Department of Human Embryology, School of Medicine, University of Santiago de Chile, Santiago, Chile.
Microsc Res Tech. 2010 Aug;73(8):803-9. doi: 10.1002/jemt.20823.
During the early human embryonic period nutrients and blood cells are temporarily provided by the extraembryonic yolk sac (YS). The YS before week six is involved not only in primitive but also in definitive erythropoiesis. While the destiny of primitive erythroid cells that fill the blood vessels of the YS is well known, the final destination of erythrocytes present in the endodermal vesicular system is unknown. In the present study we have investigated, step by step, the destiny of the erythrocytes present in the endodermal vesicles during the embryonic period. Twelve human YSs and their corresponding yolk stalks were analyzed between weeks 4 and 7 of embryonic age by light and scanning electron microscopy. It is shown that erythrocytes (according to their size and morphological features) located within the endodermal vesicles of the YS wall are pulled out through endodermal pits into the YS cavity, from where they reach the lumen of the primitive gut of the embryo through the vitelline duct, a temporary pathway communicating both compartments. During the study period no erythrocytes were seen within the embryo's vascular network where only primitive erythroblasts were identified. Our results indicate that the vitelline duct plays an important transient role as a pathway for the transport of nutrients and blood cells between the YS and the embryo before week five of embryonic development that ends just at the time when YS-embryo circulation becomes established.
在人类胚胎早期,营养物质和血细胞暂时由胚外卵黄囊 (YS) 提供。在第 6 周之前,YS 不仅参与原始红细胞生成,还参与定型红细胞生成。虽然填充 YS 血管的原始红细胞的命运众所周知,但存在于内胚层泡状系统中的红细胞的最终归宿尚不清楚。在本研究中,我们通过光镜和扫描电镜一步一步地研究了胚胎期内胚层泡状系统中红细胞的命运。在胚胎年龄的第 4 周到第 7 周期间,分析了 12 个人类 YS 及其相应的卵黄蒂。结果表明,YS 壁内胚层泡状系统中的红细胞(根据其大小和形态特征)通过内胚层陷窝被拉出到 YS 腔中,从那里通过卵黄管到达胚胎原始肠道的管腔,卵黄管是连通两个腔室的临时通道。在研究期间,胚胎的血管网络中没有发现红细胞,只有原始红细胞被鉴定出来。我们的研究结果表明,卵黄管在胚胎发育的第 5 周之前作为 YS 和胚胎之间营养物质和血细胞运输的临时途径发挥着重要作用,该途径在 YS-胚胎循环建立时结束。