Low-dose IL-2 reduces IL-21<sup>+</sup> T cell frequency and induces anti-inflammatory gene expression in type 1 diabetes.

Zhang, Jia-Yuan; Hamey, Fiona; Trzupek, Dominik; Mickunas, Marius; Lee, Mercede; Godfrey, Leila; Yang, Jennie H M; Pekalski, Marcin L et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Despite early clinical successes, the mechanisms of action of low-dose interleukin-2 (LD-IL-2) immunotherapy remain only partly understood. Here we examine the effects of interval administration of low-dose recombinant IL-2 (iLD-IL-2) in type 1 diabetes using high-resolution single-cell multiomics and flow cytometry on longitudinally-collected peripheral blood samples. Our results confirm that iLD-IL-2 selectively expands thymic-derived FOXP3<sup>+</sup>HELIOS<sup>+</sup> regulatory T cells and CD56<sup>bright</sup> NK cells, and show that the treatment reduces the frequency of IL-21-producing CD4<sup>+</sup> T cells and of two innate-like mucosal-associated invariant T and V<sub>γ9</sub>V<sub>δ2</sub> CD8<sup>+</sup> T cell subsets. The cellular changes induced by iLD-IL-2 associate with an anti-inflammatory gene expression signature, which remains detectable in all T and NK cell subsets analysed one month after treatment. These findings warrant investigations into the potential longer-term clinical benefits of iLD-IL-2 in immunotherapy.

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