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澳大利亚肺鱼(新角齿鱼属福氏新角齿鱼,硬骨鱼纲:角齿鱼目)中的棱柱形牙本质。

Prismatic dentine in the Australian lungfish, Neoceratodus forsteri (Osteichthyes: Dipnoi).

作者信息

Kemp Anne, Barry John C

机构信息

Centre for Microscopy and Microanalysis, Coopers Road, University of Queensland, St. Lucia, Qld 4072, Australia.

出版信息

Tissue Cell. 2006 Apr;38(2):127-40. doi: 10.1016/j.tice.2006.01.001. Epub 2006 Feb 13.

Abstract

The Australian lungfish, Neoceratodus forsteri, has a dentition consisting of enamel, mantle dentine and bone, enclosing circumdenteonal, core and interdenteonal dentines. Branching processes from cells that produce interdenteonal dentine leave the cell surface at different angles, with collagen fibrils aligned parallel to the long axis of each process. In the interdenteonal dentine, crystals of calcium hydroxyapatite form within fibrils of collagen, and grow within a matrix of non-collagenous protein. Crystals are aligned parallel to the cell process, as are the original collagen fibrils. Because the processes are angled to the cell surface, the crystals within the core or interdenteonal dentine are arranged in bundles set at angles to each other. Apatite crystals in circumdenteonal dentine are finer and denser than those of the interdenteonal dentine, and form outside the fibrils of collagen. In mature circumdenteonal dentine the crystals of circumdenteonal dentine form a dense tangled mass, linked to interdenteonal dentine by isolated crystals. The functional lungfish tooth plate contains prisms of large apatite crystals in the interdenteonal dentine and masses of fine tangled crystals around each denteon. This confers mechanical strength on a structure with little enamel that is subjected to heavy wear.

摘要

澳大利亚肺鱼(Neoceratodus forsteri)的牙列由牙釉质、罩牙本质和骨组成,包绕着环牙本质、髓核牙本质和牙间牙本质。产生牙间牙本质的细胞发出的分支突起以不同角度离开细胞表面,胶原纤维与每个突起的长轴平行排列。在牙间牙本质中,羟基磷灰石晶体在胶原纤维内形成,并在非胶原蛋白基质中生长。晶体与细胞突起平行排列,原始胶原纤维也是如此。由于突起与细胞表面成一定角度,髓核或牙间牙本质内的晶体相互成一定角度排列成束。环牙本质中的磷灰石晶体比牙间牙本质中的更细更密,在胶原纤维外形成。在成熟的环牙本质中,环牙本质晶体形成致密的缠结团块,通过孤立的晶体与牙间牙本质相连。功能性肺鱼齿板在牙间牙本质中含有大的磷灰石晶体棱柱,每个牙质周围有细小的缠结晶体团块。这赋予了一个牙釉质少且易遭受严重磨损的结构机械强度。

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