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Reduced Bone Loss in a Murine Model of Postmenopausal Osteoporosis lacking Complement Component 3

机译:缺乏补体成分3的绝经后骨质疏松症小鼠模型的骨丢失减少

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摘要

The growing field of osteoimmunology seeks to unravel the complex interdependence of the skeletal and immune systems. Notably, we and others have demonstrated that complement signaling influences the differentiation of osteoblasts and osteoclasts, the two primary cell types responsible for maintaining bone homeostasis. However, the net effect of complement on bone homeostasis in vivo was unknown. Our published in vitro mechanistic work led us to hypothesize that absence of complement component 3 (C3), a central protein in the complement activation cascade, protects against bone loss in the ovariectomy-based model of postmenopausal osteoporosis. Indeed, we report here that, when compared to their C57BL/6J (WT) counterparts, ovariectomized C3 deficient mice experienced reduced bone loss at multiple sites and increased stiffness at the femoral neck, the latter potentially improving mechanical function. WT and B6;129S4‐C3tm1Crr/J (C3−/−) mice were either ovariectomized or sham-operated at 6 weeks of age and euthanized at 12 weeks. MicroCT on harvested bones revealed that the trabecular bone volume fraction in the metaphyses of both the proximal tibiae and distal femora of ovariectomized C3−/− mice is significantly greater than that of their WT counterparts. Lumbar vertebrae showed significantly greater osteoid content and mineral apposition rates. Mechanical testing demonstrated significantly greater stiffness in the femoral necks of ovariectomized C3−/− mice. These results demonstrate that C3 deficiency reduces bone loss at ovariectomy and may improve mechanical properties.
机译:越来越多的骨免疫学领域试图揭示骨骼与免疫系统之间复杂的相互依存关系。值得注意的是,我们和其他人已证明补体信号影响成骨细胞和破骨细胞的分化,成骨细胞和破骨细胞是负责维持骨稳态的两种主要细胞类型。但是,补体对体内骨稳态的净作用尚不清楚。我们发表的体外机制研究成果使我们假设,在以卵巢切除术为基础的绝经后骨质疏松症模型中,补体激活级联反应中的核心蛋白补体成分3(C3)的缺乏可以防止骨质流失。实际上,我们在这里报告说,与C57BL / 6J(WT)相比,卵巢切除的C3缺陷小鼠在多个部位的骨丢失减少,在股骨颈处的僵硬增加,后者可能改善了机械功能。 WT和B6; 129S4-C3 tm1Crr / J(C3 -/-)小鼠在6周龄时被卵巢切除或假手术,在12周时被安乐死。 MicroCT在收获的骨骼上显示,去卵巢的C3 -/-小鼠的胫骨近端和股骨远端干meta端的小梁骨体积分数显着大于WT小鼠。腰椎显示出明显更高的类骨质含量和矿物质沉积率。机械测试显示,去卵巢的C3 -/-小鼠的股骨颈明显更大的僵硬。这些结果表明,C3缺乏症可减少卵巢切除术中的骨质流失,并可改善机械性能。

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