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Enhanced detection of neoantigen-reactive T cells targeting unique and shared oncogenes for personalized cancer
Rami Yossef1, Eric Tran1,2, Drew C Deniger1
1Surgery Branch, National Cancer Institute, NIH, Bethesda, Maryland, USA.
Abstract:
Adoptive cell transfer (ACT) of tumor-infiltrating lymphocytes (TILs) targeting neoantigens can mediate tumor regression in selected patients with metastatic epithelial cancer. However, effectively identifying and harnessing neoantigen-reactive T cells for patient treatment remains a challenge and it is unknown whether current methods to detect neoantigen-reactive T cells are missing potentially clinically relevant neoantigen reactivities. We thus investigated whether the detection of neoantigen-reactive TILs could be enhanced by enriching T cells that express PD-1 and/or T cell activation markers followed by microwell culturing to avoid overgrowth of nonreactive T cells. In 6 patients with metastatic epithelial cancer, this method led to the detection of CD4+ and CD8+ T cells targeting 18 and 1 neoantigens, respectively, compared with 6 and 2 neoantigens recognized by CD4+ and CD8+ T cells, respectively, when using our standard TIL fragment screening approach. In 2 patients, no recognition of mutated peptides was observed using our conventional screen, while our high-throughput approach led to the identification of 5 neoantigen-reactive T cell receptors (TCRs) against 5 different mutations from one patient and a highly potent MHC class II-restricted KRASG12V-reactive TCR from a second patient. In addition, in a metastatic tumor sample from a patient with serous ovarian cancer, we isolated 3 MHC class II-restricted TCRs targeting the TP53G245S hot-spot mutation. In conclusion, this approach provides a highly sensitive platform to isolate clinically relevant neoantigen-reactive T cells or their TCRs for cancer treatment.
Insights
This study enhances adoptive cell transfer (ACT) by improving the detection of neoantigen-reactive T cells. The new method identifies more T cell receptors (TCRs) targeting tumor mutations, offering a more sensitive approach for cancer treatment.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Adoptive cell transfer (ACT) using tumor-infiltrating lymphocytes (TILs) shows promise for metastatic epithelial cancers.
- Identifying neoantigen-reactive T cells for effective ACT remains a significant challenge.
- Current methods may miss clinically relevant neoantigen reactivities.
Purpose of the Study:
- To enhance the detection of neoantigen-reactive TILs for improved cancer immunotherapy.
- To investigate if enriching T cells expressing PD-1 and activation markers improves neoantigen identification.
- To assess a microwell culturing method to prevent overgrowth of nonreactive T cells.
Main Methods:
- Enrichment of TILs expressing PD-1 and/or T cell activation markers.
- Microwell culturing to isolate and expand neoantigen-reactive T cells.
- Screening of T cells and T cell receptors (TCRs) against mutated peptides in patients with metastatic epithelial cancer.
Main Results:
- The enhanced method detected more CD4+ and CD8+ T cell targets compared to the standard approach.
- Identified 5 neoantigen-reactive TCRs in one patient and a potent KRASG12V-reactive TCR in another, where the standard method failed.
- Isolated 3 TCRs targeting the TP53G245S mutation in a patient with serous ovarian cancer.
Conclusions:
- The developed approach offers a highly sensitive platform for isolating clinically relevant neoantigen-reactive T cells or their TCRs.
- This method has the potential to advance cancer treatment strategies utilizing ACT.
- Improved identification of neoantigen-specific T cells can lead to more effective immunotherapies.
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