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Updated: Jul 13, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Selecting highly affine and well-expressed TCRs for gene therapy of melanoma
Annelies Jorritsma1, Raquel Gomez-Eerland, Maarten Dokter
1Department of Immunology, the Netherlands Cancer Institute (NKI), Amsterdam, The Netherlands.
Abstract:
A recent phase 1 trial has demonstrated that the generation of tumor-reactive T lymphocytes by transfer of specific T-cell receptor (TCR) genes into autologous lymphocytes is feasible. However, compared with results obtained by infusion of tumor-infiltrating lymphocytes, the response rate observed in this first TCR gene therapy trial is low. One strategy that is likely to enhance the success rate of TCR gene therapy is the use of tumor-reactive TCRs with a higher capacity for tumor cell recognition. We therefore sought to develop standardized procedures for the selection of well-expressed, high-affinity, and safe human TCRs. Here we show that TCR surface expression can be improved by modification of TCR alpha and beta sequences and that such improvement has a marked effect on the in vivo function of TCR gene-modified T cells. From a panel of human, melanoma-reactive TCRs we subsequently selected the TCR with the highest affinity. Furthermore, a generally applicable assay was used to assess the lack of alloreactivity of this TCR against a large series of common human leukocyte antigen alleles. The procedures described in this study should be of general value for the selection of well- and stably expressed, high-affinity, and safe human TCRs for subsequent clinical testing.
Insights
Enhancing T-cell receptor (TCR) gene therapy involves selecting high-affinity TCRs for better tumor recognition. This study outlines methods to improve TCR expression and function for safer, more effective cancer treatments.
Area of Science:
- Immunology
- Oncology
- Gene Therapy
Background:
- T-cell receptor (TCR) gene therapy shows feasibility but has low response rates.
- Enhancing tumor cell recognition is key to improving TCR gene therapy success.
Purpose of the Study:
- To develop standardized procedures for selecting well-expressed, high-affinity, and safe human TCRs.
- To improve the in vivo function of TCR gene-modified T cells.
Main Methods:
- Modified TCR alpha and beta sequences to enhance surface expression.
- Selected the highest-affinity melanoma-reactive TCR from a panel.
- Assessed TCR alloreactivity against common human leukocyte antigen alleles.
Main Results:
- TCR surface expression and in vivo function were improved by sequence modification.
- Identified a high-affinity, non-alloreactive TCR for potential therapeutic use.
- Established a generalizable method for TCR selection.
Conclusions:
- Standardized procedures can yield well-expressed, high-affinity, and safe TCRs for clinical application.
- TCR sequence modification is a viable strategy to enhance gene therapy efficacy.
- This approach facilitates the selection of TCRs for future clinical trials.
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