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Experimental study of expression profile and specific role of human microRNAs in regulating atrophic bone nonunion

机译:人微小血管在调节萎缩性骨不骨不平安中的表达谱和特定作用的实验研究

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The expression profile and specific roles of microRNAs (miRNAs) in regulation of atrophic bone nonunion are not fully understood. Here, we present evidence that miRNAs are involved in regulation of several osteogenic genes and may contribute to the development of atrophic bone nonunion . The miRNA expression profile of repairing tissues in atrophic bone nonunion patients (group A) and in callus tissues from patients with healed fractures (group B) were quantitatively measured. microRNA microarrays were used to identify differentially expressed miRNAs, and the bioinformatics methods were used to predict the potential target genes. Quantitative real-time polymerase chain reaction (qRT-PCR), western blot, and dual-luciferase reporter assay were performed in human bone marrow stromal cells (hBMSCs) to validate the microarray results. Nine miRNAs in group A were up-regulated 1.5 times compared to group B, while the other 9 miRNAs in group A were down-regulated 1.5 times. Several target regions of these miRNAs were identified in the osteogenic genes, as well as in the other genes in their families or related regulatory factors. Four miRNAs (hsa-miR-149 ? , hsa-miR-221, hsa-miR-628-3p, and hsa-miR-654-5p) could play important roles in regulating bone nonunion development. hBMSCs transfected with these miRNAs significantly decreased mRNA levels of alkaline phosphatase, liver/bone/kidney ( ALPL ), platelet derived growth factor subunit A ( PDGFA ), and bone morphogenetic protein 2 ( BMP2 ). Lower protein expression levels were observed using western blotting, confirming that ALPL , PDGFA , and BMP2 were directly targeted by hsa-miR-149 ? , hsa-miR-221, and hsa-miR-654-5p, respectively. In summary, hsa-miR-149 ? , hsa-miR-221, and hsa-miR-654-5p may play important biological roles by repressing osteogenic target genes ALPL , PDGFA , and BMP2 , and, therefore, contributing to progression of atrophic bone nonunion .
机译:MicroRNAS(miRNA)在萎缩性骨不间间调节中的表达谱和特异性作用尚不完全理解。在这里,我们提出了MIRNA参与调节几种骨质基因的证据,并且可能有助于萎缩性骨不间间的发育。定量测量萎缩性骨不间间患者(A组)和愈合骨折患者的愈伤组织中的组织的miRNA表达谱系被定量测量。 Microrna微阵列用于鉴定差异表达的miRNA,并使用生物信息学方法来预测潜在的靶基因。在人骨髓基质细胞(HBMSCs)中进行定量实时聚合酶链反应(QRT-PCR),蛋白质印迹和双荧光素酶报告结果以验证微阵列结果。与B组相比,A组中的九个miRNA是上调的1.5次,而A组中的其他9 miRNA是下调的1.5倍。在骨质发生基因中鉴定了这些miRNA的几个靶区域,以及家庭或相关调节因素的其他基因中。四个miRNA(HSA-MIR-149?,HSA-MIR-221,HSA-MIR-628-3P和HSA-MIR-654-5P)可以在调节骨不平安发展方面发挥重要作用。用这些miRNA转染的HBMSCs显着降低了碱性磷酸酶,肝脏/骨/肾(ALPL),血小板衍生生长因子亚基A(PDGFA)和骨形态发生蛋白2(BMP2)的mRNA水平。使用蛋白质印迹观察较低的蛋白质表达水平,证实Alpl,PDGFA和BMP2由HSA-miR-149直接靶向? ,HSA-MIR-221和HSA-MIR-654-5P分别。总之,HSA-MIR-149? ,HSA-MIR-221和HSA-MIR-654-5P可以通过抑制成骨靶基因ALPL,PDGFA和BMP2来发挥重要的生物学作用,因此有助于萎缩性骨不间间的进展。

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