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微纳米级佐剂:现状与未来方向。

Adjuvants in micro- to nanoscale: current state and future direction.

机构信息

Advanced Materials Processing and Analysis Center, NanoScience Technology Center and Department of Materials Science and Engineering, University of Central Florida, Orlando, FL, USA.

Sanofi Pasteur, VaxDesign Campus, Orlando, FL, USA.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2016 Jan-Feb;8(1):61-84. doi: 10.1002/wnan.1354. Epub 2015 Jun 6.

Abstract

Adjuvants have been used in vaccines for over 70 years to promote long-lived and sterilizing immunity. Since then, various adjuvant systems were developed by combining nanotechnology with natural and/or synthetic immunomodulatory molecules. These systems are biocompatible, immunogenic, and possess higher antigen carrying capacity. This article showcases advancements made in the adjuvant systems formulations, their synthesis routes, and the improvement of these adjuvants have brought in response to combat against ongoing global health threats such as malaria, hepatitis C, universal influenza, and human immunodeficiency virus. This review also highlights the interaction of adjuvants with the delivery of antigens to cells and unfolds mechanism of actions. In addition, this review discusses the physicochemical factors responsible for the efficient interaction of nanoadjuvants with antigen receptors to develop more effective, less reactogenic, and multifunctional systems for the next generation vaccines.

摘要

佐剂在疫苗中的应用已有 70 多年的历史,旨在促进长效和杀菌性免疫。从那时起,各种佐剂系统通过将纳米技术与天然和/或合成免疫调节剂分子结合而得到发展。这些系统具有生物相容性、免疫原性,并具有更高的抗原承载能力。本文展示了佐剂系统配方方面的进展,它们的合成路线,以及为应对疟疾、丙型肝炎、普通流感和人类免疫缺陷病毒等持续的全球健康威胁而进行的改进。这篇综述还强调了佐剂与抗原向细胞传递的相互作用,并阐述了其作用机制。此外,本综述还讨论了负责纳米佐剂与抗原受体有效相互作用的物理化学因素,以开发更有效、低反应原性和多功能的下一代疫苗系统。

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