Poly(N‐methyl‐N‐vinylacetamide): A Strong Alternative to PEG for Lipid‐Based Nanocarriers Delivering siRNA

Author:

Berger Manon1ORCID,Toussaint François2,Ben Djemaa Sanaa3,Maquoi Erik4,Pendeville Hélène5,Evrard Brigitte1,Jerôme Christine2ORCID,Leblond Chain Jeanne6,Lechanteur Anna1,Mottet Denis3,Debuigne Antoine2ORCID,Piel Géraldine1ORCID

Affiliation:

1. Laboratory of Pharmaceutical Technology and Biopharmacy CIRM University of Liège Avenue Hippocrate 15 Liège 4000 Belgium

2. Center for Education and Research on Macromolecules CERM CESAM Research Unit University of Liège Allée du Six Août, 13 Liège 4000 Belgium

3. Gene Expression and Cancer Laboratory GEC GIGA‐Molecular Biology of Diseases University of Liège Avenue de l'Hôpital 11 Liège 4000 Belgium

4. Laboratory of Tumor and Development Biology GIGA‐Cancer University of Liège Avenue Hippocrate, 13 Liège 4000 Belgium

5. Platform Zebrafish Facility and Transgenics GIGA University of Liège Avenue de l'Hôpital 11 Liège 4000 Belgium

6. University of Bordeaux CNRS INSERM ARNA UMR 5320, U1212 146 rue Léo Saignat Bordeaux F‐33000 France

Abstract

AbstractLipid‐based nanocarriers have demonstrated high interest in delivering genetic material, exemplified by the success of Onpattro and COVID‐19 vaccines. While PEGylation imparts stealth properties, it hampers cellular uptake and endosomal escape, and may trigger adverse reactions like accelerated blood clearance (ABC) and hypersensitivity reactions (HSR). This work highlights the great potential of amphiphilic poly(N‐methyl‐N‐vinylacetamide) (PNMVA) derivatives as alternatives to lipid‐PEG for siRNA delivery. PNMVA compounds with different degrees of polymerization and hydrophobic segments, are synthesized. Among them, DSPE (1,2‐distearoyl‐sn‐glycero‐3‐phosphoethanolamine)‐PNMVA efficiently integrates into lipoplexes and LNP membranes and prevents protein corona formation around these lipid carriers, exhibiting stealth properties comparable to DSPE‐PEG. However, unlike DSPE‐PEG, DSPE‐PNMVA24 shows no adverse impact on lipoplexes cell uptake and endosomal escape. In in vivo study with mice, DSPE‐PNMVA24 lipoplexes demonstrate no liver accumulation, indicating good stealth properties, extended circulation time after a second dose, reduced immunological reaction, and no systemic pro‐inflammatory response. Safety of DSPE‐PNMVA24 is confirmed at the cellular level and in animal models of zebrafish and mice. Overall, DSPE‐PNMVA is an advantageous substitute to DSPE‐PEG for siRNA delivery, offering comparable stealth and toxicity properties while improving efficacy of the lipid‐based carriers by minimizing the dilemma effect and reducing immunological reactions, meaning no ABC or HSR effects.

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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