NorthWest Centre for Advanced Drug Delivery (NoWCADD), School of Health Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, U.K.
Division of Pharmacy and Optometry, Faculty of Biology, Medicine and Health, University of Manchester, Oxford Road, Manchester M13 9PT, U.K.
ACS Appl Mater Interfaces. 2022 Jul 6;14(26):30371-30384. doi: 10.1021/acsami.2c06065. Epub 2022 Jun 27.
Lipid nanoparticles (LNPs) are important delivery systems for RNA-based therapeutics, yet the mechanism of their interaction with endosomal membranes remains unclear. Here, the interactions of nucleic acid-loaded LNPs that contain an ionizable lipid with models of the early and late endosomal membranes are studied, for the first time, using different reflectometry techniques. Novel insight is provided with respect to the subphase pH, the stage of the endosome, and the nature of the nucleic acid cargo. It is found that the insertion of lipids from the LNPs into the model membrane is greatest at pH 6.5 and 5.5, whereas at higher pH, lipid insertion is suppressed with evidence instead for the binding of intact LNPs, demonstrating the importance of the pH in the fusion of LNPs undergoing the endosomal pathway. Furthermore, and independently of the pH, the effect of the early- versus late-stage endosomal models is minimal, suggesting that the increased fluidity and anionic nature of the late endosome has little effect on the extent of LNP interaction. Last, there is greater nucleic acid delivery from LNPs containing mRNA than Poly(A), indicating that the extent of interaction can be tuned according to the nature of the nucleic acid cargo. Such new information on the relative impact of factors influencing nucleic acid delivery by LNP interactions with endosomal membranes is important in the design and tuning of vehicles with improved nucleic acid delivery capacities.
脂质纳米颗粒(LNPs)是 RNA 治疗药物的重要递送系统,但它们与内体膜相互作用的机制仍不清楚。在这里,首次使用不同的反射测量技术研究了含有可离子化脂质的载核酸 LNPs 与早期和晚期内体膜模型的相互作用。这项研究提供了关于亚相 pH 值、内体阶段和核酸货物性质的新见解。研究发现,LNPs 中的脂质在内体 pH 值为 6.5 和 5.5 时插入模型膜的程度最大,而在较高 pH 值时,插入脂质受到抑制,取而代之的是完整 LNPs 的结合,这表明 pH 值在内体途径融合过程中对 LNPs 的融合具有重要作用。此外,独立于 pH 值,早期和晚期内体模型的影响最小,这表明晚期内体增加的流动性和阴离子性质对内体相互作用的程度影响不大。最后,含有 mRNA 的 LNPs 的核酸递送比 Poly(A) 多,这表明根据核酸货物的性质可以调整相互作用的程度。这种关于影响 LNPs 与内体膜相互作用的核酸递送至内体的因素的相对影响的新信息,对于设计和调整具有改进的核酸递送能力的载体具有重要意义。