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Updated: Aug 6, 2026

Protein Transfection of Mouse Lung
Published on: May 15, 2013
Pulmonary Delivery of Self-Amplifying RNA: Balancing Inflammation and Durable Transgene Expression
Qing Sun1, Xiaole Cui1, Haitao Li2
1Laboratory of Gene Therapy, Faculty of Veterinary Medicine, Ghent University, MerelbekeB-9820, Belgium.
Abstract:
Self-amplifying mRNA (saRNA) is emerging as a leading platform for both vaccination and gene therapy. However, saRNA and the lipid nanoparticles (LNPs) used for their delivery activate the innate immune system, which may complicate pulmonary delivery of saRNA-LNPs. In this study, we demonstrated that intratracheal administration of saRNA-LNPs can cause significant side effects that can be linked to innate immune cell recruitment and cytokine release in the lungs. However, through systematic optimization of the LNP formulation and the saRNA dose, we could restrict the inflammation in the lungs to an acceptable level. With these optimized saRNA-LNPs, high levels of transgene expression were achieved in the lungs of mice that lasted for at least 21 days. Moreover, intratracheal delivery of optimized saRNA-LNPs encoding SARS-CoV-2 nanobodies resulted in detectable nanobody levels in the lungs.
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