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An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses
Published on: November 28, 2010
Single CAR-T cell treatment controls disseminated ovarian cancer in a syngeneic mouse model
Diana Rose E Ranoa1,2, Preeti Sharma3, Claire P Schane3
1Carl R. Woese Institute for Genomic Biology and Cancer Center at Illinois, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
Background:
Treatment of some blood cancers with T cells that express a chimeric antigen receptor (CAR) against CD19 have shown remarkable results. In contrast, CAR-T cell efficacy against solid tumors has been difficult to achieve.
Methods:
To examine the potential of CAR-T cell treatments against ovarian cancers, we used the mouse ovarian cancer cell line ID8 in an intraperitoneal model that exhibits disseminated solid tumors in female C57BL/6J mice. The CAR contained a single-chain Fv from antibody 237 which recognizes a Tn-glycopeptide-antigen expressed by ID8 due to aberrant O-linked glycosylation in the absence of the transferase-dependent chaperone Cosmc. The efficacy of four Tn-dependent CARs with varying affinity to Tn antigen, and each containing CD28/CD3ζ cytoplasmic domains, were compared in vitro and in vivo in this study.
Results:
In line with many observations about the impact of aberrant O-linked glycosylation, the ID8Cosmc knock-out (ID8Cosmc-KO) exhibited more rapid tumor progression compared with wild-type ID8. Despite the enhanced tumor growth in vivo, 237 CAR and a mutant with 30-fold higher affinity, but not CARs with lower affinity, controlled advanced ID8Cosmc-KO tumors. Tumor regression could be achieved with a single intravenous dose of the CARs, but intraperitoneal administration was even more effective. The CAR-T cells persisted over a period of months, allowing CAR-treated mice to delay tumor growth in a re-challenge setting. The most effective CARs exhibited the highest affinity for antigen. Antitumor effects observed in vivo were associated with increased numbers of T cells and macrophages, and higher levels of cleaved caspase-3, in the tumor microenvironment. Notably, the least therapeutically effective CAR mediated tonic signaling leading to antigen-independent cytokine expression and it had higher levels of the immunosuppressive cytokine interleukin10.
Conclusion:
The findings support the development of affinity-optimized CAR-T cells as a potential treatment for established ovarian cancer, with the most effective CARs mediating a distinct pattern of inflammatory cytokine release in vitro. Importantly, the most potent Tn-dependent CAR-T cells showed no evidence of toxicity in tumor-bearing mice in a syngeneic, immunocompetent system.
Insights
Chimeric antigen receptor (CAR)-T cell therapy shows promise for ovarian cancer. Higher affinity CAR-T cells targeting the Tn-glycopeptide antigen effectively controlled tumors and persisted long-term in mice without toxicity.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR)-T cell therapy has shown success in blood cancers but faces challenges in solid tumors.
- Ovarian cancer remains a significant challenge, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the efficacy of Tn-dependent CAR-T cells against ovarian cancer.
- To evaluate the impact of CAR affinity on therapeutic outcomes in a preclinical ovarian cancer model.
Main Methods:
- Utilized the ID8 mouse ovarian cancer cell line and an intraperitoneal tumor model.
- Developed and compared four Tn-dependent CAR-T cells with varying affinities to the Tn-glycopeptide antigen.
- Assessed CAR-T cell efficacy in vitro and in vivo, including tumor control, CAR-T cell persistence, and tumor microenvironment changes.
Main Results:
- Higher affinity Tn-dependent CAR-T cells, particularly the 237 CAR and a 30-fold higher affinity mutant, effectively controlled advanced ID8Cosmc-KO ovarian tumors.
- CAR-T cells persisted for months, enabling durable tumor control and delayed growth upon re-challenge.
- Antitumor effects correlated with increased T cells, macrophages, and cleaved caspase-3, while lower affinity CARs showed tonic signaling and immunosuppression.
Conclusions:
- Affinity-optimized Tn-dependent CAR-T cells represent a promising therapeutic strategy for established ovarian cancer.
- The most potent CAR-T cells demonstrated efficacy without observable toxicity in a syngeneic immunocompetent mouse model.
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