Targeting Precision in Cancer Immunotherapy: Naturally-Occurring Antigen-Specific TCR Discovery with Single-Cell
Saleh Alrhmoun1,2, Marina Fisher1, Julia Lopatnikova1
1Laboratory of Molecular Immunology, Research Institute of Fundamental and Clinical Immunology, 630099 Novosibirsk, Russia.
Abstract:
Background: Adoptive cell therapy is the most promising approach for battling cancer, with T cell receptor-engineered T (TCR-T) cell therapy emerging as the most viable option for treating solid tumors. Current techniques for preparing TCR-T cell therapy provide a limited number of candidates TCRs, missing the comprehensive view of the repertoire, which may hinder the identification of the most effective TCRs. Methods: Dendritic cells were primed with immunogenic peptides of the antigen of interest to expand antigen-specific CD8 T lymphocytes from peripheral blood. Following that, the entire repertoire of naturally occurring antigen-specific TCRs was analyzed using single-cell RNA sequencing, alongside the assessment of the dominancy, transcriptome, and binding specificity of the obtained clonotypes, utilizing the TCRscape tool and ERGO-II neural network to identify the most effective candidate for TCR-T cell therapy development. Finally, TCR-T cells with the candidate TCR were obtained, followed by assessing their functionality and selectivity. Results: The developed protocol achieved a remarkable increase in the percentage of antigen-specific T cells by more than 200-fold, with more than 100 antigen-specific TCR clonotypes identified. The resulting TCR-T cells demonstrated high cytotoxicity and selectivity for the targeted antigen, indicating their potential to preferentially target tumor cells. Conclusions: This study offers a comprehensive approach for the discovery and analysis of not only few, but the entire repertoire of naturally occurring antigen-specific TCRs for TCR-T cell therapy development. Additionally, the proposed approach can be tailored to accommodate different types of antigens and MHC variants, making it a highly versatile tool for both research and clinical applications.
Insights
This study presents a new method to analyze the full range of T cell receptor (TCR) candidates for TCR-T cell therapy, significantly improving cancer treatment potential. The approach identifies highly effective TCRs for targeting solid tumors.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Adoptive cell therapy, particularly T cell receptor-engineered T (TCR-T) cell therapy, shows promise for solid tumors.
- Current TCR-T therapy development methods offer limited TCR candidates, potentially missing optimal targets.
Purpose of the Study:
- To develop a comprehensive method for identifying the entire repertoire of naturally occurring antigen-specific T cell receptors (TCRs).
- To discover and analyze TCRs for enhanced TCR-T cell therapy development against solid tumors.
Main Methods:
- Expanded antigen-specific CD8 T lymphocytes using dendritic cells primed with immunogenic peptides.
- Analyzed the full repertoire of antigen-specific TCRs via single-cell RNA sequencing, TCRscape, and ERGO-II neural network.
- Assessed functionality and selectivity of candidate TCR-T cells.
Main Results:
- Achieved over a 200-fold increase in antigen-specific T cells.
- Identified over 100 antigen-specific TCR clonotypes.
- Developed TCR-T cells demonstrated high cytotoxicity and selectivity against the target antigen.
Conclusions:
- The study provides a comprehensive approach for discovering and analyzing the complete repertoire of antigen-specific TCRs for TCR-T cell therapy.
- The method is versatile, adaptable to various antigens and MHC variants for research and clinical use.
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