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硬组织形成过程中胶原蛋白矿化的各个方面。

Aspects of collagen mineralization in hard tissue formation.

作者信息

Wiesmann H P, Meyer U, Plate U, Höhling H J

机构信息

Department of Cranio-Maxillofacial Surgery, University of Münster, D-48149 Münster, Germany.

出版信息

Int Rev Cytol. 2005;242:121-56. doi: 10.1016/S0074-7696(04)42003-8.

Abstract

Collagen is the dominant fibrous protein not only in connective tissues but also in hard tissues, bone, dentin, cementum, and even the mineralizing cartilage of the epiphyseal growth plate. It comprises about 80-90% (by weight) of the organic substance in demineralized dentin and bone. When collagen fibers are arranged in parallel to form thicker bundles, as in lamellar bone and cementum, interior regions may be less mineralized; in dentin, however, the collagen fibers form a network and collagen fibers are densely filled with a mineral substance. In the biomineralization of collagen fibers in hard tissues, matrix vesicles play a fundamental role in the induction of crystal formation. The mineralization of matrix vesicles precedes the biomineralization of the collagen fibrils and the intervening ground substance. In addition, immobilized noncollagenous fibrous macromolecules, bound in a characteristic way to the fibrous collagen surface, initiate, more intensely than collagen, mineral nucleation in the hard tissue matrix.

摘要

胶原蛋白不仅是结缔组织中的主要纤维蛋白,也是硬组织、骨骼、牙本质、牙骨质甚至骨骺生长板矿化软骨中的主要纤维蛋白。它占脱矿牙本质和骨骼中有机物的80%-90%(按重量计)。当胶原纤维平行排列形成更粗的束时,如在板层骨和牙骨质中,内部区域的矿化程度可能较低;然而,在牙本质中,胶原纤维形成网络,并且胶原纤维紧密填充矿物质。在硬组织中胶原纤维的生物矿化过程中,基质小泡在晶体形成的诱导中起基本作用。基质小泡的矿化先于胶原原纤维和中间基质的生物矿化。此外,以一种特殊方式结合在纤维状胶原表面的固定化非胶原纤维大分子,比胶原更强烈地引发硬组织基质中的矿物成核。

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