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四种非佐剂细胞培养衍生流感疫苗的直接比较:在小鼠攻毒模型中,疫苗成分、空间结构和免疫途径对免疫原性的影响

Head-to-head comparison of four nonadjuvanted inactivated cell culture-derived influenza vaccines: effect of composition, spatial organization and immunization route on the immunogenicity in a murine challenge model.

作者信息

Hagenaars Niels, Mastrobattista Enrico, Glansbeek Harrie, Heldens Jacco, van den Bosch Han, Schijns Virgil, Betbeder Didier, Vromans Herman, Jiskoot Wim

机构信息

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University, P.O. Box 80082, 3508 TB Utrecht, The Netherlands.

出版信息

Vaccine. 2008 Dec 2;26(51):6555-63. doi: 10.1016/j.vaccine.2008.09.057.

Abstract

In order to study the influence of antigen composition, spatial organization of antigen and the route of administration, four cell culture-derived, inactivated, nonadjuvanted influenza vaccine formulations, i.e. whole inactivated virus (WIV), split, subunit and virosome vaccines were prepared from a single antigen batch. We directly compared the immunogenicity and efficacy of these vaccine formulations after intramuscular (i.m.) or intranasal (i.n.) administration in mice. Prime and boost vaccination were followed by a potentially lethal homologous aerosol challenge. For all vaccines, the i.m. route induced higher serum humoral immune responses as compared to the i.n. route and protected all mice against challenge at a dose of 5 microg. Upon i.n. immunization only WIV and split vaccines induced detectable IgG titers and partial protection against challenge but only very low HI titers were induced in almost all mice. WIV induced mainly IgG2a/c titers via both routes, whereas split vaccine induced exclusively IgG1 titers via both routes. Subunit and virosome vaccines induced exclusively IgG1 via the i.m. route. Mucosal sIgA levels were only detected after i.n. vaccination with WIV. Furthermore, vaccines containing all viral components (WIV and split vaccine) induced higher serum HI titers and serum antibody titers than subunit and virosome vaccines. The differences in magnitude and quality of immune responses of split and WIV, having the same composition, are likely related to their distinct spatial organization. In conclusion, the direct comparison between WIV, split, subunit and virosomes, shows that the differences in immune responses between these well known influenza vaccines can be explained by both the composition and particulate structure of these vaccine formulations.

摘要

为了研究抗原组成、抗原的空间组织以及给药途径的影响,从一批单一抗原制备了四种细胞培养衍生的、灭活的、无佐剂流感疫苗制剂,即全灭活病毒(WIV)、裂解疫苗、亚单位疫苗和病毒体疫苗。我们直接比较了这些疫苗制剂在小鼠肌肉注射(i.m.)或鼻内(i.n.)给药后的免疫原性和效力。初次和加强免疫后进行具有潜在致死性的同源气溶胶攻击。对于所有疫苗,与鼻内途径相比,肌肉注射途径诱导的血清体液免疫反应更高,并且在5微克剂量下能保护所有小鼠免受攻击。经鼻内免疫后,只有WIV和裂解疫苗诱导出可检测到的IgG滴度并提供部分抗攻击保护,但几乎所有小鼠诱导出的血凝抑制(HI)滴度都非常低。WIV通过两种途径主要诱导IgG2a/c滴度,而裂解疫苗通过两种途径仅诱导IgG1滴度。亚单位疫苗和病毒体疫苗通过肌肉注射途径仅诱导IgG1。仅在用WIV进行鼻内接种后才检测到黏膜分泌型IgA水平。此外,含有所有病毒成分的疫苗(WIV和裂解疫苗)诱导的血清HI滴度和血清抗体滴度高于亚单位疫苗和病毒体疫苗。组成相同的裂解疫苗和WIV在免疫反应的强度和质量上的差异可能与其不同的空间组织有关。总之,WIV、裂解疫苗、亚单位疫苗和病毒体之间的直接比较表明,这些知名流感疫苗之间免疫反应的差异可以通过这些疫苗制剂的组成和颗粒结构来解释。

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