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流感疫苗的稳定化通过微针在小鼠皮肤中的给药增强了保护作用。

Stabilization of influenza vaccine enhances protection by microneedle delivery in the mouse skin.

机构信息

Department of Microbiology and Immunology, and Yerkes Vaccine Center, Emory University School of Medicine, Atlanta, Georgia, United States of America.

出版信息

PLoS One. 2009 Sep 25;4(9):e7152. doi: 10.1371/journal.pone.0007152.

Abstract

BACKGROUND

Simple and effective vaccine administration is particularly important for annually recommended influenza vaccination. We hypothesized that vaccine delivery to the skin using a patch containing vaccine-coated microneedles could be an attractive approach to improve influenza vaccination compliance and efficacy.

METHODOLOGY/PRINCIPAL FINDINGS: Solid microneedle arrays coated with inactivated influenza vaccine were prepared for simple vaccine delivery to the skin. However, the stability of the influenza vaccine, as measured by hemagglutination activity, was found to be significantly damaged during microneedle coating. The addition of trehalose to the microneedle coating formulation retained hemagglutination activity, indicating stabilization of the coated influenza vaccine. For both intramuscular and microneedle skin immunization, delivery of un-stabilized vaccine yielded weaker protective immune responses including viral neutralizing antibodies, protective efficacies, and recall immune responses to influenza virus. Immunization using un-stabilized vaccine also shifted the pattern of antibody isotypes compared to the stabilized vaccine. Importantly, a single microneedle-based vaccination using stabilized influenza vaccine was found to be superior to intramuscular immunization in controlling virus replication as well as in inducing rapid recall immune responses post challenge.

CONCLUSIONS/SIGNIFICANCE: The functional integrity of hemagglutinin is associated with inducing improved protective immunity against influenza. Simple microneedle influenza vaccination in the skin produced superior protection compared to conventional intramuscular immunization. This approach is likely to be applicable to other vaccines too.

摘要

背景

对于每年推荐的流感疫苗接种,简单有效的疫苗接种尤其重要。我们假设,使用含有疫苗涂层的微针贴片将疫苗递送至皮肤可能是一种有吸引力的方法,可以提高流感疫苗的接种依从性和效果。

方法/主要发现:我们制备了涂覆有灭活流感疫苗的固体微针阵列,以将疫苗简单递送至皮肤。然而,我们发现,在微针涂层过程中,流感疫苗的血凝活性显著受损,表明其稳定性明显下降。在微针涂层配方中添加海藻糖可以保留血凝活性,表明涂层流感疫苗得到了稳定。对于肌肉内和微针皮肤免疫接种,未稳定疫苗的递送导致较弱的保护性免疫反应,包括病毒中和抗体、保护效力以及对流感病毒的回忆免疫反应。与稳定疫苗相比,使用未稳定疫苗进行免疫接种还会改变抗体同种型的模式。重要的是,我们发现,单次基于微针的流感疫苗接种使用稳定的流感疫苗在控制病毒复制以及诱导接种后快速的回忆免疫反应方面优于肌肉内免疫接种。

结论/意义:血凝素的功能完整性与诱导针对流感的改善的保护性免疫有关。与传统的肌肉内免疫接种相比,皮肤中的简单微针流感疫苗接种产生了更好的保护作用。这种方法可能也适用于其他疫苗。

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