首页> 外文期刊>The International journal of periodontics & restorative dentistry >Anorganic bovine bone (Bio-Oss) regulates miRNA of osteoblast-like cells.
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Anorganic bovine bone (Bio-Oss) regulates miRNA of osteoblast-like cells.

机译:无机牛骨(Bio-Oss)调节成骨细胞样细胞的miRNA。

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Bio-Oss (Geistlich) is composed of an organic bovine bone and has been widely used in several bone regeneration procedures during oral surgery. However, how this biomaterial enhances osteoblast activity to promote bone formation is not completely understood. MicroRNAs (miRNAs) represent a class of small, functional, noncoding RNAs of 19 to 23 nucleotides that regulate the transcription of messenger RNAs (mRNAs) in proteins. In this study, the miRNA microarray technique was used to investigate translation regulation in an osteoblast-like cell line (MG63) exposed to Bio-Oss. Nine up-regulated miRNAs (mir-423, mir-492, mir-191, mir-23a, mir-377, mir-494, mir-214, mir-193b, mir-320) and 4 down-regulated miRNAs (mir-27a, mir-24, mir-188, let-7c) were identified. Because each miRNA regulates 100 mRNAs, only mRNAs related to bone formation were analyzed. The vast majority of detected mRNAs are down-regulated, including some homeobox genes (genes that regulate the morphogenesis of an entire segment of the body), such as noggin and EN1. An indirect positive effect was demonstrated on bone morphogenetic protein-4. To the authors' knowledge, the data reported here are the first on translation regulation in osteoblasts exposed to Bio-Oss. This study may be relevant in better understanding the molecular mechanism of bone regeneration and used as a potential tool for analyzing the combined use of cytokines.
机译:Bio-Oss(Geistlich)由有机牛骨组成,已在口腔外科手术中广泛用于几种骨骼再生程序中。但是,这种生物材料如何增强成骨细胞活性以促进骨形成尚不完全清楚。微小RNA(miRNA)代表一类小的,功能性非编码RNA,具有19至23个核苷酸,可调节蛋白质中的信使RNA(mRNA)的转录。在这项研究中,miRNA微阵列技术用于研究暴露于Bio-Oss的成骨样细胞系(MG63)中的翻译调控。九种上调的miRNA(mir-423,mir-492,mir-191,mir-23a,mir-377,mir-494,mir-214,mir-193b,mir-320)和4个下调的miRNA(mir确定了-27a,mir-24,mir-188,let-7c)。由于每个miRNA调节100个mRNA,因此仅分析了与骨形成有关的mRNA。绝大多数检测到的mRNA均被下调,包括一些同源盒基因(调节人体整个部分形态发生的基因),例如头蛋白和EN1。对骨形态发生蛋白4表现出间接的积极作用。据作者所知,此处报道的数据是第一个暴露于Bio-Oss的成骨细胞中翻译调控的数据。这项研究可能与更好地了解骨骼再生的分子机制有关,并可用作分析细胞因子联合使用的潜在工具。

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