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啮齿动物骨软化症和维生素D缺乏症中巨噬细胞与骨的结合缺陷。骨基质中细胞缺陷和糖类改变的体外证据。

Defective binding of macrophages to bone in rodent osteomalacia and vitamin D deficiency. In vitro evidence for a cellular defect and altered saccharides in the bone matrix.

作者信息

Bar-Shavit Z, Kahn A J, Teitelbaum S L

出版信息

J Clin Invest. 1983 Aug;72(2):526-34. doi: 10.1172/jci111000.

Abstract

In the osteomalacic as well as normal skeleton, few osteoclasts are associated with osteoid-covered bone surfaces. The reason for this particular cellular deficit is not clear, but may relate to the inability of osteoclasts and/or osteoclast precursors (monocyte-macrophages) to attach to immature, unmineralized bone matrix, a step apparently essential for normal resorptive activity and osteoclast differentiation. In this study, we have examined cell-bone binding using macrophages (M phi) and bone isolated from vitamin D-deficient rats and hypophosphatemic, osteomalacic mice and from their normal counterparts. The data show that M phi-bone attachment is greatly reduced (P less than 0.001) in both vitamin D deficiency and hypophosphatemia, but that the mechanisms responsible for this reduction are apparently different in the two disorders. In hypophosphatemia, the reduction in binding appears solely attributable to the absence or inaccessibility of bone matrix oligosaccharides or glycoproteins essential to the attachment process. In vitamin D deficiency, on the other hand, not only is the bone matrix defective as a binding substrate, but the M phi, per se, is limited in its capacity to attach to normal, vitamin D-deficient, and hypophosphatemic bone.

摘要

在骨软化症以及正常骨骼中,很少有破骨细胞与类骨质覆盖的骨表面相关联。这种特殊细胞缺陷的原因尚不清楚,但可能与破骨细胞和/或破骨细胞前体(单核细胞-巨噬细胞)无法附着于未成熟的、未矿化的骨基质有关,这一步骤显然是正常吸收活动和破骨细胞分化所必需的。在本研究中,我们使用从维生素D缺乏的大鼠和低磷性骨软化症小鼠及其正常对照中分离出的巨噬细胞(M phi)和骨来检测细胞与骨的结合。数据表明,在维生素D缺乏和低磷血症中,M phi与骨的附着均显著减少(P小于0.001),但导致这种减少的机制在这两种疾病中显然不同。在低磷血症中,结合减少似乎仅归因于附着过程所必需的骨基质寡糖或糖蛋白的缺失或不可及。另一方面,在维生素D缺乏中,不仅骨基质作为结合底物存在缺陷,而且M phi本身附着于正常、维生素D缺乏和低磷血症骨的能力也受到限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb41/1129210/19b170252e2c/jcinvest00768-0119-a.jpg

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