State Key Laboratory of Virology, Wuhan Institute of Virology, University of Chinese Academy of Sciences, Wuhan, 430071, China.
Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101, China.
Small. 2018 Mar;14(13):e1703207. doi: 10.1002/smll.201703207. Epub 2018 Feb 12.
Cross-protective and non-invasively administered vaccines are attractive and highly desired for the control of influenza. Self-assembling nanotechnology provides an opportunity for the development of vaccines with superior performance. In this study, an intranasal nanovaccine is developed targeting the conserved ectodomain of influenza matrix protein 2(M2e). 3-sequential repeats of M2e (3M2e) is presented on the self-assembling recombinant human heavy chain ferritin (rHF) cage to form the 3M2e-rHF nanoparticle. Intranasal vaccination with 3M2e-rHF nanoparticles in the absence of an adjuvant induces robust immune responses, including high titers of sera M2e-specific IgG antibodies, T-cell immune responses, and mucosal secretory-IgA antibodies in mice. The 3M2e-rHF nanoparticles also confer complete protection against a lethal infection of homo-subtypic H1N1 and hetero-subtypic H9N2 virus. An analysis of the mechanism of protection underlying the intranasal immunization with the 3M2e-rHF nanoparticle indicates that M2e-specific mucosal secretory-IgA and T-cell immune responses may play critical roles in the prevention of infection. The results suggest that the 3M2e-rHF nanoparticle is a promising, needle-free, intranasally administered, cross-protective influenza vaccine. The use of self-assembling nanovaccines could be an ideal strategy for developing vaccines with characteristics such as high immunogenicity, cross-protection, and convenient administration, as well as being economical and suitable for large-scale production.
针对流感的防控,交叉保护和非侵入性给药疫苗极具吸引力且需求量大。自组装纳米技术为开发具有卓越性能的疫苗提供了机会。在这项研究中,开发了一种针对流感基质蛋白 2(M2e)保守外域的鼻内纳米疫苗。3 个串联重复的 M2e(3M2e)展示在自组装重组人重链铁蛋白(rHF)笼上,形成 3M2e-rHF 纳米颗粒。在没有佐剂的情况下,鼻内接种 3M2e-rHF 纳米颗粒可诱导出强大的免疫反应,包括高滴度的血清 M2e 特异性 IgG 抗体、T 细胞免疫反应和黏膜分泌型 IgA 抗体。3M2e-rHF 纳米颗粒还能完全保护小鼠免受同源 H1N1 和异源 H9N2 病毒的致死性感染。对鼻内免疫接种 3M2e-rHF 纳米颗粒的保护机制的分析表明,M2e 特异性黏膜分泌型 IgA 和 T 细胞免疫反应可能在预防感染中发挥关键作用。研究结果表明,3M2e-rHF 纳米颗粒是一种有前途的、无针、鼻内给药、交叉保护的流感疫苗。自组装纳米疫苗的使用可能是开发具有高免疫原性、交叉保护、方便给药、经济实惠且适合大规模生产等特点的疫苗的理想策略。