Jul 2026· Journal of Immunology· Vol 215· 0 citations
TL;DR
It is found that the majority of the placental T cells are maternal and that the fetal T cells are only naïve or unconventional T cells (γδT cell subsets and MAIT cells).
Abstract
Deciphering the cellular dynamics that sustain tolerance and placental function in health and disease is essential for better therapies. We built a maternal—fetal placental atlas to characterize common immune-mediated pregnancy complications.
We collected 69 placenta samples from patients with pregnancy complications including spontaneous preterm birth (n = 10), fetal growth restriction (n = 9), pre-term preeclampsia (n = 10), term preeclampsia (n = 8), type 1 diabetes (n = 10) and healthy controls (n = 21). We profiled samples via multi-modal10x Genomics single cell sequencing: gene expression, CITE-seq and paired T cell receptor, with spatial transcriptomics (Visium HD) in a subset for validation.
We profiled over 1.2 million placental cells, the largest atlas to date. We identified 114 cell populations, among them 15 T cell subsets. Using genetic demultiplexing we determined fetal or maternal origin of each cell. We found that the majority of the placental T cells are maternal and that the fetal T cells are only naïve or unconventional T cells (γδT cell subsets and MAIT cells). Using paired TCR-seq data we identified T cell clones and associated clonal expansions to specific T cell subsets.
This comprehensive atlas redefines the placental cellular landscape. Uncovering the different roles that the maternal and fetal T cells have in the cellular micro-environment is key for understanding mechanisms of placental dysregulation.
NIH/NIAID 1U19AI167899
Immune Mechanisms of Human Disease (HUM)
The placenta is a transient organ that orchestrates maternal-fetal interactions essential for healthy pregnancy, yet the multicellular principles governing placental dysfunction remain poorly understood. Here, we present a multimodal single-cell atlas of the human placenta, profiling over 1.2 million cells from 68 dono...
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BACKGROUND
Human pregnancy presents a unique physiological state that allows for growth of an antigenically dissimilar foetus. The immune system plays a key role in establishing and maintaining successful pregnancy, yet detailed understanding of immunological responses in pregnancy is lacking.
METHODS
We defined the...
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