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鸡胚早期器官发生过程中外胚层对透明质酸的合成。

The synthesis of hyaluronic acid by ectoderm during early organogenesis in the chick embryo.

作者信息

Solursh M, Fisher M, Singley C T

出版信息

Differentiation. 1979;14(1-2):77-85. doi: 10.1111/j.1432-0436.1979.tb01014.x.

Abstract

This study demonstrates that the dorsal ectoderm of the stage 14 chick embryo synthesizes hyaluronic acid. About 49 to 52% of the H3 glucosamine-labeled glycosaminoglycan that is synthesized by explanted ectoderm can be identified as hyaluronic acid on the basis of its susceptibility to Streptomyces hyaluronidase or isolation of chondroitinase ABC digestion products. In addition, autoradiographic evidence shows that the ectoderm, unlike adjacent tissues like epithelial somites or neural tube, incorporates glucosamine into hyaluronidase-sensitive material which becomes largely extracellular and localized in the subectodermal cell-free space. Ultrastructural evidence shows that there is a fine fibrillar matrix between the ectodermal cells and in the subectodermal spaces when tannic acid is included in the primary fixative. This material resembles authentic hyaluronate, similarly fixed, and is absent when tannic acid is omitted from the fixative or when embryos have been previously treated in ovo with Streptomyces hyaluronidase. The concomitant reduction in the intercellular and subectodermal cell-free spaces after in ovo treatment with Streptomyces hyaluronidase supports the hypothesis that the dorsal ectoderm plays a morphogenetic role by contributing hyaluronate to the forming extracellular spaces. It is proposed that ectodermally derived hyaluronate might influence the morphogenesis of subjacent tissues such as the dermatome and neural crest.

摘要

本研究表明,14期鸡胚的背侧外胚层能合成透明质酸。根据外植体外胚层合成的H3葡糖胺标记的糖胺聚糖对透明质酸酶的敏感性或软骨素酶ABC消化产物的分离情况,约49%至52%的此类糖胺聚糖可被鉴定为透明质酸。此外,放射自显影证据表明,与上皮体节或神经管等相邻组织不同,外胚层将葡糖胺掺入对透明质酸酶敏感的物质中,该物质大部分位于细胞外并定位于外胚层下无细胞空间。超微结构证据表明,当在初次固定剂中加入鞣酸时,在外胚层细胞之间和外胚层下间隙存在精细的纤维状基质。这种物质类似于经同样固定的真实透明质酸盐,当固定剂中省略鞣酸或胚胎先前在卵内用透明质酸酶处理时则不存在。卵内用透明质酸酶处理后细胞间和外胚层下无细胞空间的相应减少支持了这样的假说,即背侧外胚层通过向形成中的细胞外空间提供透明质酸盐而发挥形态发生作用。有人提出,外胚层来源的透明质酸盐可能影响诸如生皮节和神经嵴等下方组织的形态发生。

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