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Updated: Jul 18, 2025

A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Ionizable Lipid Nanoparticles with Integrated Immune Checkpoint Inhibition for mRNA CAR T Cell Engineering
Alex G Hamilton1, Kelsey L Swingle1, Ryann A Joseph1
1Department of Bioengineering, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Abstract:
The programmed cell death protein 1 (PD-1) signaling pathway is a major source of dampened T cell activity in the tumor microenvironment. While clinical approaches to inhibiting the PD-1 pathway using antibody blockade have been broadly successful, these approaches lead to widespread PD-1 suppression, increasing the risk of autoimmune reactions. This study reports the development of an ionizable lipid nanoparticle (LNP) platform for simultaneous therapeutic gene expression and RNA interference (RNAi)-mediated transient gene knockdown in T cells. In developing this platform, interesting interactions are observed between the two RNA cargoes when co-encapsulated, leading to improved expression and knockdown characteristics compared to delivering either cargo alone. This messenger RNA (mRNA)/small interfering RNA (siRNA) co-delivery platform is adopted to deliver chimeric antigen receptor (CAR) mRNA and siRNA targeting PD-1 to primary human T cells ex vivo and strong CAR expression and PD-1 knockdown are observed without apparent changes to overall T cell activation state. This delivery platform shows great promise for transient immune gene modulation for a number of immunoengineering applications, including the development of improved cancer immunotherapies.
Insights
This study introduces a novel lipid nanoparticle platform for transiently modulating T cells. It co-delivers gene expression and knockdown tools, enhancing cancer immunotherapy potential by reducing autoimmune risks.
Area of Science:
- Immunology
- Biotechnology
- Molecular Biology
Background:
- Programmed cell death protein 1 (PD-1) signaling dampens T cell activity in tumors.
- Current PD-1 blockade antibodies risk autoimmune reactions due to widespread suppression.
Purpose of the Study:
- Develop an ionizable lipid nanoparticle (LNP) platform for simultaneous gene expression and transient gene knockdown in T cells.
- Investigate synergistic interactions between co-encapsulated RNA cargoes (mRNA and siRNA).
Main Methods:
- Co-encapsulation of messenger RNA (mRNA) for chimeric antigen receptor (CAR) and small interfering RNA (siRNA) targeting PD-1 within LNPs.
- Ex vivo delivery to primary human T cells.
Main Results:
- Observed improved expression and knockdown characteristics from co-delivered RNA cargoes.
- Achieved strong CAR expression and PD-1 knockdown in T cells.
- Maintained overall T cell activation state without apparent changes.
Conclusions:
- The mRNA/siRNA co-delivery LNP platform enables transient immune gene modulation.
- Shows promise for developing safer, improved cancer immunotherapies with reduced autoimmune side effects.

