滋养层
生物
胚胎
合胞滋养细胞
细胞滋养层
细胞生物学
胎儿
遗传学
怀孕
胎盘
作者
Yiming Wang,Hao Wu,Xiangxiang Jiang,Lei Jia,Meijiao Wang,Rong Yin,Shuo Chen,Yue Wang,Zhenyu Xiao,Xiaoyan Liang,Hongmei Wang
标识
DOI:10.3389/fcell.2022.836390
摘要
Upon implantation, the trophectoderm differentiates into the multi-nucleated primitive syncytiotrophoblast (pSTB) through a process called primary syncytialization to facilitate maternal-fetal interactions and to establish a pregnancy. However, ethical issues and limited access to human embryos around the time of embryo implantation hinder the investigation of the detailed molecular mechanisms underpinning this event in humans. Here we established human trophoblast stem cells (hTSCs) from human blastocysts. We characterized nuclear enlargement in STB differentiated from hTSCs, which recapitulate morphological nuclear features of pSTB in human embryos. Specifically, we revealed that CRISPR/Cas9-mediated LMNA disruption perturbated nuclear volume during hTSCs syncytialization. Overall, our results not only provide an interesting insight into mechanisms underlying nuclear enlargement during primary syncytialization but highlight the hTSCs as an indispensable model in understanding human trophoblast differentiation during implantation.
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