首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Immunohistochemical localisation of amelogenin-like proteins and type I collagen and histochemical demonstration of sulphated glycoconjugates in developing enameloid and enamel matrices of the larval urodele (Triturus pyrrhogaster) teeth
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Immunohistochemical localisation of amelogenin-like proteins and type I collagen and histochemical demonstration of sulphated glycoconjugates in developing enameloid and enamel matrices of the larval urodele (Triturus pyrrhogaster) teeth

机译:牙釉蛋白样蛋白和I型胶原蛋白的免疫组织化学定位以及幼虫urodele(Triturus pyrrhogaster)牙齿的发展的同名和牙釉质基质中硫酸化糖缀合物的组织化学证明

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摘要

The presence of collagen in enameloid distinguishes it clearly from true enamel, but little is known about the phylogenetic relationship between these 2 tissues. It has previously been reported that amelogenins are the principal proteins of the enamel matrix, that type I collagen and chondroitin sulphates are the predominant matrices in dentine, and that amphibian and reptilian aprismatic enamels contain no sulphated glycoconjugates, although certain sulphated substances are secreted into mammalian prismatic enamel during matrix formation. The larval urodele (Triturus pyrrhogaster) teeth are known to be composed of enameloid, dentine, and enamel-like tissue. To characterise the tooth matrices, the localisation of amelogenin-like proteins, type I collagen, and sulphated glycoconjugates was investigated. Chondroitin sulphates and fine fibrils immunoreactive for type I collagen were elaborated as the enameloid matrix inside the dental basement membrane. After the matrix had been deposited in full thickness, coarse collagen fibrils also immunoreactive for type I collagen and chondroitin sulphates were deposited below as the first dentine matrix. Further, enamel-like matrix with no collagen fibrils or sulphated glycoconjugates but strongly immunoreactive for amelogenins was deposited on the dentine. Although no immunolabelling for amelogenins was found over the enameloid matrix, at least at the formation stage, the zone of coarse collagen fibrils of dentine was partially immunoreactive as observed in mammalian mantle dentine. From the ontogeny and matrix constituents of larval urodele teeth, it is suggested that enameloid is originally a dentine-like tissue.
机译:胶体中存在胶原蛋白,可以将其与真正的牙釉质区分开来,但是对这两个组织之间的系统发育关系知之甚少。先前已有报道,釉原蛋白是牙釉质基质的主要蛋白质,I型胶原和软骨素硫酸盐是牙本质中的主要基质,两栖和爬行动物的无核珐琅质不包含硫酸化的糖结合物,尽管某些硫酸化的物质被分泌到哺乳动物体内基质形成过程中呈棱柱状搪瓷。幼虫urodele(Triturus pyrrhogaster)牙齿由同名,牙质和牙釉质样组织组成。为了表征牙齿基质,研究了牙釉蛋白样蛋白,I型胶原蛋白和硫酸化糖缀合物的定位。硫酸软骨素和对I型胶原具有免疫反应性的细纤维被细化为牙基膜内部的同名基质。基质完全沉积后,对I型胶原也具有免疫反应性的粗胶原原纤维和硫酸软骨素沉积为第一个牙本质基质。此外,没有胶原纤维或硫酸化的糖缀合物但对牙釉蛋白的免疫反应强的牙釉质样基质沉积在牙本质上。尽管在整个釉样基质上未发现针对釉原蛋白的免疫标记,但至少在形成阶段,如在哺乳动物套膜牙本质中所观察到的那样,牙本质的粗胶原原纤维区域具有部分免疫反应性。从幼虫尾动脉牙齿的个体发育和基质组成,可以认为enameloid最初是一种牙本质样组织。

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