Systemic immune activity occurs during human immune system maturation.

He, Shuai; Luo, Chun-Ling; Luo, Tao; Chen, Hai-Tian; Zhang, Shao-Feng; Jiang, Jia-Xin; Wang, Xiao-Yi; Ma, Dong et al. · Cell · 2025

basic_science · Level V

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Abstract

The second trimester of pregnancy is a pivotal stage in human immune system development. Utilizing single-cell RNA sequencing and T cell receptor sequencing, we profiled 2,868,420 immune cells from 321 samples across 23 organs, including adult tissues as comparators. We identify an extrathymic CD4<sup>+</sup> T cell subset mediating TOX2<sup>+</sup> precursor cells' transition to mature naive CD4<sup>+</sup> T cells. Contrary to the prevailing paradigm of fetal immune quiescence, we uncover widespread memory/activated T cells and tissue-resident memory clones shared across organs, indicating systemic immune activity beyond localized barrier defense. Cell-cell communication and functional assays indicate two tolerance mechanisms that suppress fetal T cell activation: ARG1<sup>+</sup> neutrophils and a PTGES3/PTGER4 signaling pathway. We also find that hematopoietic stem cells (HSCs) disperse across multiple organs and show that HSCs from non-canonical hematopoietic organs differentiate into diverse immune lineages. These findings provide insights into human immune system maturation and tolerance in fetuses and adults.

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