Vaxxas Biomedical Facility, Hamilton, Australia.
Menzies Health Institute Queensland, Griffith University, Brisbane, Queensland, Australia.
Hum Vaccin Immunother. 2023 Dec 31;19(1):2189409. doi: 10.1080/21645515.2023.2189409. Epub 2023 Mar 22.
The high-density microneedle array patch (HD-MAP) is a novel vaccine delivery system with potential for self-administered vaccination. In this study, Vaxxas HD-MAPs were applied by both a trained user and self-administered with application sites compared to determine the response of skin and the level of engagement of the HD-MAP with human skin. Twenty healthy participants were enrolled, and the response of skin including erythema was observed at all application sites and no difference was found between trained user or self-administered applications. The majority of participants (70%) preferred the deltoid upper arm application site for applying HD-MAPs. Fluorescent dermatoscope images confirmed HD-MAPs engaged the skin surface and scanning electron microscopy (SEM) image analysis exhibited similar delivery characteristics for the upper arm and forearm sites when applied by either a trained user or self-administered. This study showed that noninvasive methods including dermatoscopy and SEM image analysis were able to estimate the engagement of HD-MAPs with human skin. HD-MAP self-vaccination technology has a unique proposition in pandemic preparedness by alleviating the need for health-care workers to administer vaccines, however greater awareness and understanding of the potential of this technology is required.
高密度微针贴片(HD-MAP)是一种新型疫苗传递系统,具有自我接种的潜力。在这项研究中,通过训练有素的用户和自我应用进行了 Vaxxas HD-MAP 的应用,并对应用部位进行了比较,以确定皮肤的反应和 HD-MAP 与人体皮肤的接触程度。招募了 20 名健康参与者,观察了所有应用部位的皮肤反应,包括红斑,发现训练有素的用户或自我应用之间没有差异。大多数参与者(70%)更喜欢在上臂三角肌部位应用 HD-MAP。荧光皮肤镜图像证实 HD-MAP 与皮肤表面接触,扫描电子显微镜(SEM)图像分析显示,当由训练有素的用户或自我应用时,上臂和前臂部位的输送特征相似。这项研究表明,包括皮肤镜和 SEM 图像分析在内的非侵入性方法能够估计 HD-MAP 与人体皮肤的接触程度。HD-MAP 自我接种技术在大流行准备方面具有独特的优势,可以减轻医护人员接种疫苗的需求,但是需要进一步提高对这项技术的认识和理解。