用于疫苗接种的微针涂抹器的演变:闩式涂抹器在优化基于溶解微针的免疫接种中的作用。

Minkyung Kim, Geonwoo Kang, Hye Su Min, Youjin Lee, Shinyoung Park, Hyungil Jung
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摘要

简介:溶解微针(DMN)通过靶向富含免疫力的皮肤层,在疫苗递送方面具有增强免疫原性和简化给药等优势。然而,这些优势需要精确一致的给药,这就带来了实际挑战。为解决这一问题,必须使用专门的涂抹器来确保 DMN 的精确施用,从而使该技术成为传统方法的可行替代方案,尤其是在医疗保健基础设施有限的中低收入国家(LMIC):在这篇综述中,我们探讨了基于 DMN 的疫苗接种和涂抹器设计的进步,重点关注它们的共同努力。这些创新提高了 DMN 疫苗接种的精确度和效率。复杂而昂贵的早期涂抹器已发展成为更简单、更具成本效益的设计。我们将在本综述中重点介绍这些发展,并将闩式涂抹器作为增强疫苗递送功能的一个重要实例:专家意见:尽管涂抹器的开发推动了基于 DMN 的疫苗接种走向实用化,但挑战依然存在。需要进一步优化的关键领域包括用户友好性、成本、包装体积和佩戴时间。一旦得到优化,DMN 疫苗接种可能会成为全球免疫接种的一种高效且易于使用的工具,从而支持实现全球疫苗平等的努力。
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Evolution of microneedle applicators for vaccination: the role of the latch applicator in optimizing dissolving microneedle-based immunization.

Introduction: Dissolving microneedles (DMN) offer advantages in vaccine delivery, such as enhanced immunogenicity and simplified administration, by targeting immune-rich layers of the skin. However, these benefits require precise and consistent delivery, which poses practical challenges. To address this, specialized applicators are essential for ensuring the accurate deployment of DMNs, making this technology a viable alternative to traditional methods, particularly in low- and middle-income countries (LMICs), where healthcare infrastructure is limited.

Areas covered: In this review, we examine the advancements in DMN-based vaccination and applicator design, focusing on their joint effort. These innovations have improved the precision and efficiency of DMN vaccine delivery. Complex and costly early-stage applicators have evolved into simpler and more cost-effective designs. We highlight these developments in this review, with the latch applicator as a key example of a feature that enhances vaccine delivery.

Expert opinion: Although applicator development has advanced DMN-based vaccination toward practical use, challenges remain. Key areas for further optimization include user friendliness, cost, packaging volume, and wear time. Once optimized, DMN vaccination may become a highly effective and accessible tool for global immunization, supporting efforts to achieve worldwide vaccine equality.

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