大鼠内脏卵黄囊吸收面随胎龄增加的变化。

Scanning electron microscopy Pub Date : 1986-01-01
W P Jollie
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摘要

在妊娠12、17和22天(通常在第23天出生)三个阶段,用扫描电镜观察了大鼠内脏卵黄囊内胚层上皮衬里的游离表面。此外,对长期锇固定的组织进行超声振动,去除上皮,类似地检查这种微解剖膜。随着胎龄的增加,上皮自由表面的吸收面积通过三种机制相对增加:内脏卵黄囊作为一个整体形成越来越复杂的绒毛突起,单个上皮细胞形成穹顶,每个细胞的微绒毛长度和数量增加。然而,由此产生的表面积增加与受体介导的内吞作用在最晚阶段的发生无关。对固定良好的组织,超声检查容易显示卵黄囊内层上皮下的基底膜;12天时最脆弱,此时手术显然是切除了基底膜的透明层,暴露了致密层的纤维成分,或者切除了基底膜的整个基底层成分,暴露了下层的网状层。第17天,剥落绒毛核心的基膜显示上皮细胞的阴性印迹;在第22天,当膜已知可以渗透到蛋白质转移时,它是光滑的,没有特征,并且看起来最耐用。
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Changes in absorptive surfaces of rat visceral yolk sac with increasing gestational age.

The free surface of the endodermal epithelial lining of the rat visceral yolk sac was examined by scanning electron microscopy at three stages of pregnancy, viz., 12, 17 and 22 days (birth typically occurring on the 23rd day). Additionally, by ultrasonic vibration of tissues that had been subjected to prolonged osmium fixation, the epithelium was removed and such microdissected membranes similarly were examined. With increasing gestational age the free surface of the epithelium underwent a relative increase in absorptive area by three mechanisms: formation of increasingly complex villous projections of the visceral yolk sac as a whole, a doming of the individual epithelial cells, and an increase in length and number of microvilli for each such cell. The resultant increase in surface area, however, could not be correlated with the onset of receptor mediated endocytosis at the latest stage. The basement membrane underlying the lining epithelium of the yolk sac easily was revealed by ultrasonication of well-fixed tissues; it was most fragile at 12 days at which time the procedure apparently either removed the lamina lucida of the basal lamina, exposing a fibrillar component of the lamina densa, or removed the entire basal laminar component of the basement membrane, exposing an underlying reticular lamina. At 17 days the basement membrane at the cores of denuded villi showed the negative impressions of the epithelial cells that had been removed; and at 22 days, when the membrane is known to be permeable to protein transfer, it was smooth, featureless, and appeared most durable.

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