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免疫原则指导疫苗传递用粒子的合理设计。

Immunological Principles Guiding the Rational Design of Particles for Vaccine Delivery.

机构信息

ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, and the Department of Chemical and Biomolecular Engineering, The University of Melbourne , Parkville, Victoria 3010, Australia.

ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, and the Department of Microbiology and Immunology, The University of Melbourne at the Peter Doherty Institute for Infection and Immunity , Parkville, Victoria 3010, Australia.

出版信息

ACS Nano. 2017 Jan 24;11(1):54-68. doi: 10.1021/acsnano.6b07343. Epub 2017 Jan 11.

Abstract

Despite the immense public health successes of immunization over the past century, effective vaccines are still lacking for globally important pathogens such as human immunodeficiency virus, malaria, and tuberculosis. Exciting recent advances in immunology and biotechnology over the past few decades have facilitated a shift from empirical to rational vaccine design, opening possibilities for improved vaccines. Some of the most important advancements include (i) the purification of subunit antigens with high safety profiles, (ii) the identification of innate pattern recognition receptors (PRRs) and cognate agonists responsible for inducing immune responses, and (iii) developments in nano- and microparticle fabrication and characterization techniques. Advances in particle engineering now allow highly tunable physicochemical properties of particle-based vaccines, including composition, size, shape, surface characteristics, and degradability. Enhanced collaborative efforts between researchers in immunology and materials science are expected to rise to next-generation vaccines. This process will be significantly aided by a greater understanding of the immunological principles guiding vaccine antigenicity, immunogenicity, and efficacy. With specific emphasis on PRR-targeted adjuvants and particle physicochemical properties, this review aims to provide an overview of the current literature to guide and focus rational particle-based vaccine design efforts.

摘要

尽管在过去一个世纪中免疫接种取得了巨大的公共卫生成就,但对于人类免疫缺陷病毒、疟疾和结核病等具有全球重要意义的病原体,仍然缺乏有效的疫苗。过去几十年中免疫学和生物技术的令人兴奋的最新进展促进了从经验性疫苗设计向理性疫苗设计的转变,为改进疫苗开辟了可能性。其中一些最重要的进展包括:(i) 高安全性的亚单位抗原的纯化;(ii) 识别先天模式识别受体 (PRR) 和诱导免疫反应的同源激动剂;(iii) 纳米和微粒制造及特性技术的发展。颗粒工程的进步现在允许基于颗粒的疫苗具有高度可调的物理化学特性,包括组成、大小、形状、表面特性和可降解性。免疫学和材料科学研究人员之间的合作有望加强,为下一代疫苗提供支持。这一过程将通过更好地理解指导疫苗抗原性、免疫原性和疗效的免疫学原理得到显著促进。本文特别强调了针对模式识别受体 (PRR) 的佐剂和颗粒物理化学特性,旨在提供当前文献综述,以指导和集中进行理性的基于颗粒的疫苗设计工作。

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