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破骨细胞如何降解骨骼。

How the osteoclast degrades bone.

作者信息

Blair H C

出版信息

Bioessays. 1998 Oct;20(10):837-46. doi: 10.1002/(SICI)1521-1878(199810)20:10<837::AID-BIES9>3.0.CO;2-D.

Abstract

Osteoclasts are multinucleated monocyte-macrophage derivatives that degrade bone. Their specialized role is central to a process that continuously removes and replaces segments of the skeleton in the higher vertebrates. Osteoclasts allow skeletal mineral to be used to manage extracellular calcium activity, which is an important adaptation for life on land, and solid skeletal structure to be replaced by hollow architecture that has a superior strength-to-weight ratio. Degrading bone also allows periodic repair and remodeling for ordered growth and efficient response to mechanical loads. A fairly comprehensive view of osteoclastic ontogeny and function is emerging from recent studies. Osteoclasts dissolve bone mineral by massive acid secretion and secrete specialized proteinases that degrade the organic matrix, mainly type I collagen, in this acidic milieu. The site of bone dissolution is a high-calcium environment; removal of degradation products by transcytosis of membrane vesicles allows the osteoclast to maintain a normal intracellular calcium. Osteoclastic differentiation is normally balanced with bone formation, although bone formation is the function of unrelated stromal cell-derived osteoblasts. Interactions between osteoclast precursors and bone-forming cells are believed to control osteoclast differentiation under most circumstances, preserving bone architecture over many cycles of bone replacement.

摘要

破骨细胞是多核的单核细胞 - 巨噬细胞衍生物,可降解骨骼。它们的特殊作用对于高等脊椎动物中持续去除和替换骨骼部分的过程至关重要。破骨细胞使骨骼矿物质能够用于调节细胞外钙活性,这是陆地生物的重要适应性特征,并且使固体骨骼结构被具有更高强度重量比的中空结构所取代。降解骨骼还能实现周期性修复和重塑,以实现有序生长并有效应对机械负荷。最近的研究正在形成对破骨细胞个体发育和功能的较为全面的认识。破骨细胞通过大量分泌酸来溶解骨矿物质,并在这种酸性环境中分泌专门的蛋白酶来降解有机基质,主要是I型胶原蛋白。骨溶解部位是高钙环境;通过膜泡的跨细胞转运去除降解产物可使破骨细胞维持正常的细胞内钙水平。破骨细胞分化通常与骨形成保持平衡,尽管骨形成是由不相关的基质细胞衍生的成骨细胞的功能。在大多数情况下,破骨细胞前体与骨形成细胞之间的相互作用被认为控制着破骨细胞的分化,在许多骨替换周期中维持骨骼结构。

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