首页> 外文期刊>Arthritis and Rheumatism >Osteoprotegerin inhibits cartilage degradation through an effect on trabecular bone in murine experimental osteoarthritis.
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Osteoprotegerin inhibits cartilage degradation through an effect on trabecular bone in murine experimental osteoarthritis.

机译:骨保护素通过对鼠实验性骨关节炎中的小梁骨产生抑制作用来抑制软骨降解。

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OBJECTIVE: To characterize bone microarchitectural changes and to test the hypothesis that disrupting local cytokine equilibrium could modify cartilage degradation in a murine model of experimental osteoarthritis (OA). METHODS: Ten-week-old male C57BL/6 mice underwent medial meniscectomy of their right knees and a sham operation of their left knees. The mice received intraperitoneal injections of osteoprotegerin (OPG) (10 mg/kg), interleukin-1 receptor antagonist (IL-1Ra) (100 mg/kg), or phosphate buffered saline for 6 weeks. The microarchitecture of the trabecular bone, the OA score, and expression of ADAMTS-4 and ADAMTS-5 were assessed. Proteoglycan release was measured in cartilage explant cultures in the presence of IL-1Ra and OPG. RESULTS: In the meniscectomized knees, bone volume/tissue volume (BV/TV) was lower, whereas trabecular separation, the OA score, and aggrecanase expression were higher than in the sham-operated knees. After treatment with OPG, BV/TV was significantly increased and trabecular separation was reduced in the knees that underwent meniscectomy. The OA score and the number of ADAMTS-positive cells were significantly decreased by treatment with OPG but were not affected by IL-1Ra. Moreover, OPG did not directly reduce the release of proteoglycans from cartilage explant cultures. CONCLUSION: In an experimental model of OA, meniscectomy induced bone loss and cartilage degradation at 6 weeks. Systemic administration of OPG prevented bone and cartilage degradation in vivo but had no effect on cartilage in vitro. These data collectively indicate that bone could be a contributor in the early stages of OA pathogenesis. They further suggest that disruption of RANKL/OPG balance might result in the degradation of cartilage subjected to mechanical loading. Specific targeting of the bone cytokine network might help to prevent OA.
机译:目的:表征骨微结构变化并检验以下假设:在实验性骨关节炎(OA)的鼠模型中,破坏局部细胞因子平衡可能会改变软骨的降解。方法:十周大的雄性C57BL / 6小鼠右膝内侧半月板切除术,左膝假手术。小鼠接受了腹膜内注射骨保护素(OPG)(10 mg / kg),白介素1受体拮抗剂(IL-1Ra)(100 mg / kg)或磷酸盐缓冲液注射6周。评估了小梁骨的微结构,OA评分以及ADAMTS-4和ADAMTS-5的表达。在IL-1Ra和OPG存在下,在软骨外植体培养物中测量蛋白聚糖的释放。结果:在半月板切除的膝盖中,骨体积/组织体积(BV / TV)较低,而小梁间距,OA评分和软骨聚集蛋白聚糖酶的表达高于假手术膝盖。用OPG治疗后,半月板切除术的膝盖BV / TV显着增加,小梁分离减少。 OPG处理可显着降低OA评分和ADAMTS阳性细胞数量,但不受IL-1Ra影响。此外,OPG不能直接减少软骨外植体培养物中蛋白聚糖的释放。结论:在OA的实验模型中,半月板切除术在6周时引起骨丢失和软骨降解。 OPG的全身给药可防止体内骨骼和软骨降解,但对体外软骨没有影响。这些数据共同表明骨骼可能是OA发病机理的早期阶段。他们进一步表明,RANKL / OPG平衡的破坏可能导致受到机械负荷的软骨退化。骨细胞因子网络的特异性靶向可能有助于预防OA。

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