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Quercetin inhibits macrophage polarization through the p‐38α/β signalling pathway and regulates OPG/RANKL balance in a mouse skull model

机译:槲皮素通过p-38α/β信号通路抑制巨噬细胞极化并调节小鼠颅骨模型中的OPG / RANKL平衡

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摘要

Aseptic loosening caused by wear particles is a common complication after total hip arthroplasty. We investigated the effect of the quercetin on wear particle‐mediated macrophage polarization, inflammatory response and osteolysis. In vitro, we verified that Ti particles promoted the differentiation of RAW264.7 cells into M1 macrophages through p‐38α/β signalling pathway by using flow cytometry, immunofluorescence assay and small interfering p‐38α/β RNA. We used enzyme‐linked immunosorbent assays to confirm that the protein expression of M1 macrophages increased in the presence of Ti particles and that these pro‐inflammatory factors further regulated the imbalance of OPG/RANKL and promoted the differentiation of osteoclasts. However, this could be suppressed, and the protein expression of M2 macrophages was increased by the presence of the quercetin. In vivo, we revealed similar results in the mouse skull by μ‐CT, H&E staining, immunohistochemistry and immunofluorescence assay. We obtained samples from patients with osteolytic tissue. Immunofluorescence analysis indicated that most of the macrophages surrounding the wear particles were M1 macrophages and that pro‐inflammatory factors were released. Titanium particle‐mediated M1 macrophage polarization, which caused the release of pro‐inflammatory factors through the p‐38α/β signalling pathway, regulated OPG/RANKL balance. Macrophage polarization is expected to become a new clinical drug therapeutic target.
机译:由磨损颗粒引起的无菌性松动是全髋关节置换术后的常见并发症。我们研究了槲皮素对磨损颗粒介导的巨噬细胞极化,炎症反应和溶骨的影响。在体外,我们通过流式细胞仪,免疫荧光分析和小干扰p-38α/βRNA证实,钛颗粒通过p-38α/β信号通路促进RAW264.7细胞向M1巨噬细胞的分化。我们使用酶联免疫吸附测定法确认存在Ti颗粒的情况下M1巨噬细胞的蛋白表达增加,并且这些促炎因子进一步调节OPG / RANKL的失衡并促进破骨细胞的分化。然而,这可以被抑制,并且槲皮素的存在增加了M2巨噬细胞的蛋白表达。在体内,我们通过μ-CT,H&E染色,免疫组织化学和免疫荧光分析在小鼠头骨中发现了相似的结果。我们从溶骨组织患者中获得了样本。免疫荧光分析表明,磨损颗粒周围的大多数巨噬细胞是M1巨噬细胞,并且促炎因子被释放。钛粒子介导的M1巨噬细胞极化,通过p-38α/β信号通路引起促炎因子的释放,调节了OPG / RANKL的平衡。巨噬细胞极化有望成为一种新的临床药物治疗靶标。

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