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Isolation and Ex Vivo Culture of Vδ1+CD4+γδ T Cells, an Extrathymic αβT-cell Progenitor
Published on: December 7, 2015
Microbial exposure drives polyclonal expansion of innate γδ T cells immediately after birth
Sarina Ravens1,2, Alina S Fichtner3, Maike Willers4
1Institute of Immunology, Hannover Medical School, 30625 Hannover, Germany; ravens.sarina@mh-hannover.de.
Insights
Newborns’ immune systems adapt rapidly after birth. Researchers studied γδ T cell receptor development in infants, finding public clones expand early, while others respond to environmental factors.
Area of Science:
- Immunology
- Developmental Biology
- Genomics
Background:
- The early life immune system faces environmental exposures crucial for development.
- The emergence and adaptation of γδ T cells in neonates and children remain incompletely understood.
- T cell receptor (TCR) repertoire analysis offers insights into T cell subset adaptation.
Purpose of the Study:
- To investigate the shaping of neonatal γδ T cell receptor repertoires by microbial exposures post-birth.
- To analyze the adaptation of γδ T cell subsets in early life across different geographic populations.
Main Methods:
- Utilized next-generation sequencing (NGS) to analyze γ-chain (TRG) and δ-chain (TRD) repertoires.
- Monitored peripheral blood T cells from newborns, infants, and young children in Europe and sub-Saharan Africa.
- Characterized TCR sequence composition, junctional diversity, and gene segment usage.
Main Results:
- Identified shared public TRG and TRD sequences across all studied children.
- Observed rapid, TCR-driven proliferation of innate Vγ9Vδ2+ T cells within the first four weeks of life.
- Noted limited expansion of Vδ1+ and Vδ3+ γδ T cells, with potential environmental influence on their frequencies in African children.
Conclusions:
- Dynamic γδ T cell receptor repertoires develop immediately after birth.
- Innate Vγ9Vδ2+ T cells undergo early, polyclonal expansion.
- Distinct γδ T cell subsets exhibit differential expansion patterns influenced by early life environments.
Abstract:
Starting at birth, the immune system of newborns and children encounters and is influenced by environmental challenges. It is still not completely understood how γδ T cells emerge and adapt during early life. Studying the composition of T cell receptors (TCRs) using next-generation sequencing (NGS) in neonates, infants, and children can provide valuable insights into the adaptation of T cell subsets. To investigate how neonatal γδ T cell repertoires are shaped by microbial exposure after birth, we monitored the γ-chain (TRG) and δ-chain (TRD) repertoires of peripheral blood T cells in newborns, infants, and young children from Europe and sub-Saharan Africa. We identified a set of TRG and TRD sequences that were shared by all children from Europe and Africa. These were primarily public clones, characterized by simple rearrangements of Vγ9 and Vδ2 chains with low junctional diversity and usage of non-TRDJ1 gene segments, reminiscent of early ontogenetic subsets of γδ T cells. Further profiling revealed that these innate, public Vγ9Vδ2+ T cells underwent an immediate TCR-driven polyclonal proliferation within the first 4 wk of life. In contrast, γδ T cells using Vδ1+ and Vδ3+TRD rearrangements did not significantly expand after birth. However, different environmental cues may lead to the observed increase of Vδ1+ and Vδ3+TRD sequences in the majority of African children. In summary, we show how dynamic γδ TCR repertoires develop directly after birth and present important differences among γδ T cell subsets.
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