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蟾蜍蜕皮周期中表皮的结构。II. 对Bufo bufo (L.)的电子显微镜观察。

Structure of the toad epidermis during the moulting cycle. II. Electron microscopic observations on Bufo bufo (L.).

作者信息

Budtz P E, Larsen L O

出版信息

Cell Tissue Res. 1975 Jun 24;159(4):459-83. doi: 10.1007/BF00221703.

Abstract

Changes in the ultrastructure of the toad epidermis during the moulting cycle are described on the basis of 17 skin preparations fixed in consecutive phases of the cycle. Our previous light microscopical findings that morphological changes are mainly restricted to a short period prior to and after shedding are confirmed. Differentiation of zonulae occludentes in the new replacement layer after shedding is described and discussed in relation to the changes in ion permeability after the moult. Changes in appearance and distribution of filaments and of two different types of granules during the moulting cycle are described and discussed in relation to current views on amphibian keratinization; it is concluded that the initial phase of keratinization in the toad is very rapid and with a high degree of synchrony, whereas the laying-down of interfibrillar, central dense matrix in the new stratum corneum takes up to 24 hours and is less synchronous. The separation of the old stratum corneum from the replacement layer is gradual; it may be accomplished by rupture of "pillars" bearing the desmosomal complexes between stratum corneum and the replacement layer, or by breaking within the desmosomes themselves. Observed changes in granular content of the replacement layer are considered of no importance for this process, since the time sequence of discharge into the subcorneal space is not correlated with the initiation of separation. Other possible mechanisms of separation are discussed.

摘要

基于在蟾蜍蜕皮周期连续阶段固定的17份皮肤标本,描述了蟾蜍表皮在蜕皮周期中的超微结构变化。我们之前的光学显微镜研究结果得到证实,即形态学变化主要局限于蜕皮前后的短时期内。描述并讨论了蜕皮后新替代层中紧密连接的分化与蜕皮后离子通透性变化的关系。描述并讨论了蜕皮周期中细丝和两种不同类型颗粒的外观和分布变化与当前关于两栖类角质化观点的关系;得出的结论是,蟾蜍角质化的初始阶段非常迅速且高度同步,而新角质层中纤维间、中央致密基质的沉积需要长达24小时且同步性较差。旧角质层与替代层的分离是渐进的;它可能是通过承载角质层与替代层之间桥粒复合体的“支柱”破裂,或者通过桥粒自身内部的断裂来实现。替代层颗粒含量的观察变化被认为对这一过程不重要,因为向角膜下间隙释放的时间顺序与分离的开始无关。还讨论了其他可能的分离机制。

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