Oberoi Hardeep S, Yorgensen Yvonne M, Morasse Audrey, Evans Jay T, Burkhart David J
GSK Vaccines, 553 Old Corvallis Road, Hamilton, MT 59840, USA.
GSK Vaccines, 525 Boulevard Cartier, Laval, QC H7V 3S8, Canada.
J Control Release. 2016 Feb 10;223:64-74. doi: 10.1016/j.jconrel.2015.11.006. Epub 2015 Nov 6.
The mucosa is the primary point of entry for pathogens making it an important vaccination site to produce a protective mucosal immune response. While the sublingual (SL) mucosa presents several barriers to vaccine penetration, its unique anatomy and physiology makes it one of the best options for mucosal vaccination. Efficient and directed delivery of adjuvants and antigens to appropriate immune mediators in the SL tissue will aid in development of effective SL vaccines against infectious diseases. Herein we demonstrate a robust immune response against influenza antigens co-delivered sublingually with engineered liposomes carrying the synthetic Toll-like receptor-4 agonist, CRX-601. Liposome modification with PEG copolymers (Pluronics), phospholipid-PEG conjugates and chitosan were evaluated for their ability to generate an immune response in a SL murine influenza vaccine model. Phospholipid-PEG conjugates were more effective than Pluronic copolymers in generating stable, surface neutral liposomes. SL vaccination with surface modified liposomes carrying CRX-601 adjuvant generated significant improvements in flu-specific responses compared with unmodified liposomes. Furthermore, the coating of modified liposomes with methylglycol chitosan produced the most effective flu-specific immune response. These results demonstrate efficient SL vaccine delivery utilizing a combination of a muco-adhesive and surface neutral liposomes to achieve a robust mucosal and systemic immune response.
黏膜是病原体的主要侵入点,使其成为产生保护性黏膜免疫反应的重要疫苗接种部位。虽然舌下(SL)黏膜对疫苗渗透存在多种屏障,但其独特的解剖结构和生理特性使其成为黏膜疫苗接种的最佳选择之一。将佐剂和抗原高效、定向地递送至SL组织中的适当免疫介质,将有助于开发针对传染病的有效SL疫苗。在此,我们展示了针对与携带合成Toll样受体4激动剂CRX-601的工程化脂质体共同舌下递送的流感抗原产生的强烈免疫反应。评估了用聚乙二醇共聚物(普朗尼克)、磷脂-聚乙二醇缀合物和壳聚糖对脂质体进行修饰,在SL小鼠流感疫苗模型中产生免疫反应的能力。磷脂-聚乙二醇缀合物在生成稳定的表面中性脂质体方面比普朗尼克共聚物更有效。与未修饰的脂质体相比,用携带CRX-601佐剂的表面修饰脂质体进行SL疫苗接种在流感特异性反应方面有显著改善。此外,用甲基甘醇壳聚糖包被修饰的脂质体产生了最有效的流感特异性免疫反应。这些结果证明了利用黏附性和表面中性脂质体的组合实现高效的SL疫苗递送,以实现强烈的黏膜和全身免疫反应。