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绒毛膜的早期模式形成导致胎盘迷路中的三层滋养层细胞结构。

Early patterning of the chorion leads to the trilaminar trophoblast cell structure in the placental labyrinth.

作者信息

Simmons David G, Natale David R C, Begay Valerie, Hughes Martha, Leutz Achim, Cross James C

机构信息

Department of Comparative Biology and Experimental Medicine, Faculty of Veterinary Medicine, The University of Calgary, 3330 Hospital Drive NW, Calgary, AB, T2N 4N1, Canada.

出版信息

Development. 2008 Jun;135(12):2083-91. doi: 10.1242/dev.020099. Epub 2008 Apr 30.

Abstract

The labyrinth of the rodent placenta contains villi that are the site of nutrient exchange between mother and fetus. They are covered by three trophoblast cell types that separate the maternal blood sinusoids from fetal capillaries--a single mononuclear cell that is a subtype of trophoblast giant cell (sinusoidal or S-TGC) with endocrine function and two multinucleated syncytiotrophoblast layers, each resulting from cell-cell fusion, that function in nutrient transport. The developmental origins of these cell types have not previously been elucidated. We report here the discovery of cell-layer-restricted genes in the mid-gestation labyrinth (E12.5-14.5) including Ctsq in S-TGCs (also Hand1-positive), Syna in syncytiotrophoblast layer I (SynT-I), and Gcm1, Cebpa and Synb in syncytiotrophoblast layer II (SynT-II). These genes were also expressed in distinct layers in the chorion as early as E8.5, prior to villous formation. Specifically, Hand1 was expressed in apical cells lining maternal blood spaces (Ctsq is not expressed until E12.5), Syna in a layer immediately below, and Gcm1, Cebpa and Synb in basal cells in contact with the allantois. Cebpa and Synb were co-expressed with Gcm1 and were reduced in Gcm1 mutants. By contrast, Hand1 and Syna expression was unaltered in Gcm1 mutants, suggesting that Gcm1-positive cells are not required for the induction of the other chorion layers. These data indicate that the three differentiated trophoblast cell types in the labyrinth arise from distinct and autonomous precursors in the chorion that are patterned before morphogenesis begins.

摘要

啮齿动物胎盘的迷路包含绒毛,是母体与胎儿之间营养物质交换的场所。它们被三种滋养层细胞类型覆盖,这些细胞将母体血窦与胎儿毛细血管分隔开来——一种单核细胞,是具有内分泌功能的滋养层巨细胞(窦状或S-TGC)的亚型,以及两个多核合体滋养层,每个都是细胞间融合产生的,具有营养物质运输功能。这些细胞类型的发育起源此前尚未阐明。我们在此报告了在妊娠中期迷路(E12.5 - 14.5)中发现的细胞层特异性基因,包括S-TGCs中的Ctsq(也为Hand1阳性)、合体滋养层I(SynT-I)中的Syna,以及合体滋养层II(SynT-II)中的Gcm1、Cebpa和Synb。这些基因早在E8.5绒毛形成之前就在绒毛膜的不同层中表达。具体而言,Hand1在衬于母体血腔的顶端细胞中表达(Ctsq直到E12.5才表达),Syna在其下方的一层中表达,Gcm1、Cebpa和Synb在与尿囊接触的基底细胞中表达。Cebpa和Synb与Gcm1共表达,且在Gcm1突变体中减少。相比之下,Hand1和Syna的表达在Gcm1突变体中未改变,这表明诱导其他绒毛膜层不需要Gcm1阳性细胞。这些数据表明,迷路中三种分化的滋养层细胞类型源自绒毛膜中不同且自主的前体细胞,这些前体细胞在形态发生开始之前就已被模式化。

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