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Daehling, Sabrina; Mansilla, Ana Maria; Knoepper, Konrad; Grafen, Anika; Utzschneider, Daniel T.; Ugur, Milas; Whitney, Paul G.; Bachem, Annabell; Arampatzi, Panagiota; Imdahl, Fabian; Kaisho, Tsuneyasu; Zehn, Dietmar; Klauschen, Frederick; Garbi, Natalio; Kallies, Axel; Saliba, Antoine-Emmanuel; Gasteiger, Georg; Bedoui, Sammy und Kastenmueller, Wolfgang (2022): Type 1 conventional dendritic cells maintain and guide the differentiation of precursors of exhausted T cells in distinct cellular niches. In: Immunity, Bd. 55, Nr. 4: S. 656-670

Volltext auf 'Open Access LMU' nicht verfügbar.

Abstract

Reinvigoration of exhausted CD8(+) T (Tex) cells by checkpoint immunotherapy depends on the activation of precursors of exhausted T (Tpex) cells, but the local anatomical context of their maintenance, differentiation, and interplay with other cells is not well understood. Here, we identified transcriptionally distinct Tpex subpopulations, mapped their differentiation trajectories via transitory cellular states toward Tex cells, and localized these cell states to specific splenic niches. Conventional dendritic cells (cDCs) were critical for successful alpha PD-L1 therapy and were required to mediate viral control. cDC1s were dispensable for Tpex cell expansion but provided an essential niche to promote Tpex cell maintenance, preventing their overactivation and T-cell-mediated immunopathology. Mechanistically, cDC1s insulated Tpex cells via MHC-I-dependent interactions to prevent their activation within other inflammatory environments that further aggravated their exhaustion, Our findings reveal that cDC1s maintain and safeguard Tpex cells within distinct anatomical niches to balance viral control, exhaustion, and immunopathology.

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