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发育早期鸡卵黄囊内胚层细胞的物质运输

Transport across endodermal cells of the chick yolk sac during early stages of development.

作者信息

Mobbs I G, McMillan D B

出版信息

Am J Anat. 1981 Mar;160(3):285-308. doi: 10.1002/aja.1001600307.

Abstract

The endoderm of the chick yolk sac mediates the transfer of materials from the yolk mass to the embryonic circulation. There is little evidence of endocytotic activity in the area pellucida, but the endodermal cells of the area vasculosa possess many microvilli and bristle-coated pits and vesicles, as well as a canalicular system and vacuoles in the apical cytoplasm. Three tracers, horseradish peroxidase, ferritin, and latex spheres, were injected beneath the endoderm of both cultured embryos and embryos in ovo to study the pathway of uptake of extracellular materials. All tracers were sequestered in bristle-coated pits (200-500 nm in diameter) of the endodermal cells of the area vasculosa, but not those in the area pellucida. Both horseradish peroxidase and latex spheres (and probably ferritin) were incorporated into pleomorphic intracellular yolk drops through bristle-coated pits and vesicles, and then into apical vacuoles, which fuse with the intracellular yolk drops. Horseradish peroxidase and ferritin were also found within apical canaliculi. The apical junctions between endodermal cells prevented the intercellular passage of the tracers. A "topping-up" hypothesis is opposed whereby endodermal cells of the area vasculosa continually sequester extracellular yolk material, which is incorporated into a digesting intracellular yolk drop while, at the same time, digested yolk products are being transported across the vascular pole of the endoderm to the extraembryonic circulation and thence to the embryo.

摘要

鸡卵黄囊的内胚层介导物质从卵黄团向胚胎循环的转运。在明区几乎没有内吞活性的证据,但血管区的内胚层细胞有许多微绒毛、被毛小窝和小泡,以及顶端细胞质中的小管系统和液泡。将三种示踪剂,即辣根过氧化物酶、铁蛋白和乳胶球,注射到培养胚胎和卵内胚胎的内胚层下方,以研究细胞外物质的摄取途径。所有示踪剂都被隔离在血管区内胚层细胞的被毛小窝(直径200 - 500纳米)中,而明区的则没有。辣根过氧化物酶和乳胶球(可能还有铁蛋白)通过被毛小窝和小泡被整合到多形性细胞内卵黄滴中,然后进入顶端液泡,顶端液泡与细胞内卵黄滴融合。在顶端小管内也发现了辣根过氧化物酶和铁蛋白。内胚层细胞之间的顶端连接阻止了示踪剂在细胞间的通过。一种“补充”假说被反对,即血管区的内胚层细胞持续隔离细胞外卵黄物质,这些物质被整合到正在消化的细胞内卵黄滴中,与此同时,消化后的卵黄产物通过内胚层的血管极被转运到胚外循环,进而到达胚胎。

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