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卵泡平滑肌细胞在仓鼠排卵中的作用。

The role of follicular smooth muscle cells in hamster ovulation.

作者信息

Martin G G, Talbot P

出版信息

J Exp Zool. 1981 Jun;216(3):469-82. doi: 10.1002/jez.1402160316.

Abstract

The role of contractile cells in mammalian ovulation is uncertain. In this study, we examined the morphology and distribution of cells within the theca externa of hamster follicles at various times during ovulation. Cells with all the ultrastructural features of smooth muscle (SMC) were found only in the basal hemisphere of the follicle. In contrast, the theca externa in the top half of the follicle was composed of fibroblasts. We next examined living hamster follicles during in vitro ovulation for morphological evidence of follicular contraction. The following changes in follicle shape were observed: (1) The base of the follicle moved apically; (2) follicles, which were initially spherical, became taller and thinner; and (3) after rupture, the apical follicle wall collapsed onto the surface of the ovary. To analyze the cause of these changes, sections of fixed follicles were examined by light and electron microscopy. During the final minutes before rupture, a V-shaped constriction formed in the base of the follicle. This constriction continued to narrow and by the time of rupture, it obliterated the basal part of the antrum. We concluded that the apical movement of the base of the follicle seen in living ovaries corresponds to the formation of the basal constriction seen in fixed sections. To determine if follicular SMC were involved in formation of the constriction, the ultrastructure of SMC was examined before, during, and after the constriction formed. The morphology of the SMC changed from the characteristic of relaxed or stretched SMC to that of contracted SMC when the constriction began to form. No other type of cell in the follicle wall showed these changes in morphology. We conclude that the formation of this constriction, and possibly the increase in height of preovulatory follicles and the collapse of the follicle wall after rupture, are due to contraction of SMC in the theca externa in the basal hemisphere of the follicle. This is the first morphological demonstration that follicular SMC contract prior to rupture of the follicle. The significance of these observations in mammalian ovulation is discussed.

摘要

收缩细胞在哺乳动物排卵过程中的作用尚不确定。在本研究中,我们在排卵过程中的不同时间点检查了仓鼠卵泡外膜内细胞的形态和分布。具有平滑肌(SMC)所有超微结构特征的细胞仅在卵泡的基底部半球中发现。相比之下,卵泡上半部分的外膜由成纤维细胞组成。接下来,我们在体外排卵过程中检查了活的仓鼠卵泡,以寻找卵泡收缩的形态学证据。观察到卵泡形状有以下变化:(1)卵泡底部向顶端移动;(2)最初呈球形的卵泡变得更高更瘦;(3)破裂后,卵泡顶端壁塌陷到卵巢表面。为了分析这些变化的原因,通过光学显微镜和电子显微镜检查了固定卵泡的切片。在破裂前的最后几分钟,卵泡底部形成了一个V形收缩。这个收缩持续变窄,到破裂时,它使卵泡腔的底部消失。我们得出结论,在活卵巢中观察到的卵泡底部顶端移动与在固定切片中看到的底部收缩的形成相对应。为了确定卵泡SMC是否参与收缩的形成,在收缩形成之前、期间和之后检查了SMC的超微结构。当收缩开始形成时,SMC的形态从松弛或伸展的SMC特征转变为收缩的SMC特征。卵泡壁中没有其他类型的细胞显示出这些形态变化。我们得出结论,这种收缩的形成,以及可能排卵前卵泡高度的增加和破裂后卵泡壁的塌陷,是由于卵泡基底部半球外膜中SMC的收缩。这是首次从形态学上证明卵泡SMC在卵泡破裂前收缩。讨论了这些观察结果在哺乳动物排卵中的意义。

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