TIGIT<sup>+</sup> iTregs elicited by human regulatory macrophages control T cell immunity.

Riquelme, Paloma; Haarer, Jan; Kammler, Anja; Walter, Lisa; Tomiuk, Stefan; Ahrens, Norbert; Wege, Anja K; Goecze, Ivan et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Human regulatory macrophages (Mreg) have shown early clinical promise as a cell-based adjunct immunosuppressive therapy in solid organ transplantation. It is hypothesised that recipient CD4<sup>+</sup> T cell responses are actively regulated through direct allorecognition of donor-derived Mregs. Here we show that human Mregs convert allogeneic CD4<sup>+</sup> T cells to IL-10-producing, TIGIT<sup>+</sup> FoxP3<sup>+</sup>-induced regulatory T cells that non-specifically suppress bystander T cells and inhibit dendritic cell maturation. Differentiation of Mreg-induced Tregs relies on multiple non-redundant mechanisms that are not exclusive to interaction of Mregs and T cells, including signals mediated by indoleamine 2,3-dioxygenase, TGF-β, retinoic acid, Notch and progestagen-associated endometrial protein. Preoperative administration of donor-derived Mregs to living-donor kidney transplant recipients results in an acute increase in circulating TIGIT<sup>+</sup> Tregs. These results suggest a feed-forward mechanism by which Mreg treatment promotes allograft acceptance through rapid induction of direct-pathway Tregs.

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