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基于纳米平台的鼻腔内疫苗:当前进展和临床挑战。

Nanoplatform Based Intranasal Vaccines: Current Progress and Clinical Challenges.

机构信息

Laboratory of Aging Research and Cancer Drug Target, State Key Laboratory of Biotherapy, National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, No. 17, Block 3, Southern Renmin Road, Chengdu, Sichuan 610041, P. R. China.

出版信息

ACS Nano. 2024 Sep 10;18(36):24650-24681. doi: 10.1021/acsnano.3c10797. Epub 2024 Aug 26.

Abstract

Multiple vaccine platforms have been employed to develop the nasal SARS-CoV-2 vaccines in preclinical studies, and the dominating pipelines are viral vectored as protein-based vaccines. Among them, several viral vectored-based vaccines have entered clinical development. Nevertheless, some unsatisfactory results were reported in these clinical studies. In the face of such urgent situations, it is imperative to rapidly develop the next-generation intranasal COVID-19 vaccine utilizing other technologies. Nanobased intranasal vaccines have emerged as an approach against respiratory infectious diseases. Harnessing the power of nanotechnology, these vaccines offer a noninvasive yet potent defense against pathogens, including the threat of COVID-19. The improvements made in vaccine mucosal delivery technologies based on nanoparticles, such as lipid nanoparticles, polymeric nanoparticles, inorganic nanoparticles etc., not only provide stability and controlled release but also enhance mucosal adhesion, effectively overcoming the limitations of conventional vaccines. Hence, in this review, we overview the evaluation of intranasal vaccine and highlight the current barriers. Next, the modern delivery systems based on nanoplatforms are summarized. The challenges in clinical application of nanoplatform based intranasal vaccine are finally discussed.

摘要

多种疫苗平台已被用于临床前研究开发鼻内 SARS-CoV-2 疫苗,主导的技术路线是基于病毒载体的蛋白疫苗。其中,几种基于病毒载体的疫苗已进入临床开发阶段。然而,这些临床研究报告了一些不理想的结果。面对这种紧急情况,必须利用其他技术迅速开发下一代鼻内 COVID-19 疫苗。基于纳米的鼻内疫苗已成为针对呼吸道传染病的一种方法。利用纳米技术的力量,这些疫苗为包括 COVID-19 威胁在内的病原体提供了一种非侵入性但有效的防御手段。基于纳米粒子的疫苗黏膜传递技术的改进,如脂质纳米粒子、聚合物纳米粒子、无机纳米粒子等,不仅提供了稳定性和控制释放,还增强了黏膜黏附性,有效地克服了传统疫苗的局限性。因此,在这篇综述中,我们概述了鼻内疫苗的评估,并强调了当前的障碍。接下来,总结了基于纳米平台的现代传递系统。最后讨论了基于纳米平台的鼻内疫苗在临床应用中的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d903/11394369/5310bfae427a/nn3c10797_0001.jpg

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