神经形成
生物
神经管
原肠化
细胞生物学
胚胎
外胚层
神经板
胚泡
胚芽层
神经褶
胚胎培养
胚胎发生
胚胎干细胞
遗传学
解剖
诱导多能干细胞
基因
作者
Jinglei Zhai,Yan Xu,Haifeng Wang,Rui Yan,Jing Guo,Robin M. Skory,Yan Long,Xulun Wu,Fenyong Sun,Kevin G. Chen,Wentao Zhao,Kunyuan Yu,Wei Li,Fan Guo,Nicolas Plachta,Hongmei Wang
出处
期刊:Cell
[Elsevier]
日期:2023-05-01
卷期号:186 (10): 2078-2091.e18
被引量:16
标识
DOI:10.1016/j.cell.2023.04.019
摘要
Neural tube (NT) defects arise from abnormal neurulation and result in the most common birth defects worldwide. Yet, mechanisms of primate neurulation remain largely unknown due to prohibitions on human embryo research and limitations of available model systems. Here, we establish a three-dimensional (3D) prolonged in vitro culture (pIVC) system supporting cynomolgus monkey embryo development from 7 to 25 days post-fertilization. Through single-cell multi-omics analyses, we demonstrate that pIVC embryos form three germ layers, including primordial germ cells, and establish proper DNA methylation and chromatin accessibility through advanced gastrulation stages. In addition, pIVC embryo immunofluorescence confirms neural crest formation, NT closure, and neural progenitor regionalization. Finally, we demonstrate that the transcriptional profiles and morphogenetics of pIVC embryos resemble key features of similarly staged in vivo cynomolgus and human embryos. This work therefore describes a system to study non-human primate embryogenesis through advanced gastrulation and early neurulation.
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