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Splenic dendritic cell-targeting mRNA transfection of H-type ionizable lipid-based LNPs for enhancing tumor
Xin Chen1, Xiaoyu Li1, Yi Yan1
1Beijing Key Laboratory of Molecular Pharmaceutics and New Drug Delivery Systems, State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing, 100191, China.
Abstract:
Messenger RNA (mRNA) vaccine was emerging as a promising treatment for tumor immunotherapy. Highly efficient antigen-presenting ability in tumor immunotherapy through splenic dendritic cell (DC)-targeting mRNA delivery system was very important, but it remained a great challenge. In this study, a library of gemini-like ionizable lipid (termed H-type ionizable lipid, HIL) was synthesized and used for constructing mRNA-encapsulated nanoparticles (mRNA/HNPs) for in vivo mRNA delivery. Structure-activity relationship (SAR) analysis indicated that the spleen-targeting transfection efficiencies of mRNA were strongly correlated with the apparent pK a values of mRNA/HNPs after intravenous injection. After formulation screening, the optimized mRNA/HNPs based on H18 lipid (mRNA/H18NPs) with an average particle size of 124.4 ± 2.4 nm and a multilamellar concentric nanostructure were successfully prepared. Interestingly, without any ligand modification, the mOVA/H18NPs exhibited splenic DC-targeting mRNA transfection, and markedly increased the amounts of IFN-γ+ CD8+ T cells and effector memory CD8+ T cells. Furthermore, in vivo results demonstrated that mRNA/H18NPs encapsulating antigen-encoding mRNA including ovalbumin (OVA) or tyrosinase-related protein 2 (Trp2) effectively activated antigen-specific CD8+ T cells and resulted in significant antitumor efficacy in both B16-OVA or B16F10 tumor-bearing mouse models following intravenous administration. Especially, different from the mOVA/MC3-LNPs group, the mOVA/H18NPs exhibited complete inhibition of tumor progression when it used as preventative cancer vaccines in B16-OVA tumor-bearing mouse model. These findings highlighted that mRNA/H18NPs offer a promising splenic DC-targeting delivery system for mRNA vaccines.

