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聚合物纳米结构疫苗:应用与挑战。

Polymeric nanostructure vaccines: applications and challenges.

机构信息

Immunology Group, Centro de Investigaciones Biomédicas, CINBIO, Universidade de Vigo, Campus Universitario Lagoas Marcosende , Vigo, Spain.

Instituto De Investigación Sanitaria Galicia Sur (IIS-GS), Hospital Álvaro Cunqueiro, Estrada Clara Campoamor , Vigo, Pontevedra, Spain.

出版信息

Expert Opin Drug Deliv. 2020 Jul;17(7):1007-1023. doi: 10.1080/17425247.2020.1776259. Epub 2020 Jun 10.

Abstract

INTRODUCTION

The use of biocompatible polymers, from natural or synthetic sources, opened the door for a new era in vaccine research. These polymers offer the possibility to develop nanostructured antigen carriers that can be easily internalized by antigen-presenting cells, due to their nanometric size. Besides, the incorporation of an adjuvant allows increasing and modulating the immune response for both, polymers with or without self-adjuvant properties.

AREAS COVERED

The historical background and the state-of-the-art in the use of polymers as antigen carriers are addressed in the first part of this review. Then, an overview of the immunology of vaccination is provided. Finally, the main advances in the field, based on the prototypes that are licensed or undergoing clinical trials, but also the challenges that limit the translation of many polymer-based nanostructure vaccines with promising preclinical results, are discussed.

EXPERT OPINION

Polymeric nanostructured vaccines have a great potential in modern vaccinology. However, the translation into the market is hampered due to several limitations. Studies on correlates of protection to provide suitable biomarkers, new and better methods of synthesis to produce more reproducible nanovaccines, a deeper knowledge in the immune system and in the physiopathology of the infectious diseases will surely improve and boost the field in the next years.

摘要

简介

生物相容性聚合物(天然或合成来源)的使用为疫苗研究开辟了一个新时代。由于其纳米级尺寸,这些聚合物为开发能够被抗原呈递细胞轻易内化的纳米结构抗原载体提供了可能。此外,佐剂的加入可以增强和调节免疫反应,无论是具有自佐剂特性还是不具有自佐剂特性的聚合物。

涵盖领域

在这篇综述的第一部分,讨论了聚合物作为抗原载体的历史背景和最新进展。然后,提供了疫苗接种免疫学的概述。最后,根据已经获得许可或正在进行临床试验的原型,讨论了该领域的主要进展,但也讨论了限制许多具有有前途的临床前结果的基于聚合物的纳米结构疫苗转化的挑战。

专家意见

聚合物纳米结构疫苗在现代疫苗学中有很大的潜力。然而,由于存在多种限制,其向市场的转化受到阻碍。关于保护相关性的研究为提供合适的生物标志物,新的和更好的合成方法来生产更具重现性的纳米疫苗,对免疫系统和传染病病理生理学的更深入了解,肯定会在未来几年改善和推动该领域的发展。

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