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Updated: Oct 8, 2026

Mapping Infant Immunity with Minimal Input: Integrative Single-Cell and Multiomic Profiling
Published on: April 3, 2026
Single-cell transcriptomic reference map of human peripheral blood γδ T cells from 1 year to 90 years reveals major
Tao Yang1, Ximena León-Lara2, Vicente Almeida2
1Institute of Immunology, Hannover Medical School, Hannover, Germany; PREPARE Medical Scientist Program, Dean's Office for Academic Career Development, Hannover Medical School, Hannover, Germany; Cluster of Excellence RESIST (EXC 2155), Hannover Medical School, 30625 Hannover, Germany.
Abstract:
γδ T cells have an unconventional biology as they develop as functional cells in the thymus, to thereafter adapt to postnatal cues and persist into adulthood in peripheral blood. Single-cell transcriptomics enables investigation of underlying molecular programs of γδ T cell effector functions in health and disease. However, the effect of age is often underestimated, and control transcriptome datasets of young healthy individuals are rare. Here, we generate a cost-effective single-cell transcriptomic reference of peripheral blood γδ T cells (106,711 cells) from 223 individuals from 1 year to 90 years, with improved coverage of infancy, childhood, and adolescence. Our analysis reveals that the most pronounced compositional and transcriptional changes of γδ T cells occur before adulthood, followed by relative stabilization of major states across adulthood. Together, our study provides a resource of single-cell transcriptomes of healthy individuals to investigate human γδ T cells in various diseases in future studies.
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