Potentiating CAR-T bystander killing by enhanced Fas/FasL signaling mitigates antigen escape in heterogeneous tumors

  • bioRxiv. 2025 Sep 24:2025.09.22.677496. doi: 10.1101/2025.09.22.677496.
Matthew J Lin ,  Joanna K Chorazeczewski ,  Gvantsa Pantsulaia ,  Alan Cooper ,  Moah Sohn ,  Sidorela Reci ,  Jaime Mateus-Tique ,  Nicole H Hirsh ,  Xinping Xie ,  Ivan Odak ,  Rudra Dutta ,  Daniel Charytonowicz ,  Ranjan Upadhyay ,  Brian D Brown ,  Miriam Merad ,  Morgan Huse ,  Justin Kline ,  Joshua D Brody
Abstract

Antigen (Ag) escape is a frequent mechanism of relapse after CAR-T therapy, even though only ∼1% of leukemic and ∼0.1% of lymphoma cells are Ag⁻ at baseline. In this study, we modeled extreme Ag heterogeneity (>20%) to define how Fas/FasL-dependent bystander killing contributes to tumor clearance. Across patient cohorts, Fas expression predicted survival after CD19 CAR-T therapy, particularly in CD19-low disease. In both murine and human systems, Fas-dependent bystander killing required Ag stimulation and cell contact, operated within a defined therapeutic window, and could eradicate large fractions of Ag⁻ Tumors in vivo . Pharmacologic potentiation with inhibitor of Apoptosis protein antagonists or genetic stabilization of CAR-T membrane-bound FasL enhanced bystander killing but simultaneously induced CD4⁺ T cell fratricide, which was rescued by CAR-T Fas knockout. Importantly, Fas sensitization also enabled bispecific antibody-redirected T cells to mediate bystander killing in resistant Tumors. Finally, targeting tumor-associated Macrophages triggered Fas-dependent clearance of neighboring tumor cells. These findings establish Fas-mediated bystander killing as a generalizable and therapeutically actionable axis to prevent Ag escape and broaden the scope of targeted T cell therapies.

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