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鼩鼱卵黄囊胎盘的环状血肿。

The annular hematoma of the shrew yolk-sac placenta.

作者信息

King B F, Enders A C, Wimsatt W A

出版信息

Am J Anat. 1978 May;152(1):45-57. doi: 10.1002/aja.1001520105.

Abstract

The annular hematoma of the shrew, Blarina brevicauda, is a specialized portion of the yolk-sac wall. In this study, we have examined the fine structure of the different cellular components of the anular hematoma. Small pieces of the gestation sacs from seven pregnant shrews were fixed in glutaraldehyde and osmium tetroxide and processed for transmission electron microscopy. In the area of the trophoblastic curtain, the maternal capillary endothelial cells were hypertrophied and syncytial trophoblast surrounded the capillaries. Cellular trophoblast covered part of the luminal surface of the curtain region, whereas masses of apparently degenerating syncytium were present on other areas of the surface. Maternal erythrocytes, released into the uterine lumen from the curtain region, were phagocytized and degraded by the columnar cells of the trophoblastic annulus. No evidence of iron or pigment accumulation was evident in the parietal endodermal cells underlying the annular trophoblast. Parietal endodermal cells were characterized by cuboidal shape, widely dilated intercellular spaces, and cytoplasm containing granular endoplasmic reticulum. Endodermal cells of the visceral yolk-sac accumulated large numbers of electron-dense granules as well as glycogen in their cytoplasm. Hemopoietic areas and vitelline capillaries were found subjacent to the visceral endoderm. The various portions of the yolk-sac wall of Blarina appear to perform complementary functions which are probably important in maternal-fetal iron transfer.

摘要

短尾鼩鼱的环状血肿是卵黄囊壁的一个特殊部分。在本研究中,我们检查了环状血肿不同细胞成分的精细结构。从7只怀孕的短尾鼩鼱的妊娠囊中取出小块组织,用戊二醛和四氧化锇固定,然后进行透射电子显微镜处理。在滋养层帘区域,母体毛细血管内皮细胞肥大,合体滋养层围绕着毛细血管。细胞滋养层覆盖了帘区域管腔表面的一部分,而在表面的其他区域则存在大量明显退化的合体细胞。从帘区域释放到子宫腔中的母体红细胞被滋养层环的柱状细胞吞噬和降解。在环状滋养层下方的壁内胚层细胞中没有明显的铁或色素积累迹象。壁内胚层细胞的特征是呈立方形,细胞间隙广泛扩张,细胞质中含有颗粒状内质网。脏层卵黄囊的内胚层细胞在其细胞质中积累了大量电子致密颗粒以及糖原。在内脏内胚层下方发现了造血区域和卵黄毛细血管。短尾鼩鼱卵黄囊壁的各个部分似乎执行着互补的功能,这可能在母胎铁转运中很重要。

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