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破骨细胞性骨吸收机制:一种新假说。

Mechanism of osteoclastic bone resorption: a new hypothesis.

作者信息

Heersche J N

出版信息

Calcif Tissue Res. 1978 Nov 10;26(1):81-4. doi: 10.1007/BF02013238.

Abstract

Osteoclastic bone resorption involves the solubilization of the mineral salts and the degradation of noncollagen bone matrix and collagen fibrils. As no recognizable collagen fibrils have ever been reported within cytoplasmic vacuoles in osteoclasts, it is generally assumed that the collagen fibrils are digested extracellularly in the resorption zone. The extent to which lysis occurs extracellularly and whether or not the osteoclasts phagocytose the degradation products remain to be established. In the present communication, a hypothesis is presented suggesting the possibility that osteoclastic resorption of bone involves the participation of two different cell types. According to this hypothesis, osteoclastic bone resorption is initiated by osteoclasts that demineralize areas of bone and degrade noncollagen bone matrix. After the osteoclasts have moved away or become partially detached from the demineralized site, the exposed collagen fibrils are phagocytosed by mononuclear, fibroblast-like or monocyte-derived cells.

摘要

破骨细胞介导的骨吸收涉及矿物盐的溶解以及非胶原蛋白骨基质和胶原纤维的降解。由于从未在破骨细胞的细胞质液泡内发现可识别的胶原纤维,因此一般认为胶原纤维在吸收区内进行细胞外消化。细胞外发生溶解的程度以及破骨细胞是否吞噬降解产物仍有待确定。在本通讯中,提出了一种假说,表明破骨细胞介导的骨吸收可能涉及两种不同细胞类型的参与。根据这一假说,破骨细胞介导的骨吸收由破骨细胞启动,这些破骨细胞使骨区域脱矿并降解非胶原蛋白骨基质。在破骨细胞从脱矿部位移开或部分脱离后,暴露的胶原纤维被单核、成纤维细胞样或单核细胞衍生的细胞吞噬。

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