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Updated: Aug 12, 2025

Tailoring In Vivo Cytotoxicity Assays to Study Immunodominance in Tumor-specific CD8+ T Cell Responses
Published on: May 6, 2019
Antigen-dependent IL-12 signaling in CAR T cells promotes regional to systemic disease targeting
Abstract:
Chimeric antigen receptor (CAR) T cell therapeutic responses are hampered by limited T cell trafficking, persistence, and durable anti-tumor activity in solid tumor microenvironments. However, these challenges can be largely overcome by relatively unconstrained synthetic engineering strategies, which are being harnessed to improve solid tumor CAR T cell therapies. Here, we describe fully optimized CAR T cells targeting tumor-associated glycoprotein-72 (TAG72) for the treatment of solid tumors, identifying the CD28 transmembrane domain upstream of the 4-1BB co-stimulatory domain as a driver of potent anti-tumor activity and IFNγ secretion. These findings have culminated into a phase 1 trial evaluating safety, feasibility, and bioactivity of TAG72-CAR T cells for the treatment of patients with advanced ovarian cancer ( NCT05225363 ). Preclinically, we found that CAR T cell-mediated IFNγ production facilitated by IL-12 signaling was required for tumor cell killing, which was recapitulated by expressing an optimized membrane-bound IL-12 (mbIL12) molecule on CAR T cells. Critically, mbIL12 cell surface expression and downstream signaling was induced and sustained only following CAR T cell activation. CAR T cells with mbIL12 demonstrated improved antigen-dependent T cell proliferation and potent cytotoxicity in recursive tumor cell killing assays in vitro and showed robust in vivo anti-tumor efficacy in human xenograft models of ovarian cancer peritoneal metastasis. Further, locoregional administration of TAG72-CAR T cells with antigen-dependent IL-12 signaling promoted durable anti-tumor responses against both regional and systemic disease in mice and was associated with improved systemic T cell persistence. Our study features a clinically-applicable strategy to improve the overall efficacy of locoregionally-delivered CAR T cells engineered with antigen-dependent immune-modulating cytokines in targeting both regional and systemic disease.
Insights
Engineered chimeric antigen receptor (CAR) T cells targeting TAG72 show enhanced anti-tumor activity in ovarian cancer. Combining CAR T cells with membrane-bound IL-12 improves persistence and efficacy in solid tumors.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- CAR T cell therapy faces challenges in solid tumors, including limited trafficking, persistence, and anti-tumor activity.
- Synthetic engineering offers strategies to overcome these limitations for improved CAR T cell efficacy.
Approach:
- Developed optimized CAR T cells targeting tumor-associated glycoprotein-72 (TAG72) for solid tumors.
- Identified CD28 transmembrane domain upstream of 4-1BB co-stimulatory domain for potent anti-tumor activity and IFNγ secretion.
- Engineered CAR T cells to express membrane-bound IL-12 (mbIL12) for enhanced anti-tumor responses.
Key Points:
- CAR T cell-mediated IFNγ production and IL-12 signaling are crucial for tumor cell killing.
- mbIL12 expression and signaling are induced upon CAR T cell activation.
- mbIL12 enhances CAR T cell proliferation, cytotoxicity, and in vivo anti-tumor efficacy in ovarian cancer models.
Conclusions:
- Optimized TAG72-CAR T cells with mbIL12 demonstrate potent and durable anti-tumor responses against regional and systemic disease.
- Locoregional administration of engineered CAR T cells with antigen-dependent IL-12 signaling improves systemic T cell persistence.
- This strategy enhances the efficacy of CAR T cells for treating solid tumors and metastatic disease.
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