bioRxiv · 10.1101/2025.01.21.630650
Revisiting the need for mRNA nucleoside modification in CAR T cell engineering
Abstract
mRNA-based chimeric antigen receptor (CAR)-T cells offer the promise of enhanced safety and simplified manufacturing. However, in vitro-transcribed (IVT) mRNA is known to trigger antiviral immune responses, inflammatory signaling, and apoptosis in transfected cells. To address these challenges and enable efficient IVT-mRNA expression, modified nucleosides, such as N1-methyl-pseudouridine (m1{Psi}), have become the gold standard for CAR-T cell production, albeit at increased cost. In this study, immune responses to IVT-mRNA were evaluated across five primary human cell types, including T-cells. Unexpectedly, T-cells, unlike other immune and non-immune cell types tested, exhibited no immune activation in response to unmodified mRNA. T-cell viability and cytokine secretion patterns remained unaffected, regardless of whether unmodified mRNA was delivered via lipid nanoparticles (LNPs) or electroporation. Furthermore, CAR expression levels in T-cells were not influenced by mRNA modification with m1{Psi} or 5-methoxy-uridine (5moU) nucleosides. The absence of nucleoside modifications did not compromise CAR-T cell cytotoxic potency, demonstrating that such modifications are not required for producing functional CAR-T cells. These findings eliminate the need for nucleoside modification in T-cell mRNA, simplifying and reducing the cost of CAR-T cell manufacturing while positioning IVT-mRNA as a highly efficient and minimally invasive tool for CAR-T cell engineering.
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Kahwaji, N., Kotzian, N., Prinz, J. M., Pu, Y., Kath, J., Picht, S., Hiller, A. L., Dunne, C. M., Launspach, M., Kleyer, A., Simon, D. N., Wagner, D. L., Pichon, C., Kroenke, G., Schmueck-Henneresse, M., Volk, H.-D., Gossen, M., Drzeniek, N. M.. 2025-01-21. Revisiting the need for mRNA nucleoside modification in CAR T cell engineering. https://doi.org/10.1101/2025.01.21.630650
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