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BRAF and MEK Inhibitors Influence the Function of Reprogrammed T Cells: Consequences for Adoptive T-Cell Therapy
Jan Dörrie1, Lek Babalija2,3, Stefanie Hoyer4
1Department of Dermatology, Universitätsklinikum Erlangen and Faculty of Medicine, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), 91052 Erlangen, Germany. jan.doerrie@uk-erlangen.de.
Abstract:
BRAF and MEK inhibitors (BRAFi/MEKi), the standard treatment for patients with BRAFV600 mutated melanoma, are currently explored in combination with various immunotherapies, notably checkpoint inhibitors and adoptive transfer of receptor-transfected T cells. Since two BRAFi/MEKi combinations with similar efficacy are approved, potential differences in their effects on immune cells would enable a rational choice for triple therapies. Therefore, we characterized the influence of the clinically approved BRAFi/MEKi combinations dabrafenib (Dabra) and trametinib (Tram) vs. vemurafenib (Vem) and cobimetinib (Cobi) on the activation and functionality of chimeric antigen receptor (CAR)-transfected T cells. We co-cultured CAR-transfected CD8⁺ T cells and target cells with clinically relevant concentrations of the inhibitors and determined the antigen-induced cytokine secretion. All BRAFi/MEKi reduced this release as single agents, with Dabra having the mildest inhibitory effect, and Dabra + Tram having a clearly milder inhibitory effect than Vem + Cobi. A similar picture was observed for the upregulation of the activation markers CD25 and CD69 on CAR-transfected T cells after antigen-specific stimulation. Most importantly, the cytolytic capacity of the CAR-T cells was significantly inhibited by Cobi and Vem + Cobi, whereas the other kinase inhibitors showed no effect. Therefore, the combination Dabra + Tram would be more suitable for combining with T-cell-based immunotherapy than Vem + Cobi.
Insights
Dabrafenib and trametinib (Dabra + Tram) combination therapy shows milder inhibition of chimeric antigen receptor (CAR)-T cell function compared to vemurafenib and cobimetinib (Vem + Cobi). This suggests Dabra + Tram is more suitable for triple immunotherapies in BRAF-mutated melanoma.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- BRAF and MEK inhibitors (BRAFi/MEKi) are standard melanoma treatments.
- Combinations of BRAFi/MEKi with immunotherapies are under investigation.
- Two BRAFi/MEKi combinations exist with similar efficacy.
Purpose of the Study:
- To compare the effects of two BRAFi/MEKi combinations on chimeric antigen receptor (CAR)-T cell activation and function.
- To guide the selection of optimal BRAFi/MEKi for triple therapy with immunotherapies.
Main Methods:
- Co-culture of CAR-transfected CD8+ T cells with target cells and BRAFi/MEKi.
- Measurement of antigen-induced cytokine secretion.
- Assessment of T cell activation markers (CD25, CD69) and cytolytic capacity.
Main Results:
- All BRAFi/MEKi reduced cytokine secretion; Dabra + Tram showed milder inhibition than Vem + Cobi.
- Dabra + Tram also demonstrated milder effects on T cell activation markers.
- Vem + Cobi significantly inhibited CAR-T cell cytolytic capacity, unlike other inhibitors.
Conclusions:
- Dabra + Tram is potentially more suitable for combination with T-cell-based immunotherapy than Vem + Cobi.
- Kinase inhibitor choice impacts CAR-T cell functionality, crucial for optimizing combination therapies.
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