State Key Laboratory of Urban Water Resource and Environment, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Biomater Sci. 2024 Oct 22;12(21):5573-5581. doi: 10.1039/d4bm00523f.
Ionizable lipid nanoparticles have demonstrated remarkable success as mRNA vaccine carriers and represent one of the most promising gene drug delivery vehicles. However, polyethylene glycol (PEG), one of the major components, can cause immunogenic reactions, anaphylaxis and increased blood clearance, leading to toxic side effects and reduced efficacy. In this study, we utilize polysorbate 80 (PS80) as a PEG alternative in formulating eGFP mRNA-loaded ionizable lipid nanoparticles (PS80-iLNPs), aiming to enhance stealth properties, uptake efficiency, and biosafety. Our findings revealed that PS80-iLNPs enhanced the stealthiness and resistance to serum interference. Compared to PEG-containing ionizable lipid nanoparticles (PEG-iLNPs), PS80-iLNPs showed a 1.14-fold increase in stealthiness. Moreover, at a total lipid concentration of 50 μg mL, PS80-iLNPs exhibited 1.12 times higher cell viability compared to PEG-iLNPs. Notably, under serum interference, PEG-iLNPs showed a 44.97% uptake reduction, whereas PS80-iLNPs exhibited a modest 30.55% decrease, underscoring its superior serum resistance. This work demonstrated that PS80 could serve as a suitable substitute for PEG, thus signifying an excellent basis for the development of PEG-free ionizable lipid nanoparticles.
可离子化脂质纳米粒已被证明是 mRNA 疫苗载体的成功范例,是最有前途的基因药物递送载体之一。然而,聚乙二醇(PEG)作为主要成分之一,可能会引起免疫反应、过敏反应和增加血液清除率,导致毒性副作用和疗效降低。在本研究中,我们利用聚山梨酯 80(PS80)替代 PEG 来制备负载 eGFP mRNA 的可离子化脂质纳米粒(PS80-iLNPs),旨在增强其隐身特性、摄取效率和生物安全性。我们的研究结果表明,PS80-iLNPs 增强了隐身性和抗血清干扰能力。与含有 PEG 的可离子化脂质纳米粒(PEG-iLNPs)相比,PS80-iLNPs 的隐身性提高了 1.14 倍。此外,在总脂质浓度为 50 μg mL 时,PS80-iLNPs 的细胞存活率比 PEG-iLNPs 高 1.12 倍。值得注意的是,在血清干扰下,PEG-iLNPs 的摄取减少了 44.97%,而 PS80-iLNPs 的摄取仅减少了 30.55%,表明其具有更好的抗血清能力。这项工作表明 PS80 可以作为 PEG 的替代物,为开发无 PEG 的可离子化脂质纳米粒提供了良好的基础。