Ex vivo-expanded human CD19<sup>+</sup>TIM-1<sup>+</sup> regulatory B cells suppress immune responses in vivo and are dependent upon the TIM-1/STAT3 axis.

Shankar, S; Stolp, J; Juvet, S C; Beckett, J; Macklin, P S; Issa, F; Hester, J; Wood, K J · Nat Commun · 2022

basic_science · Level V

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Abstract

Regulatory B cells (Breg) are a heterogenous population with immune-modulating functions. The rarity of human IL-10<sup>+</sup> Breg makes translational studies difficult. Here we report ex vivo expansion of human B cells with in vivo regulatory function (expBreg). CD154-stimulation of human CD19<sup>+</sup> B cells drives >900-fold expansion of IL-10<sup>+</sup> B cells that is maintained in culture for 14 days. Whilst expBreg-mediated suppressive function is partially dependent on IL-10 expression, CRISPR-mediated gene deletions demonstrate predominant roles for TIM-1 and CD154. TIM-1 regulates STAT3 signalling and modulates downstream suppressive function. In a clinically relevant humanised mouse model of skin transplantation, expBreg prolongs human allograft survival. Meanwhile, CD19<sup>+</sup>CD73<sup>-</sup>CD25<sup>+</sup>CD71<sup>+</sup>TIM-1<sup>+</sup>CD154<sup>+</sup> Breg cells are enriched in the peripheral blood of human donors with cutaneous squamous cell carcinoma (SCC). TIM-1<sup>+</sup> and pSTAT3<sup>+</sup> B cells are also identified in B cell clusters within histological sections of human cutaneous SCC tumours. Our findings thus provide insights on Breg homoeostasis and present possible targets for Breg-related therapies.

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