以金纳米粒子为重点的非病毒核酸疫苗的肺部递送

Carolina Araujo Cirne, Marianna Foldvari
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引用次数: 0

摘要

核酸疫苗是开发下一代预防保健的前沿工具。为了将疫苗基因治疗从侵入性治疗转变为非侵入性治疗,已经进行了大量的研究。肺的大表面积和渗透性使肺部途径成为一种有希望的无创疫苗递送选择,可以全身和局部应用。这篇综述总结了近年来为优化核酸经肺途径用于疫苗接种的途径所面临的挑战和采取的方法,重点是金纳米颗粒(AuNPs)。非病毒传递系统已被广泛探索,具有独特特性的aunp正成为核酸疫苗的有前途的工具,因为它具有穿透黏液聚合物的表面功能化和靶向部分,可以绕过肺传递中的障碍,成功地将核酸传递到感兴趣的细胞。然而,尽管前景看好,但仍存在一些挑战,包括选择性地克服肺部的免疫监视和黏附粘液。
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Pulmonary Delivery of Nonviral Nucleic Acid-Based Vaccines With Spotlight on Gold Nanoparticles.

Nucleic acid-based vaccines are leading-edge tools in developing next-generation preventative care. Much research has been done to convert vaccine gene therapy from an invasive to a noninvasive administration approach. The lung's large surface area and permeability make the pulmonary route a promising noninvasive delivery option for vaccines, with systemic and local applications. This review summarizes the challenges and the approaches that have been carried out to optimize the delivery of nucleic acids through the pulmonary route for vaccination purposes in recent years, with a spotlight on gold nanoparticles (AuNPs). Nonviral delivery systems have been widely explored, and AuNPs with their unique properties are emerging as promising tools for nucleic acid vaccines due to surface functionalization with mucus-penetrating polymers and targeting moieties that can bypass the barriers in pulmonary delivery and successfully deliver nucleic acids to the cells of interest. However, while promising, several challenges remain including selectively overcoming the lungs' immunological surveillance and adhesive mucus.

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