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[对活体骨和体外钙化的非细胞依赖性影响(作者译)]

[The cell-independent influence on calcification in living bone and in vitro (author's transl)].

作者信息

Münzenberg K J, Dennert R

出版信息

Arch Orthop Unfallchir. 1975;82(2):157-68.

PMID:167696
Abstract

While there is no doubt that collagen is an important extra-cellular factor in the calcification of bone tissues, the exact nature of the process remains unclear. It has been explained in turn by the nucleation effect of corresponding lattice distances of apatite and collagen, that is, an oriented crystal overgrowth of the two substances which decreases the energy of nucleus formation, or by conformity between fibril-bundles and calciumphosphate crystal, or by the binding of phosphate to anionic positions of the collagen, as well as by the bone-forming effect of a non-collagen protein which is, however, separable from collagen. Because of their high viscosity proteo-polysaccharides inhibit crystal formation. Alkaline soluble proteo-pholysaccharides, however, appear to promote calcification in vitro and also in tissue of living bone. Lathyrogene and penicillamine impair the cross-linking in the bone collagen; this probably explains their disturbing effect on ossification. Diphosphonates would, like anorganic pyrophosphate, inhibit both the formation and dissolution of apatite crystal. Our research shows, however, that methanie-bis-phosphonate clearly promotes calcification, in vitro and in vivo. In vitro, and probably also in vivo, magnesium inhibits the formation of apatite crystal nucleus. Our research indicates moreover that magnesium also slows down the reduction of calcified bone tissue on account of its inhibiting effect on parathormone emission.

摘要

虽然毫无疑问胶原蛋白是骨组织钙化过程中的一种重要细胞外因子,但该过程的确切本质仍不清楚。这一过程依次被解释为磷灰石和胶原蛋白相应晶格距离的成核效应,即两种物质的定向晶体过度生长从而降低成核能量;或者是原纤维束与磷酸钙晶体之间的一致性;或者是磷酸盐与胶原蛋白阴离子位点的结合;以及一种可与胶原蛋白分离的非胶原蛋白的成骨作用。蛋白聚糖因其高粘性而抑制晶体形成。然而,碱性可溶蛋白聚糖似乎在体外以及活体骨组织中都能促进钙化。抗坏血酸和青霉胺会损害骨胶原蛋白中的交联;这可能解释了它们对骨化的干扰作用。双膦酸盐与无机焦磷酸盐一样,会抑制磷灰石晶体的形成和溶解。然而,我们的研究表明,甲撑双膦酸盐在体外和体内都能明显促进钙化。在体外,可能在体内也是如此,镁会抑制磷灰石晶核的形成。我们的研究还表明,由于镁对甲状旁腺激素分泌的抑制作用,它也会减缓钙化骨组织的减少。

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