生物
胚胎干细胞
细胞生物学
肺
发育生物学
人口
祖细胞
器官发生
胚胎发生
间质细胞
转录组
解剖
干细胞
胚胎
基因
基因表达
遗传学
内科学
癌症研究
人口学
社会学
医学
作者
Shangtao Cao,Huijian Feng,Hongyan Yi,Mengjie Pan,Lihui Lin,Yao Santo Zhang,Ziyu Feng,Weifang Liang,Baomei Cai,Qi Li,Zhi Xiong,Qingmei Shen,Minjing Ke,Xing Zhao,Huilin Chen,Qina He,Mingwei Min,Quanyou Cai,He Liu,Jie Wang,Duanqing Pei,Jiekai Chen,Yanlin Ma
出处
期刊:Cell Research
[Springer Nature]
日期:2023-04-21
卷期号:33 (6): 421-433
被引量:26
标识
DOI:10.1038/s41422-023-00802-6
摘要
Abstract The lung is the primary respiratory organ in human, in which the proximal airway and the distal alveoli are responsible for air conduction and gas exchange, respectively. However, the regulation of proximal–distal patterning at the embryonic stage of human lung development is largely unknown. Here we investigated the early lung development of human embryos at weeks 4–8 post fertilization (Carnegie stages 12–21) using single-cell RNA sequencing, and obtained a transcriptomic atlas of 169,686 cells. We observed discernible gene expression patterns of proximal and distal epithelia at week 4, upon the initiation of lung organogenesis. Moreover, we identified novel transcriptional regulators of the patterning of proximal (e.g., THRB and EGR3) and distal (e.g., ETV1 and SOX6) epithelia. Further dissection revealed various stromal cell populations, including an early-embryonic BDNF + population, providing a proximal–distal patterning niche with spatial specificity. In addition, we elucidated the cell fate bifurcation and maturation of airway and vascular smooth muscle progenitor cells at the early stage of lung development. Together, our study expands the scope of human lung developmental biology at early embryonic stages. The discovery of intrinsic transcriptional regulators and novel niche providers deepens the understanding of epithelial proximal–distal patterning in human lung development, opening up new avenues for regenerative medicine.
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