Enabling non-viral DNA delivery using lipid nanoparticles co-loaded with endogenous anti-inflammatory lipids

Author:

Patel Manthan N.ORCID,Tiwari Sachchidanand,Wang Yufei,O’Neill Sarah,Wu Jichuan,Omo-Lamai Serena,Espy Carolann,Chase Liam S.,Majumdar Aparajeeta,Hoffman Evan,Shah Anit,Sárközy András,Katzen Jeremy,Pardi Norbert,Brenner Jacob S.ORCID

Abstract

AbstractLipid nanoparticles (LNPs) have transformed genetic medicine, recently shown by their use in COVID-19 mRNA vaccines. While loading LNPs with mRNA has many uses, loading DNA would provide additional advantages such as long-term expression and availability of promoter sequences. However, here we show that plasmid DNA (pDNA) delivery via LNPs (pDNA-LNPs) induces acute inflammation in naïve mice which we find is primarily driven by the cGAS-STING pathway. Inspired by DNA viruses that inhibit this pathway for replication, we co-loaded endogenous lipids that inhibit STING into pDNA-LNPs. Specifically, loading nitro-oleic acid (NOA) into pDNA-LNPs (NOA-pDNA-LNPs) ameliorates serious inflammatory responsesin vivoenabling prolonged transgene expression (at least 1 month). Additionally, we demonstrate the ability to iteratively optimize NOA-pDNA-LNPs’ expression by performing a small LNP formulation screen, driving up expression 50-foldin vitro. Thus, NOA-pDNA-LNPs, and pDNA-LNPs co-loaded with other bioactive molecules, will provide a major new tool in the genetic medicine toolbox, leveraging the power of DNA’s long-term and promoter-controlled expression.

Publisher

Cold Spring Harbor Laboratory

Reference26 articles.

1. Lipid Nanoparticles-From Liposomes to mRNA Vaccine Delivery, a Landscape of Research Diversity and Advancement | ACS Nano. https://pubs.acs.org/doi/10.1021/acsnano.1c04996.

2. Lipid nanoparticles for mRNA delivery;Nat Rev Mater,2021

3. Expression kinetics of nucleoside-modified mRNA delivered in lipid nanoparticles to mice by various routes

4. Time course of gene expression after plasmid DNA gene transfer to the liver

5. Tet-On Systems For Doxycycline-inducible Gene Expression

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