Oligo(ethylene glycol)-functionalized polycarbonate lipid nanoparticles for mRNA delivery with attenuated PEG immunogenicity.

Publication date: Jun 26, 2026

mRNA vaccines delivered by lipid nanoparticles (LNPs) have enabled clinical success in combating the COVID-19 pandemic, demonstrating LNPs as a promising nanocarrier for mRNA delivery. Despite this advance, use of PEGylated lipid (PEG-lipid) in LNPs has raised concerns about PEG-associated immunogenicity upon repeated dosing. Recent studies reported hydrophilic polymer lipids as replacement of PEG-lipid, which demonstrated the potential to reduce PEG-associated immune recognition. Most of these PEG-lipid alternatives are based on polymers with non-degradable polymer backbone. In this study, we synthesized a series of oligo(ethylene glycol)-functionalized polycarbonate lipids (OPL-1 to OPL-8) based on a polycarbonate backbone with reported biodegradability and biocompatibility to replace PEG-lipid such as ALC-0159 used in Comirnaty mRNA vaccine for attenuating PEG immunogenicity. Unlike ALC-0159 with 50 EG units existing in a linear form, oligo(ethylene glycol) (OEG) in OPLs is in a brush-like conformation. OEG length played a key role in formulating LNPs with desirable physicochemical properties. OPL-7 and OPL-8 with EG produced LNPs with nanosize, narrow size distribution, near-neutral surface charge and high encapsulation efficiency, comparable to ALC-0159 LNPs. OPL LNPs mediated significantly higher mRNA transfection efficiency in HEK293T and two model antigen-presenting cells (APCs) than ALC-0159 LNPs, which was associated with enhanced cellular uptake as evidenced by flow cytometry analysis. Inhibitor studies suggested that clathrin-mediated endocytosis was a major pathway for cellular uptake of LNPs, with caveolae-dependent endocytosis also contributing. A confocal microscopic study indicated comparable endosomal escape of OPL and ALC-0159 LNPs. In vivo and ex vivo bioimaging at 6 h post-administration demonstrated that OPL-7 and OPL-8 LNPs exhibited significantly reduced hepatic mRNA transfection and relatively higher lymph node mRNA transfection, resulting in significantly greater lymph node-to-liver mRNA transfection ratios. In a mouse vaccination study, OPL-7 and OPL-8 LNPs loaded with mRNA encoded for the spike glycoprotein of SARS-CoV-2 Delta variant elicited robust humoral immune responses without causing significant toxicity. Repeated dosing of OPL-7 or OPL-8 LNPs induced significantly lower anti-PEG IgM response than ALC-0159 LNPs. Moreover, OPL-7 or OPL-8 avoided recognition by pre-existing anti-PEG antibodies. Collectively, these findings identify OPL-7 and OPL-8 as promising PEG-lipid alternatives for mRNA delivery that maintain delivery performance while attenuating anti-PEG antibody responses.

Concepts Keywords
Bioimaging Lipid nanoparticles
Hepatic mRNA delivery
Mrna Oligo(ethylene glycol)
Nanoparticles PEG immunogenicity mitigation
Vaccination Polycarbonate

Semantics

Type Source Name
drug DRUGBANK Polyethylene glycol
drug DRUGBANK Spinosad
disease MESH COVID-19 pandemic
pathway REACTOME Clathrin-mediated endocytosis

Original Article

(Visited 2 times, 1 visits today)

Leave a Comment

Your email address will not be published. Required fields are marked *