小袋鼠(Macropus eugenii)出生时妊娠和非妊娠子宫的组织形态学比较:对胚胎-母体界面的见解。

IF 2.1
Marie K Muenzenberger, Karl Klisch, Brandon R Menzies, Juliane Rieger, Sabine Kaessmeyer, Barbara Drews
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引用次数: 0

摘要

小袋鼠的妊娠期很短,不超过发情周期的长度。胚胎和母亲之间的直接接触是在妊娠的最后三分之一通过一个短暂的卵黄囊胎盘建立的。因此,需要一个有效的胚母界面来确保胚胎的快速生长。然而,有袋动物出生时胎盘的形态并没有很好地描述。目的研究胚胎-母体界面形态,比较妊娠子宫和非妊娠子宫在出生时的差异,并检测多倍体滋养细胞的存在。方法采用显微光镜对子宫进行组织形态学分析。使用人工智能机器学习定量CD31染色样本的子宫内膜血管形成。用Feulgen图像分析密度法估计巨滋养细胞细胞核的DNA含量。在妊娠子宫内膜的组织学切片中,血管占据了比非妊娠子宫内膜更多的组织面积,上皮下毛细血管占妊娠子宫内膜血管面积的四分之一。由于缠绕褶皱,妊娠子宫的表面积增加了2.75倍。巨滋养细胞的多倍体性得到证实。巨滋养细胞有退化迹象。结论妊娠子宫的适应性和滋养细胞的多倍性保证了胎母交换的充分进行。然而,它们似乎是自我限制的。在母胎细胞和胎儿细胞之间短暂的相互作用中,袋鼠的滋养细胞和子宫内膜的形态学优化了胚胎的快速生长,但胎盘似乎不能在指定的预产期后持续存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histomorphometric comparison of the gravid and non-gravid uterus at the time of birth in the tammar wallaby (Macropus eugenii): insights into the embryo-maternal interface.

Context Tammar wallabies have a very short gestation which does not exceed the length of the estrus cycle. Direct contact between embryo and mother is established via a short-lived yolk sac placenta only in the last third of gestation. Therefore, an efficient embryo-maternal interface is required to ensure rapid embryonic growth. However, the morphology of the placenta at the time of birth is not well described in marsupials. Aims To study the morphology of the embryo-maternal interface, to compare the gravid and the non-gravid uterus at the time of birth and to examine the presence of polyploid trophoblast cells. Methods Histomorphometrical analysis of the uteri from light microscopic images. Quantification of the endometrial vascularization in samples stained with CD31 using AI machine learning. DNA content estimations of the giant trophoblast cell nuclei by Feulgen Image Analysis Densitometry. Key results In histological sections of the gravid endometrium, more tissue area was occupied by blood vessels than in the non-gravid endometrium, with subepithelial capillaries making up one-fourth of the vessel area in the gravid endometrium. The gravid uterus exhibited a 2.75-fold increase in surface area due to winding folds. Polyploidy of the giant trophoblast cells was confirmed. Giant trophoblast cells showed signs of degeneration. Conclusions The adaptations of the gravid uterus and the polyploidy of the trophoblast cells ensure sufficient embryo-maternal exchange. However, they seem to be self-limiting. Implications Morphology of the tammar wallaby trophoblast and endometrium prior birth is optimized for rapid embryonic growth during the brief interaction between maternal and fetal cells but the placenta seemingly cannot persist after the designated due time.

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