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Updated: May 24, 2026

Generation of CAR T Cells for Adoptive Therapy in the Context of Glioblastoma Standard of Care
Published on: February 16, 2015
Adoptive transfer with high-affinity TCR to treat human solid tumors: how to improve the feasibility?
F Jotereau1, N Gervois, N Labarrière
1INSERM, U892, Nantes, F-44007, France. jotereau@nantes.inserm.fr
Abstract:
The adoptive transfer of tumor antigen-specific T cells recently achieved clinical efficacy for a fraction of melanoma patients refractory to other therapies. Unfortunately, the application of this strategy to the remaining melanoma and most other cancer patients is hampered by the difficulty to generate high-affinity tumor-reactive T cells. Two strategies are currently developed to extend the feasibility of this therapeutic approach: clinical grade tool production for MHC-peptide multimer-driven sorting of antigen-specific T cells from the endogenous peripheral T cell repertoire and de novo engineering of the missing repertoire by genetic transfer of cloned specific T cell receptor (TCR) into T cells. The expected multiplication of adoptive transfer treatments, by these strategies, and their careful evaluation should enable the cure of a number of otherwise compromised cancer patients and to gain insight into the characteristics of transferred T cells best fitted to eradicate tumor cells, in terms of antigen specificities, phenotype, and functions. In particular, identification of tumor-rejection antigens by this approach would improve the design and efficacy of all immunotherapeutic approaches.
Insights
Generating high-affinity tumor-reactive T cells is key for effective adoptive T cell therapy in cancer. New methods aim to improve T cell receptor (TCR) engineering and sorting for broader patient application.
Area of Science:
- Immunology
- Oncology
- Cell Therapy
Background:
- Adoptive transfer of tumor antigen-specific T cells shows promise for melanoma.
- Generating high-affinity tumor-reactive T cells remains a significant challenge for wider application.
Purpose of the Study:
- To explore strategies for enhancing the generation of tumor-reactive T cells for adoptive immunotherapy.
- To improve the efficacy of T cell receptor (TCR) based cancer therapies.
Main Methods:
- Development of clinical-grade tools for MHC-peptide multimer-based sorting of T cells.
- Engineering T cells de novo through genetic transfer of cloned specific T cell receptors (TCRs).
Main Results:
- These strategies are expected to increase the number of patients eligible for adoptive T cell transfer.
- Evaluation will provide insights into optimal T cell characteristics for tumor eradication.
Conclusions:
- Improved methods for T cell generation and engineering hold potential to cure more cancer patients.
- Identification of tumor-rejection antigens will enhance the design of immunotherapies.

