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首页> 外文期刊>International Orthopaedics >MicroRNA-mediated interacting circuits predict hypoxia and inhibited osteogenesis of stem cells, and dysregulated angiogenesis are involved in osteonecrosis of the femoral head
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MicroRNA-mediated interacting circuits predict hypoxia and inhibited osteogenesis of stem cells, and dysregulated angiogenesis are involved in osteonecrosis of the femoral head

机译:MicroRNA介导的相互作用电路预测缺氧并抑制干细胞的骨质发生,并且缺血性血管生成涉及股骨头的骨折

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Purpose MicroRNAs (miRNAs) are associated with various pathologic conditions and can serve as diagnostic or therapeutic biomarkers. This study tried to identify the differentially expressed miRNAs to predict the possible pathomechanisms involved in osteonecrosis of the femoral head (ONFH). Methods We compared the peripheral blood miRNAs in 46 patients with ONFH and 85 healthy controls by microarray and droplet digital polymerase chain reaction (ddPCR). Putative interacted networks between the differentially responded miRNAs were analyzed by web-based bioinformatics prediction tools. Results Microarray identified 51 differentially expressed miRNAs with at least twofold change (upregulation in 34 and downregulation in 17), and the results were validated by ddPCR using six selected miRNAs. Bioinformatics genetic network analysis focusing on the six miRNAs found the upregulated miR-18a and miR-19a are associated with angiogenesis after induction of ischemia; the upregulated miR-138-1 can inhibit osteogenic differentiation of mesenchymal stem cells; the most targeted genes, p53 and SERBP1, are associated with hypoxia and hypofibrinolysis. Conclusions This study combined the miRNA analysis with the bioinformatics and predicts that hypoxia, inhibited osteogenesis of stem cells, and dysregulated angiogenesis might be orchestrated through the miRNA interacting circuits in the pathogenesis of ONFH.
机译:目的microRNAs(miRNA)与各种病理状况有关,可用作诊断或治疗生物标志物。本研究试图识别差异表达的miRNA,以预测股骨头骨折(ON​​FH)的可能涉及的可能性。方法通过微阵列和液滴数字聚合酶链反应(DDPCR)将外周血miRNA与46名患者中的46例患者进行比较。通过基于Web的生物信息学预测工具分析差异响应的miRNA之间的推定的互动网络。结果微阵列鉴定了51种差异表达的miRNA,至少具有两倍的变化(在34中上调,17中下调),并使用六种选定的miRNA通过DDPCR验证结果。重点在六个miRNA上的生物信息学遗传网络分析发现上调的miR-18a和miR-19a与诱导缺血后的血管生成相关;上调的miR-138-1可以抑制间充质干细胞的成骨分化;最靶向基因P53和Serbp1与缺氧和脱氧溶解有关。结论本研究结合生物信息学的miRNA分析并预测缺氧,抑制干细胞的骨质发生,并且可以通过在ONFH的发病机制中通过miRNA相互作用来策划令人讨发的血管生成。

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