The University of Queensland Australian Institute for Bioengineering and Nanotechnology (AIBN) Brisbane, QLD 4072, Australia.
Small. 2010 Aug 16;6(16):1785-93. doi: 10.1002/smll.201000326.
Targeting of vaccines to abundant immune cell populations within our outer thin skin layers using miniaturized devices-much thinner than a needle and syringe, could improve the efficacy of vaccines (and other immunotherapies). To meet this goal, a densely packed dissolving microprojection array (dissolving Nanopatch) is designed, achieving functional miniaturization by 1) formulating small microneedles (two orders of magnitude smaller than a standard needle and syringe) and 2) multiple layering of the payload within microprojections with tight tolerances (of the order of a micrometer). The formulation method is suitable to many vaccines because it is without harsh or complex chemical processes, and it is performed at low temperatures and at a neutral pH. When the formulated dNPs are applied to skin, consistent and robust penetration is achieved, rapidly targeting the skin strata of interest (<5 min; significantly faster than larger dissolving microneedles that have been previously reported). Resultant diffusion is significantly enhanced within the dermis compared with the epidermis. Using two different antigens (ovalbumin and a commercial trivalent influenza vaccine [Fluvax2008]), the administration of these dissolving patches generate robust systemic immune responses in a mouse model. To the authors' knowledge, this is the first report of successful vaccination with any form of dissolving microneedles. The patches made by this method therefore have the potential for pain-free, needle-free, and effective vaccination in humans.
利用微型设备将疫苗靶向到我们外层薄皮肤层中的丰富免疫细胞群体——比针和注射器还要细得多——可以提高疫苗(和其他免疫疗法)的疗效。为了实现这一目标,设计了一种密集排列的可溶解微针阵列(可溶解纳米贴),通过以下方式实现功能的微型化:1)构建小的微针(比标准的针和注射器小两个数量级)和 2)在微针内的载药进行多层排列,公差非常小(微米级)。这种配方方法适用于许多疫苗,因为它没有苛刻或复杂的化学过程,而且在低温和中性 pH 值下进行。当配方的 dNPs 应用于皮肤时,能够实现一致且稳健的穿透,迅速靶向感兴趣的皮肤层(<5 分钟;明显快于之前报道的较大的可溶解微针)。与表皮相比,真皮内的扩散明显增强。使用两种不同的抗原(卵清蛋白和一种商业三价流感疫苗[Fluvax2008]),在小鼠模型中,这些可溶解贴片的给药能够产生强大的全身免疫反应。据作者所知,这是首次成功使用任何形式的可溶解微针进行疫苗接种的报道。因此,这种方法制成的贴片有可能在人类中实现无痛、无针、有效的疫苗接种。