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Updated: Aug 6, 2026

A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Developability engineering of scFvs enables robust CAR function under transient mRNA expression
Maurizio Mangolini1, Aubin Ramon2,3, Bingqian Li2
1Chimeris UK, The Works, Unity Campus, London Road, CB22 3EE, Cambridge, UK.
Engineering the quality of single-chain variable fragments (scFvs) is crucial for mRNA-delivered chimeric antigen receptor (CAR) T-cell therapies. Optimizing scFv biophysical properties enhances CAR expression and T-cell function, improving therapeutic potential.
Area of Science:
- Biotechnology
- Immunology
- Molecular Engineering
Background:
- Lipid nanoparticle (LNP) delivery of messenger RNA (mRNA) allows in vivo generation of chimeric antigen receptor (CAR)-T cells, bypassing viral vector limitations.
- Transient expression from mRNA necessitates high developability of CAR components, especially single-chain variable fragments (scFvs).
Purpose of the Study:
- To investigate how intrinsic biophysical quality of scFvs impacts CAR expression and function when delivered via mRNA.
- To engineer and assess scFv variants for improved developability in the context of mRNA-based CAR-T cell therapy.
Main Methods:
- Employed a humanization and optimization workflow using computational developability metrics.
- Engineered scFv variants from three antibody families (FMC63, 14G2a, MGA271) with varying stability and aggregation properties.
- Conducted functional testing in primary human T cells after mRNA-LNP delivery.
Main Results:
- Optimized scFvs demonstrated increased humanness, improved thermal stability, and reduced non-specific interactions, while maintaining antigen recognition.
- Functional outcomes strongly depended on the starting scFv quality; stable scFvs showed minimal change, while stabilizing aggregation-prone scFvs significantly boosted CAR expression and cytotoxic activity.
- Optimization of MGA271-derived binders reduced non-specific interactions and off-target killing, even with decreased monovalent affinity.
Conclusions:
- Developability engineering of scFvs is a critical factor for successful transient mRNA-encoded CAR therapies.
- Tailoring scFv biophysical properties can enhance CAR-T cell efficacy and safety for mRNA-based therapeutic approaches.
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