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Activation of CAR and non-CAR T cells within the tumor microenvironment following CAR T cell therapy
Pei-Hsuan Chen, Mikel Lipschitz, Jason L. Weirather, Caron Jacobson, Philippe Armand, Kyle Wright, F. Stephen Hodi, Zachary J. Roberts, Stuart A. Sievers, John Rossi, Adrian Bot, William Go, Scott J. Rodig
Pei-Hsuan Chen, Mikel Lipschitz, Jason L. Weirather, Caron Jacobson, Philippe Armand, Kyle Wright, F. Stephen Hodi, Zachary J. Roberts, Stuart A. Sievers, John Rossi, Adrian Bot, William Go, Scott J. Rodig
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Research Article Oncology

Activation of CAR and non-CAR T cells within the tumor microenvironment following CAR T cell therapy

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Abstract

Mechanisms of chimeric antigen receptor (CAR) T cell–mediated antitumor immunity and toxicity remain poorly characterized because few studies examine the intact tumor microenvironment (TME) following CAR T cell infusion. Axicabtagene ciloleucel is an autologous anti-CD19 CAR T cell therapy approved for patients with large B cell lymphoma. We devised multiplex immunostaining and ISH assays to interrogate CAR T cells and other immune cell infiltrates in biopsies of diffuse large B cell lymphoma following axicabtagene ciloleucel infusion. We found that a majority of intratumoral CAR T cells expressed markers of T cell activation but, unexpectedly, constituted ≤5% of all T cells within the TME 5 days or more after therapy. Large numbers of T cells without CAR were also activated within the TME after axicabtagene ciloleucel infusion; these cells were positive for Ki-67, IFN-γ, granzyme B (GzmB), and/or PD-1 and were found at the highest levels in biopsies with CAR T cells. Additionally, non-CAR immune cells were the exclusive source of IL-6, a cytokine associated with cytokine release syndrome, and were found at their highest numbers in biopsies with CAR T cells. These data suggest that intratumoral CAR T cells are associated with non-CAR immune cell activation within the TME with both beneficial and pathological effects.

Authors

Pei-Hsuan Chen, Mikel Lipschitz, Jason L. Weirather, Caron Jacobson, Philippe Armand, Kyle Wright, F. Stephen Hodi, Zachary J. Roberts, Stuart A. Sievers, John Rossi, Adrian Bot, William Go, Scott J. Rodig

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Figure 5

IL6 expression by non-CAR cells within the DLBCL microenvironment after axicabtagene ciloleucel.

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IL6 expression by non-CAR cells within the DLBCL microenvironment after ...
(A) Representative duplex ISH staining with anti-CAR (brown) and anti-IL6 (red) probes and counterstained with hematoxylin (blue). (B) The number of days after axicabtagene ciloleucel infusion a biopsy was obtained and the percentage of cells expressing IL6 transcripts (case with IL6 expression in malignant cells excluded). Each dot represents the average number from 3 images per sample. (C) Percentage of IL6-expressing cells divided into cells that coexpress CAR transcript (CAR cells) or not (non-CAR cells) across all biopsies obtained after axicabtagene ciloleucel infusion (Post AC, n = 13) and showing that IL6 production is restricted to non-CAR cells. One-sided, one-sample t test against an expected mean of 0. **P < 0.01. (D) Percentage of non-CAR cells expressing IL6 across all biopsies after axicabtagene ciloleucel infusion (n = 13) and divided into those in which CAR cells were detected [CAR cells present, n = 5] or not detected [No CAR cells present, n = 8] in the TME. Two-sided Mann-Whitney U test. **P < 0.01. Original magnification, ×200 (A).

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