Goswami Roshan, O'Hagan Derek T, Adamo Roberto, Baudner Barbara C
mAbxience, Julia Morros s/n, Armunia, 24009 León, Spain.
GSK, Via Fiorentina 1, 53100 Siena, Italy.
Pharmaceutics. 2021 Feb 9;13(2):240. doi: 10.3390/pharmaceutics13020240.
Recent approval of mRNA vaccines to combat COVID-19 have highlighted the potential of this platform. Lipid nanoparticles (LNP) is the delivery vehicle of choice for mRNA as they prevent its enzymatic degradation by encapsulation. We have recently shown that surface exposition of mannose, incorporated in LNPs as stable cholesterol-amine conjugate, enhances the potency of self-amplifying RNA (SAM) replicon vaccines through augmented uptake by antigen presenting cells (APCs). Here, we generated a new set of LNPs whose surface was modified with mannans of different length (from mono to tetrasaccharide), in order to study the effect on antibody response of model SAM replicon encoding for the respiratory syncytial virus fusion F protein. Furthermore, the impact of the mannosylated liposomal delivery through intradermal as well as intramuscular routes was investigated. The vaccine priming response showed to improve consistently with increase in the chain length of mannoses; however, the booster dose response plateaued above the length of disaccharide. An increase in levels of IgG1 and IgG2a was observed for mannnosylated lipid nanoparticles (MLNPs) as compared to LNPs. This work confirms the potential of mannosylated SAM LNPs for both intramuscular and intradermal delivery, and highlights a disaccharide length as sufficient to ensure improved immunogenicity compared to the un-glycosylated delivery system.
近期批准的用于对抗新冠病毒的信使核糖核酸(mRNA)疫苗凸显了该平台的潜力。脂质纳米颗粒(LNP)是mRNA的首选递送载体,因为它们通过包裹来防止mRNA被酶降解。我们最近表明,作为稳定的胆固醇 - 胺共轭物掺入LNP中的甘露糖的表面暴露,通过增强抗原呈递细胞(APC)的摄取来增强自我扩增RNA(SAM)复制子疫苗的效力。在此,我们制备了一组新的LNP,其表面用不同长度(从单糖到四糖)的甘露聚糖修饰,以研究对编码呼吸道合胞病毒融合F蛋白的模型SAM复制子抗体反应的影响。此外,还研究了甘露糖基化脂质体通过皮内和肌肉内途径递送的影响。疫苗引发反应显示随着甘露糖链长度的增加而持续改善;然而,加强剂量反应在二糖长度以上趋于平稳。与LNP相比,观察到甘露糖基化脂质纳米颗粒(MLNP)的IgG1和IgG2a水平有所增加。这项工作证实了甘露糖基化SAM LNP用于肌肉内和皮内递送的潜力,并强调二糖长度足以确保与未糖基化递送系统相比免疫原性得到改善。