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Ravens, S.

Publications and source records attributed to Ravens, S..

2 recordsLinked to original sources

A fetal wave of human type-3 γδ T cells with restricted TCR diversity persists into adulthood

Accumulating evidence suggests that the human embryonic thymus produces distinct waves of innate effector {gamma}{delta} T cells. However, it is unclear whether this process comprises a dedicated subset of IL-17-producing {gamma}{delta} T ({gamma}{delta}T17) cells, like reported in mice. Here we present a novel protocol for high-throughput paired {gamma}{delta} TCR-sequencing, which in combination with single-cell RNA-sequencing revealed a high heterogeneity of effector {gamma}{delta} T cell clusters. While immature {gamma}{delta} T cell clusters displayed mixed and diverse TCR, effector cell types in neonatal and adult blood segregated according to {gamma}{delta}TCR usage. In adult samples, mature V{delta}1+ T cells segregated into exhausted PD-1hi and active PD-1low clusters. Among V{gamma}9V{delta}2+ T cell subsets, we identified distinct PLZF-positive effector {gamma}{delta} T cell clusters with innate type-1 and type-3 T cell signatures that were already detectable in a public dataset of early embryonic thymus organogenesis. Together, this suggests that functionally distinct waves of human innate effector {gamma}{delta} T cells including CCR6+ {gamma}{delta}T17 cells develop in the early fetal thymus and persist into adulthood.

immunology

Enhanced differentiation of functional human T cells in NSGW41 mice with tissue-specific expression of human interleukin-7.

Humanized mouse models have become increasingly valuable tools to study human hematopoiesis and infectious diseases. However, human T cell differentiation remains inefficient. We generated mice expressing human interleukin (IL-7), a critical growth and survival factor for T cells, under the control of murine IL-7 regulatory elements. After transfer of human cord blood-derived hematopoietic stem and progenitor cells, transgenic mice on the NSGW41 background, termed NSGW41hIL7, showed elevated and prolonged human cellularity in the thymus while maintaining physiological ratios of thymocyte subsets. As a consequence, numbers of functional human T cells in the periphery were increased without evidence for pathological lymphoproliferation or aberrant expansion of effector or memory-like T cells. We conclude that the novel NSGW41hIL7 strain represents an optimized mouse model for humanization to better understand human T cell differentiation in vivo and to generate a human immune system with a better approximation of human lymphocyte ratios.

immunology