Laboratory of Pharmaceutical Technology and Biopharmacy, CIRM, University of Liège, Avenue Hippocrate 15, Liège, 4000, Belgium.
Center for Education and Research on Macromolecules CERM, CESAM Research Unit, University of Liège, Allée du Six Août, 13, Liège, 4000, Belgium.
Adv Healthc Mater. 2024 Mar;13(8):e2302712. doi: 10.1002/adhm.202302712. Epub 2023 Nov 30.
Lipid-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-PNMVA shows no adverse impact on lipoplexes cell uptake and endosomal escape. In in vivo study with mice, DSPE-PNMVA 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-PNMVA 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.
基于脂质的纳米载体在递送遗传物质方面表现出了很高的兴趣,Onpattro 和 COVID-19 疫苗的成功就是例证。虽然聚乙二醇化(PEGylation)赋予了纳米载体隐形特性,但它会阻碍细胞摄取和内涵体逃逸,并可能引发诸如加速血液清除(ABC)和过敏反应(HSR)等不良反应。这项工作强调了两亲性聚(N-甲基-N-乙烯基乙酰胺)(PNMVA)衍生物作为脂质-PEG 的替代品在 siRNA 递送上的巨大潜力。合成了具有不同聚合度和疏水性片段的 PNMVA 化合物。其中,DSPE(1,2-二硬脂酰-sn-甘油-3-磷酸乙醇胺)-PNMVA 能够有效地整合到脂质体复合物和 LNPs 膜中,并防止这些脂质载体周围形成蛋白质冠,表现出与 DSPE-PEG 相当的隐形特性。然而,与 DSPE-PEG 不同的是,DSPE-PNMVA 对脂质体复合物的细胞摄取和内涵体逃逸没有不良影响。在小鼠的体内研究中,DSPE-PNMVA 脂质体复合物没有在肝脏中积累,表明具有良好的隐形特性,在第二次给药后延长了循环时间,减少了免疫反应,没有全身促炎反应。DSPE-PNMVA 的安全性在细胞水平和斑马鱼和小鼠的动物模型中得到了证实。总的来说,DSPE-PNMVA 是 siRNA 递送上替代 DSPE-PEG 的有利选择,具有相当的隐形和毒性特性,同时通过最小化困境效应和减少免疫反应来提高基于脂质的载体的疗效,意味着没有 ABC 或 HSR 效应。