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Pre-treatment tumor neo-antigen responses in draining lymph nodes are infrequent but predict checkpoint blockade
Shaokang Ma1, Jonathan Chee1, Vanessa S Fear1
1National Centre for Asbestos Related Diseases, University of Western Australia, Nedlands, Australia.
Abstract:
Immune checkpoint blockade (ICPB) is a powerfully effective cancer therapy in some patients. Tumor neo-antigens are likely main targets for attack but it is not clear which and how many tumor mutations in individual cancers are actually antigenic, with or without ICPB therapy and their role as neo-antigen vaccines or as predictors of ICPB responses. To examine this, we interrogated the immune response to tumor neo-antigens in a murine model in which the tumor is induced by a natural human carcinogen (i.e. asbestos) and mimics its human counterpart (i.e. mesothelioma). We identified and screened 33 candidate neo-antigens, and found T cell responses against one candidate in tumor-bearing animals, mutant UQCRC2. Interestingly, we found a high degree of inter-animal variation in the magnitude of neo-antigen responses in otherwise identical mice. ICPB therapy with Cytotoxic T-lymphocyte-associated protein (CTLA-4) and α-glucocorticoid-induced TNFR family related gene (GITR) in doses that induced tumor regression, increased the magnitude of responses and unmasked functional T cell responses against another neo-antigen, UNC45a. Importantly, the magnitude of the pre-treatment draining lymph node (dLN) response to UNC45a closely corresponded to ICPB therapy outcomes. Surprisingly however, boosting pre-treatment UNC45a-specific T cell numbers did not improve response rates to ICPB. These observations suggest a novel biomarker approach to the clinical prediction of ICPB response and have important implications for the development of neo-antigen vaccines.
Insights
Immune checkpoint blockade (ICPB) therapy shows variable responses. This study identified specific neo-antigens in mesothelioma, suggesting a new biomarker for predicting ICPB effectiveness and developing neo-antigen vaccines.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Immune checkpoint blockade (ICPB) is an effective cancer therapy, but response variability exists.
- Tumor neo-antigens are potential targets, yet their precise role in ICPB therapy and as predictors remains unclear.
Purpose of the Study:
- To investigate tumor neo-antigen responses in a mesothelioma mouse model.
- To evaluate the impact of ICPB on neo-antigen responses and identify potential biomarkers for therapy prediction.
Main Methods:
- A murine mesothelioma model induced by asbestos was used.
- 33 candidate neo-antigens were screened, and T cell responses were analyzed before and after ICPB therapy (CTLA-4 and GITR).
Main Results:
- T cell responses were detected against mutant UQCRC2 in tumor-bearing mice.
- ICPB therapy enhanced T cell responses against UNC45a, with pre-treatment responses correlating with therapy outcomes.
- Boosting pre-existing UNC45a-specific T cells did not improve ICPB response rates.
Conclusions:
- Pre-treatment T cell responses to specific neo-antigens like UNC45a may serve as biomarkers for predicting ICPB therapy outcomes.
- Findings have implications for developing personalized neo-antigen vaccines and improving ICPB efficacy.
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