YAP / TAZ调节TiO 2 Nanotubes上的间充质干细胞的骨细胞分化

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Titanium and titanium alloys are widely used in orthopedic implants. Modifying the nanotopography provides a new strategy to improve osseointegration of titanium substrates. Filamentous actin (F-actin) polymerization, as a mechanical loading structure, is generally considered to be involved in cell migration, endocytosis, cell division, and cell shape maintenance. Whether F-actin is involved and how it functions in nanotube-induced osteogenic differentiation of mesenchymal stem cells (MSCs) remain to be elucidated. In this study, we fabricated TiO_(2)nanotubes on the surface of a titanium substrate by anodic oxidation and characterized their features by scanning electron microscopy (SEM), X-ray energy dispersive analysis (EDS), and atomic force microscopy (AFM). Alkaline phosphatase (ALP) staining, Western blotting, qRT-PCR, and immunofluorescence staining were performed to explore the osteogenic potential, the level of F-actin, and the expression of MKL1 and YAP/TAZ. Our results showed that the inner diameter and roughness of TiO_(2)nanotubes increased with the increase of the anodic oxidation voltage from 30 to 70 V, while their height was 2 μm consistently. Further, the larger the tube diameter, the stronger the ability of TiO_(2)nanotubes to promote osteogenic differentiation of MSCs. Inhibiting F-actin polymerization by Cyto D inhibited osteogenic differentiation of MSCs as well as the expression of proteins contained in focal adhesion complexes such as vinculin (VCL) and focal adhesion kinase (FAK). In contrast, after Jasp treatment, polymerization of F-actin enhanced the expression of RhoA and transcription factors YAP/TAZ. Based on these data, we concluded that TiO_(2)nanotubes facilitated the osteogenic differentiation of MSCs, and this ability was enhanced with the increasing diameter of the nanotubes within a certain range (30–70 V). F-actin mediated this process through MKL1 and YAP/TAZ.
机译:钛和钛合金广泛用于矫形植入物中。改性纳米复印术提供了改善钛基材骨整合的新策略。丝状肌动蛋白(F-Actin)聚合作为机械负载结构通常被认为参与细胞迁移,内吞作用,细胞分裂和细胞形状维护。是否涉及F-actin以及如何在纳米管诱导的间充质干细胞(MSCs)中的纳米管诱导的成骨分化中的功能。在该研究中,通过阳极氧化在钛基底表面上制造TiO_(2)纳米管,并通过扫描电子显微镜(SEM),X射线能量分散分析(EDS)和原子力显微镜(AFM)来表征它们的特征。进行碱性磷酸酶(ALP)染色,蛋白质印迹,QRT-PCR和免疫荧光染色以探讨成骨潜力,F-actin水平和MKL1和YAP / TAZ的表达。我们的研究结果表明,TiO_(2)纳米管的内径和粗糙度随着阳极氧化电压的增加而增加,其高度为2μm。此外,管直径越大,TiO_(2)纳米管以促进MSCs的成骨分化的能力越强。通过CTO D抑制F-肌动蛋白聚合,抑制MSC的成骨分化以及局灶性粘附复合物(如Vinculin(VCl)和局灶性粘附激酶(FAK)中所含的蛋白质的表达。相比之下,在JASP处理之后,F-Actin的聚合增强了RhOA和转录因子YAP / TAZ的表达。基于这些数据,我们得出结论,TiO_(2)纳米管促进了MSCs的成骨分化,并且这种能力随着纳米管的增加而在一定范围内(30-70V)。 F-Actin通过MKL1和YAP / TAZ介导该过程。

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