Postnatal development of the Sertoli cell barrier, tubular lumen, and cytoskeleton of Sertoli and myoid cells in the rat, and their relationship to tubular fluid secretion and flow.

L D Russell, A Bartke, J C Goh
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引用次数: 196

Abstract

The postnatal development of the Sertoli cell barrier, tubular lumen, fluid flow, and cytoskeletal elements in Sertoli and myoid cells was investigated in the Sprague-Dawley rat. With the aid of hypertonic fixatives, a barrier to the rapid entry of fluid was noted in the majority of tubules on the 15th and 16th postnatal (p.n.) days and was completely formed in all tubules prior to p.n. day 18. The actin forming the ectoplasmic specialization (ES), a cytoskeletal complex related to the occluding junctions composing the barrier, began its development during the period of initial barrier formation (16 p.n. day) and progressively attained its adult prominence. The ES developed its characteristic adult pattern and adult fluorescent intensity at about p.n. day 22. Some seminiferous tubules showed very small lumina as early as p.n. day 10. All tubules were not open until p.n. day 30. The size (diameter) of the lumen increased slowly from p.n. day 10 until p.n. day 30 when it started to increase rapidly until about p.n. day 50. Fluid flow in seminiferous tubules was detected as early as p.n. day 20 and increased in amount thereafter. Myoid cell actin filament bundles, running in parallel, were present at p.n. day 10. Actin formed a meshwork pattern characteristic of the adult on, or slightly prior to, p.n. day 22. These data indicate that there is a temporal relationship between the development of the actin cytoskeleton within the Sertoli cell and initial formation of the Sertoli cell barrier. Similarly, there is a temporal relationship between the development of the actin cytoskeleton of myoid cells and tubular fluid flow. The rapid increase in tubular lumen diameter, however, does not correlate with the initial development of Sertoli and myoid cytoskeletal elements.

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大鼠出生后支持细胞屏障、小管腔、支持细胞和肌样细胞骨架的发育及其与小管液分泌和流动的关系
研究了Sprague-Dawley大鼠支持细胞屏障、小管腔、液体流动和支持细胞和肌样细胞骨架元件的出生后发育。在高渗固定剂的帮助下,大多数小管在出生后第15和16天发现了液体快速进入的屏障,并在第18天之前在所有小管中完全形成。肌动蛋白形成外质特化(ES),一种与构成屏障的闭塞连接相关的细胞骨架复合体,在屏障形成初期(每天下午16点)开始发育,并逐渐达到其成体突出。在第22天下午1点左右形成了其特有的成虫模式和成虫荧光强度。有些精管早在第10天下午就显示出很小的管腔。所有小管直到第30天下午才打开。从第10天到第30天,管腔的大小(直径)缓慢增加,到第50天左右开始迅速增加。早在第20天就可以检测到精管内的液体流动,此后液体流动增加。第10天下午,肌样细胞肌动蛋白丝束平行运行。肌动蛋白在第22天(或稍早于第22天)形成成虫特有的网状结构。这些数据表明,肌动蛋白骨架在支持细胞内的发育与支持细胞屏障的初始形成之间存在一定的时间关系。同样,肌样细胞肌动蛋白骨架的发育与管状流体流动之间也存在时间关系。然而,管腔直径的快速增加与支持细胞和肌样细胞骨架元件的初始发育无关。
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