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Anti-inflammatory effects of continuous passive motion on meniscal fibrocartilage

机译:持续被动运动对半月板纤维软骨的抗炎作用

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摘要

Motion-based therapies have been applied to promote healing of arthritic joints. The goal of the current study was to determine the early molecular events that are responsible for the beneficial actions of motion-based therapies on meniscal fibrocartilage. Rabbit knees with Antigen-Induced-Arthritis (AIA) were exposed to continuous passive motion (CPM) for 24 or 48 h and compared to immobilized knees. The menisci were harvested and glycosaminoglycans (GAG), interleukin-1β (IL-1β), matrix metalloproteinase-1 (MMP-1), cyclooxygenase-2 (COX-2), and interleukin-10 (IL-10) were determined by histochemical analysis.Within 24 h, immobilized knees exhibited marked GAG degradation. The expression of proinflammatory mediators MMP-1, COX-2, and IL-1β was notably increased within 24 h and continued to increase during the next 24 h in immobilized knees. Knees subjected to CPM revealed a rapid and sustained decrease in GAG degradation and the expression of all proinflammatory mediators during the entire period of CPM treatment. More importantly, CPM induced synthesis of the anti-inflammatory cytokine IL-10. The results demonstrate that mechanical signals generated by CPM exert potent anti-inflammatory signals on meniscal fibrochondrocytes. Furthermore, these studies explain the molecular basis of the beneficial effects of CPM observed on articular cartilage and suggest that CPM suppresses the inflammatory process of arthritis more efficiently than immobilization.
机译:基于运动的疗法已被用于促进关节炎关节的愈合。当前研究的目的是确定早期分子事件,这些事件是基于运动的疗法对半月板纤维软骨有益的作用。将患有抗原诱导性关节炎(AIA)的兔膝盖暴露于连续被动运动(CPM)24或48 h,并与固定膝盖进行比较。收集半月板并通过以下方法测定糖胺聚糖(GAG),白介素-1β(IL-1β),基质金属蛋白酶-1(MMP-1),环氧合酶2(COX-2)和白介素10(IL-10)。组织化学分析。在24小时内,固定的膝盖表现出明显的GAG降解。促炎性介质MMP-1,COX-2和IL-1β的表达在24小时内显着增加,并在接下来的24小时内在固定膝盖中继续增加。接受CPM的膝盖在整个CPM治疗期间均显示GAG降解以及所有促炎介质的表达持续快速降低。更重要的是,CPM诱导了抗炎细胞因子IL-10的合成。结果表明,CPM产生的机械信号在半月板纤维软骨细胞上产生有效的抗炎信号。此外,这些研究解释了CPM对关节软骨有益作用的分子基础,并表明CPM比固定化更有效地抑制关节炎症的炎症过程。

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