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Simvastatin prevents the induction of interleukin-6 gene expression by titanium particles in human osteoblastic cells

机译:辛伐他汀可防止人成骨细胞中钛颗粒诱导白介素6基因表达

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摘要

One of the most important complications of total joint arthroplasty is failure associated with periprosthetic osteolysis, a process mainly initiated by the biological response to wear-derived products from the biomaterials in service. The inflammatory mediator interleukin-6 (IL-6) plays a key role in the establishment and progression of aseptic loosening. Metal particles specifically up-regulate IL-6 production in bone-forming cells and implant-bone interfacial tissues. The use of statins has been recently associated with a significantly reduced risk of revision in patients that undergo total hip arthroplasty. We hypothesized that simvastatin (Simv) could modulate the osteoblastic response to titanium particles (Ti) by attenuating the production of IL-6. Pre-treatment of human osteoblastic cells with Simv down-regulated Ti particle-induced IL-6 gene expression at mRNA and protein levels. The effect of Simv on Ti-induced IL-6 production in osteoblastic cells could not be explained by inhibition of the internalization of metal particles. The mechanism involved in this down-regulation is based in the inhibition of the HMG-CoA/GGPP/RhoA/ROCK pathway, independently of Simv effects in the cholesterol synthesis. The cytokine-lowering property of Simv has been observed in Saos-2 cells and human primary osteoblasts (hOBs) exposed to Ti particles, and was further enhanced when hOBs were co-cultured with macrophages.
机译:全关节置换术最重要的并发症之一是与假体周围骨溶解相关的衰竭,该过程主要由对使用中的生物材料产生的磨损产物的生物学反应引起。炎性介质白介素6(IL-6)在无菌性松弛的建立和发展中起关键作用。金属颗粒特别上调骨形成细胞和植入物-骨界面组织中的IL-6产生。他汀类药物的使用最近与全髋关节置换术患者的翻修风险显着降低有关。我们假设辛伐他汀(Simv)可以通过减弱IL-6的产生来调节成骨细胞对钛颗粒(Ti)的反应。 Simv预处理人成骨细胞在mRNA和蛋白水平下调Ti颗粒诱导的IL-6基因表达。 Simv对成钛细胞中Ti诱导的IL-6产生的影响无法通过抑制金属颗粒的内在化来解释。下调涉及的机制基于对HMG-CoA / GGPP / RhoA / ROCK途径的抑制,与Simv对胆固醇合成的影响无关。在暴露于Ti颗粒的Saos-2细胞和人类原代成骨细胞(hOB)中已观察到Simv的细胞因子降低特性,并在hOB与巨噬细胞共培养时进一步增强。

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