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Osteocyte regulation of bone mineral: A little give and take

机译:骨矿物质的骨细胞调节:一点点的付出和付出

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摘要

Osteocytes actively participate in almost every phase of mineral handling by bone. They regulate the mineralisation of osteoid during bone formation, and they are also a major RANKL-producing cell. Osteocytes are thus able to liberate bone mineral by regulating osteoclast differentiation and activity in response to a range of stimuli, including bone matrix damage, bone disuse and mechanical unloading, oestrogen deficiency, high-dose glucocorticoid and chemotherapeutic agents. At least some of these activities may be regulated by the osteocyte-secreted product, sclerostin. There is also mounting evidence that in addition to regulating phosphate homeostasis systemically, osteocytes contribute directly to calcium homeostasis in the mature skeleton. Osteocyte cell death and the local loss of control of bone mineralisation may be the cause of focal hypermineralisation of bone and osteopetrosis, as seen in aging and pathology. The sheer number of osteocytes in bone means that 'a little give and take' in terms of regulation of bone mineral content translates into a powerful whole organism effect.
机译:骨细胞几乎参与骨骼矿物质处理的几乎每个阶段。它们在骨形成过程中调节类固醇的矿化作用,并且也是主要的RANKL产生细胞。因此,成骨细胞能够通过响应一系列刺激而调节破骨细胞的分化和活性,从而释放骨矿物质,这些刺激包括骨基质损害,骨废用和机械负荷,雌激素缺乏,大剂量糖皮质激素和化学治疗剂。这些活性中的至少一些可以由分泌骨细胞的产品硬化蛋白调节。还有越来越多的证据表明,除了系统地调节磷酸盐的动态平衡外,骨细胞还直接有助于成熟骨骼中的钙动态平衡。如在衰老和病理学中所见,骨细胞死亡和骨矿化控制的局部丧失可能是骨骼和骨石病局部过度矿化的原因。骨中的骨细胞数量庞大,这意味着在调节骨矿物质含量方面“付出一点代价”就可以转化为强大的整个生物体效应。

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