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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Rapid kinetics to peak serum antibodies is achieved following influenza vaccination by dry-coated densely packed microprojections to skin
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Rapid kinetics to peak serum antibodies is achieved following influenza vaccination by dry-coated densely packed microprojections to skin

机译:流感疫苗接种后,通过将干包衣的致密堆积的微突出物喷射到皮肤上,可以快速达到峰值血清抗体的动力学

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摘要

A rapid time to peak serum antibody response following vaccination is particularly important for influenza: the time window between the availability of appropriate antigen and the start of the seasonal epidemic is very short. In this paper, influenza vaccine was delivered to both the epidermis and dermis of mouse skin using densely packed microprojection arrays for vaccination. We found that, after vaccination, around 75% and 90% of the delivered influenza vaccine migrated away from the ear skin within just 2 days and 1 week - respectively. And the time to peak serum antibody response was as early as 2 weeks. This result matches the kinetics achieved by intramuscular injection of liquid vaccine to muscle. Thus, we demonstrate that skin delivery of small vaccine volumes discretely by thousands of densely packed microprojections neither induces delay in kinetics nor interferes with the long-lasting antibody response; compared to conventional intramuscular injection.
机译:接种疫苗后迅速达到血清抗体反应峰值的时间对流感尤为重要:合适抗原的可获得性与季节性流行开始之间的时间窗口非常短。在本文中,使用密集包装的微突出物阵列将流感疫苗递送至小鼠皮肤的表皮和真皮。我们发现,接种疫苗后,分别在短短2天和1周内,分别有大约75%和90%的流感疫苗从耳部皮肤迁移了出去。达到血清抗体反应峰值的时间最早为2周。该结果与通过向肌肉内注射液体疫苗而获得的动力学相匹配。因此,我们证明了成千上万个密集包装的微突出物离散地输送小剂量疫苗的皮肤既不会引起动力学延迟,也不会干扰持久的抗体反应。与传统的肌肉注射相比。

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