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利用亚微米空化核增强超声介导的疫苗经皮传递和渗透。

Exploitation of sub-micron cavitation nuclei to enhance ultrasound-mediated transdermal transport and penetration of vaccines.

机构信息

Institute of Biomedical Engineering, Department of Engineering Science, Oxford, OX3 7DQ, UK.

Institute of Biomedical Engineering, Department of Engineering Science, Oxford, OX3 7DQ, UK.

出版信息

J Control Release. 2016 Sep 28;238:22-30. doi: 10.1016/j.jconrel.2016.07.016. Epub 2016 Jul 12.

Abstract

Inertial cavitation mediated by ultrasound has been previously shown to enable skin permeabilisation for transdermal drug and vaccine delivery, by sequentially applying the ultrasound then the therapeutic in liquid form on the skin surface. Using a novel hydrogel dosage form, we demonstrate that the use of sub-micron gas-stabilising polymeric nanoparticles (nanocups) to sustain and promote cavitation activity during simultaneous application of both drug and vaccine results in a significant enhancement of both the dose and penetration of a model vaccine, Ovalbumin (OVA), to depths of 500μm into porcine skin. The nanocups themselves exceeded the penetration depth of the vaccine (up to 700μm) due to their small size and capacity to 'self-propel'. In vivo murine studies indicated that nanocup-assisted ultrasound transdermal vaccination achieved significantly (p<0.05) higher delivery doses without visible skin damage compared to the use of a chemical penetration enhancer. Transdermal OVA doses of up to 1μg were achieved in a single 90-second treatment, which was sufficient to trigger an antigen-specific immune response. Furthermore, ultrasound-assisted vaccine delivery in the presence of nanocups demonstrated substantially higher specific anti-OVA IgG antibody levels compared to other transdermal methods. Further optimisation can lead to a viable, safe and non-invasive delivery platform for vaccines with potential use in a primary care setting or personalized self-vaccination at home.

摘要

先前的研究表明,通过在皮肤表面依次施加超声波和治疗药物的液体形式,可以利用超声介导的惯性空化来实现经皮药物和疫苗传递,从而使皮肤通透性增强。本研究采用了一种新型水凝胶剂型,结果表明,在同时应用药物和疫苗时,使用亚微米气体稳定聚合物纳米颗粒(纳米杯)来维持和促进空化活性,可显著增强模型疫苗卵清蛋白(OVA)的剂量和渗透深度,达到 500μm 进入猪皮。由于纳米杯的尺寸小且能够“自行推进”,因此其渗透深度超过了疫苗的渗透深度(高达 700μm)。体内小鼠研究表明,与使用化学渗透增强剂相比,纳米杯辅助超声经皮疫苗接种可实现显著(p<0.05)更高的递送剂量,且不会造成明显的皮肤损伤。单次 90 秒治疗即可实现高达 1μg 的 OVA 透皮剂量,足以引发抗原特异性免疫反应。此外,在纳米杯存在的情况下,超声辅助疫苗传递可显著提高针对 OVA 的特异性 IgG 抗体水平,优于其他经皮传递方法。进一步的优化可以为疫苗提供一种可行、安全且非侵入性的传递平台,在初级保健环境或家庭自我接种中具有潜在的应用价值。

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