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首页> 外文期刊>The International journal of oral & maxillofacial implants >Modulation of Micro RNA Expression and Osteoblast Differentiation by Nanotopography
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Modulation of Micro RNA Expression and Osteoblast Differentiation by Nanotopography

机译:用纳米复印模调制微RNA表达和成骨细胞分化

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Purpose: This study evaluated the expression pattern of micro RNAs (miRNAs) on a surface with nanotopography compared with a smooth surface (control). Materials and Methods: Human mesenchymal stem cells (hMSCs) were plated on different surfaces and compared at 3, 7, and 14 days for alkaline phosphatase (ALP) activity, expression of genes (osterix [OSX], runt-related transcription factor 2 [RUNX2], bone morphogenetic protein 2 [BMP2], and ALP), and expression of miRNAs. Western blot was also used to detect osteogenic proteins (BMP2, OSX, and osteocalcin [OCN]). Scanning electron microscopy of cells plated onto the surfaces was obtained. Results: ALP activity on different surfaces was significantly greater in the nanotopography surface. At day 14, there was a 3.5-fold and a 9-fold increase for the RUNX2 and OSX genes, respectively. BMP2 and ALP also increased by fourfold and sevenfold compared with the control. Protein levels for OSX and BMP2 were also upregulated compared with the control group. Using RNA sequencing technology (RNA-Seq), a total of 117 miRNAs were found to be differentially expressed comparing the control (day 7) with the nanosurface (day 14). Forty-five miRNAs were upregulated, and 72 were downregulated. Several of the miRNAs that were differently expressed regulate osteogenic genes. For example, hsa-miR-135b-5p targets OCN, BSP, RUNX2, COL15A1, and OSX; hsa-miR-122-5p targets OPN; hsa-miR-196a-5p targets BMP4; hsa-miR-26b-5p targets BMP2; and hsa-miR-148b-3p targets OPN. Conclusion: Surfaces with nanotopography have the potential to improve the osseointegration response in order to reduce the osseointegration time and also increase bone formation around the implants, improving areas with low bone quality. Within the limitation of this study, nanotopography surfaces affected MSC differentiation to osteoblasts. Several miRNAs were differentially regulated by surface topography. These miRNAs could be related to the differentiation response to help control the osseointegration process.
机译:目的:该研究评估了与光滑表面(对照)相比用纳米发作的表面上的微RNA(miRNA)的表达模式。材料和方法:人间充质干细胞(HMSCs)在不同的表面上铺板,并在3,7和14天进行比较,碱性磷酸酶(ALP)活性,基因的表达(OstroSix [osx],runt相关转录因子2 [ Runx2],骨形态发生蛋白2 [BMP2]和ALP)和miRNA的表达。 Western印迹还用于检测骨质骨质蛋白(BMP2,OSX和骨钙蛋白[OCN])。获得镀覆在表面上的电池的电子显微镜。结果:纳米复印机表面在不同表面上的ALP活性显着更大。在第14天,分别为3.5倍和9倍的润基因,增加了9倍。与对照相比,BMP2和ALP还增加了四倍和七倍。与对照组相比,也上调了OSX和BMP2的蛋白质水平。使用RNA测序技术(RNA-SEQ),发现总共117个miRNA被差异地表达将对照(第7天)与纳米孔(第14天)进行比较。上调四十五个miRNA,下调72个。不同表达调节成骨基因的几种miRNA。例如,HSA-MIR-135B-5P靶标OCN,BSP,RUNX2,COL15A1和OSX; HSA-MIR-122-5P目标OPN; HSA-MIR-196A-5P目标BMP4; HSA-MIR-26B-5P目标BMP2;和HSA-MIR-148B-3P目标OPN。结论:纳米复印件的表面具有改善骨整合响应的潜力,以减少骨整合时间并增加植入物周围的骨形成,改善骨质低的区域。在该研究的局限质内,纳米复印件影响MSC分化对成骨细胞。几个miRNA通过表面形貌差异调节。这些miRNA可能与差异化响应有关,以帮助控制骨整合过程。

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