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镁白磷钙石,一种在病理学中特别受关注的磷酸钙晶体。

Magnesium whitlockite, a calcium phosphate crystal of special interest in pathology.

作者信息

Lagier R, Baud C A

机构信息

Department of Pathology, Medical University Center, Geneva, Switzerland.

出版信息

Pathol Res Pract. 2003;199(5):329-35. doi: 10.1078/0344-0338-00425.

Abstract

Whitlockite (in fact magnesium whitlockite) is a calcium orthophosphate crystal in which, in biological conditions, magnesium is partly substituted for calcium. Identified in X-ray or electron diffraction patterns, it occurs in physiological or pathological conditions at extra or intratissular sites, mainly in tissues of non-epithelial origin. In a range of pathological calcifications investigated by X-ray diffraction, we noted that whitlockite appeared to be frequently associated with apatite, particularly in "dystrophic calcifications" of tuberculous origin. These personal observations could be correlated with documented data in oral pathology (dental calculus, salivary stones, and dental caries). Whitlockite deposits have also been reported in non-infectious conditions, such as in aortic media, cartilage, and bone tissue. Whereas the formation of both apatite and magnesium whitlockite appears to be caused by the binding of their constituting ions with proteolipids, magnesium inhibits apatite originating from amorphous calcium phosphate to the benefit of whitlockite formation. Possibly, the development of magnesium whitlockite may provide an interesting marker for magnesium metabolism. Further studies linking histology to crystallography might relate the crystal to issues, such as tuberculous calcifications or diseases of bone tissue, and might be useful for potential diagnostic orientation.

摘要

白磷钙矿(实际上是镁白磷钙矿)是一种正磷酸钙晶体,在生物条件下,其中的钙部分被镁取代。通过X射线或电子衍射图谱鉴定,它出现在细胞外或细胞内的生理或病理条件下,主要存在于非上皮来源的组织中。在一系列通过X射线衍射研究的病理性钙化中,我们注意到白磷钙矿似乎经常与磷灰石相关联,特别是在结核源性的“营养不良性钙化”中。这些个人观察结果可以与口腔病理学中的文献数据(牙结石、唾液结石和龋齿)相关联。白磷钙矿沉积物也已在非感染性疾病中被报道,如在主动脉中膜、软骨和骨组织中。虽然磷灰石和镁白磷钙矿的形成似乎都是由其构成离子与蛋白脂质结合引起的,但镁会抑制由无定形磷酸钙形成的磷灰石,从而有利于白磷钙矿的形成。可能的是,镁白磷钙矿的形成可能为镁代谢提供一个有趣的标志物。将组织学与晶体学联系起来的进一步研究可能会将这种晶体与诸如结核钙化或骨组织疾病等问题联系起来,并且可能有助于潜在的诊断方向。

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