Orthogonal cytokine engineering enables novel synthetic effector states escaping canonical exhaustion in tumor-rejecting CD8+ T cells

正交细胞因子工程能够构建新型合成效应细胞状态,从而避免肿瘤排斥性CD8+ T细胞的经典耗竭。

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作者:Jesus Corria-Osorio ,Santiago J Carmona ,Evangelos Stefanidis ,Massimo Andreatta ,Yaquelin Ortiz-Miranda ,Tania Muller ,Ioanna A Rota ,Isaac Crespo ,Bili Seijo ,Wilson Castro ,Cristina Jimenez-Luna ,Leonardo Scarpellino ,Catherine Ronet ,Aodrenn Spill ,Evripidis Lanitis ,Pedro Romero ,Sanjiv A Luther ,Melita Irving ,George Coukos

Abstract

To date, no immunotherapy approaches have managed to fully overcome T-cell exhaustion, which remains a mandatory fate for chronically activated effector cells and a major therapeutic challenge. Understanding how to reprogram CD8+ tumor-infiltrating lymphocytes away from exhausted effector states remains an elusive goal. Our work provides evidence that orthogonal gene engineering of T cells to secrete an interleukin (IL)-2 variant binding the IL-2Rβγ receptor and the alarmin IL-33 reprogrammed adoptively transferred T cells to acquire a novel, synthetic effector state, which deviated from canonical exhaustion and displayed superior effector functions. These cells successfully overcame homeostatic barriers in the host and led-in the absence of lymphodepletion or exogenous cytokine support-to high levels of engraftment and tumor regression. Our work unlocks a new opportunity of rationally engineering synthetic CD8+ T-cell states endowed with the ability to avoid exhaustion and control advanced solid tumors.

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