IL-4 drives exhaustion of CD8<sup>+</sup> CART cells.

Stewart, Carli M; Siegler, Elizabeth L; Sakemura, R Leo; Cox, Michelle J; Huynh, Truc; Kimball, Brooke; Mai, Long; Can, Ismail et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Durable response to chimeric antigen receptor T (CART) cell therapy remains limited in part due to CART cell exhaustion. Here, we investigate the regulation of CART cell exhaustion with three independent approaches including: a genome-wide CRISPR knockout screen using an in vitro model for exhaustion, RNA and ATAC sequencing on baseline and exhausted CART cells, and RNA and ATAC sequencing on pre-infusion CART cell products from responders and non-responders in the ZUMA-1 clinical trial. Each of these approaches identify interleukin (IL)-4 as a regulator of CART cell dysfunction. Further, IL-4-treated CD8<sup>+</sup> CART cells develop signs of exhaustion independently of the presence of CD4<sup>+</sup> CART cells. Conversely, IL-4 pathway editing or the combination of CART cells with an IL-4 monoclonal antibody improves antitumor efficacy and reduces signs of CART cell exhaustion in mantle cell lymphoma xenograft mouse models. Therefore, we identify both a role for IL-4 in inducing CART exhaustion and translatable approaches to improve CART cell therapy.

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