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MiR‐106b inhibition suppresses inflammatory bone destruction of wear debris‐induced periprosthetic osteolysis in rats

机译:MiR-106b抑制作用可抑制大鼠磨损碎片诱导的假体周围骨质溶解的炎症性骨破坏

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摘要

Aseptic loosening caused by periprosthetic osteolysis (PPO) is the main reason for the primary artificial joint replacement. Inhibition of inflammatory osteolysis has become the main target of drug therapy for prosthesis loosening. MiR‐106b is a newly discovered miRNA that plays an important role in tumour biology, inflammation and the regulation of bone mass. In this study, we analysed the in vivo effect of miR‐106b on wear debris‐induced PPO. A rat implant loosening model was established. The rats were then administrated a lentivirus‐mediated miR‐106b inhibitor, miR‐106b mimics or an equivalent volume of PBS by tail vein injection. The expression levels of miR‐106b were analysed by real‐time PCR. Morphological changes in the distal femurs were assessed via micro‐CT and histopathological analysis, and cytokine expression levels were examined via immunohistochemical staining and ELISA. The results showed that treatment with the miR‐106b inhibitor markedly suppressed the expression of miR‐106b in distal femur and alleviated titanium particle‐induced osteolysis and bone loss. Moreover, the miR‐106b inhibitor decreased TRAP‐positive cell numbers and suppressed osteoclast formation, in addition to promoting the activity of osteoblasts and increasing bone formation. MiR‐106b inhibition also significantly regulated macrophage polarization and decreased the inflammatory response as compared to the control group. Furthermore, miR‐106b inhibition blocked the activation of the PTEN/PI3K/AKT and NF‐κB signalling pathways. Our findings indicated that miR‐106b inhibition suppresses wear particles‐induced osteolysis and bone destruction and thus may serve as a potential therapy for PPO and aseptic loosening.
机译:假体周围骨溶解(PPO)引起的无菌性松动是人工关节置换的主要原因。抑制炎症性骨溶解已成为假体松弛的药物治疗的主要目标。 MiR-106b是一种新发现的miRNA,在肿瘤生物学,炎症和骨量调节中起着重要作用。在这项研究中,我们分析了miR-106b对磨损碎片诱导的PPO的体内作用。建立了大鼠植入物松动模型。然后通过尾静脉注射对大鼠施用慢病毒介导的miR-106b抑制剂,miR-106b模拟物或等体积的PBS。通过实时PCR分析miR-106b的表达水平。通过micro-CT和组织病理学分析评估股骨远端的形态变化,并通过免疫组织化学染色和ELISA检查细胞因子的表达水平。结果表明,用miR-106b抑制剂治疗可显着抑制股骨远端miR-106b的表达,并减轻钛颗粒引起的骨溶解和骨质流失。此外,miR-106b抑制剂可减少TRAP阳性细胞数量并抑制破骨细胞形成,此外还可以促进成骨细胞活性和增加骨形成。与对照组相比,MiR-106b抑制作用还可以显着调节巨噬细胞极化并降低炎症反应。此外,miR-106b抑制作用还阻止了PTEN / PI3K / AKT和NF-κB信号传导通路的激活。我们的发现表明,miR-106b抑制作用可抑制磨损颗粒引起的骨溶解和骨破坏,因此可作为PPO和无菌性松动的潜在疗法。

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