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疫苗佐剂概述:当前证据与未来展望

An Overview of Vaccine Adjuvants: Current Evidence and Future Perspectives.

作者信息

Facciolà Alessio, Visalli Giuseppa, Laganà Antonio, Di Pietro Angela

机构信息

Department of Biomedical and Dental Sciences and Morphofunctional Imaging, University of Messina, 98125 Messina, Italy.

Multi-Specialist Clinical Institute for Orthopaedic Trauma Care (COT), 98124 Messina, Italy.

出版信息

Vaccines (Basel). 2022 May 22;10(5):819. doi: 10.3390/vaccines10050819.

Abstract

Vaccinations are one of the most important preventive tools against infectious diseases. Over time, many different types of vaccines have been developed concerning the antigen component. Adjuvants are essential elements that increase the efficacy of vaccination practises through many different actions, especially acting as carriers, depots, and stimulators of immune responses. For many years, few adjuvants have been included in vaccines, with aluminium salts being the most commonly used adjuvant. However, recent research has focused its attention on many different new compounds with effective adjuvant properties and improved safety. Modern technologies such as nanotechnologies and molecular biology have forcefully entered the production processes of both antigen and adjuvant components, thereby improving vaccine efficacy. Microparticles, emulsions, and immune stimulators are currently in the spotlight for their huge potential in vaccine production. Although studies have reported some potential side effects of vaccine adjuvants such as the recently recognised ASIA syndrome, the huge worth of vaccines remains unquestionable. Indeed, the recent COVID-19 pandemic has highlighted the importance of vaccines, especially in regard to managing future potential pandemics. In this field, research into adjuvants could play a leading role in the production of increasingly effective vaccines.

摘要

疫苗接种是预防传染病最重要的手段之一。随着时间的推移,针对抗原成分已研发出许多不同类型的疫苗。佐剂是通过多种不同作用提高疫苗接种效果的关键要素,尤其是作为免疫反应的载体、储存库和刺激剂。多年来,疫苗中使用的佐剂很少,铝盐是最常用的佐剂。然而,最近的研究聚焦于许多具有有效佐剂特性且安全性更高的新型化合物。纳米技术和分子生物学等现代技术已强势进入抗原和佐剂成分的生产过程,从而提高了疫苗效力。微粒、乳剂和免疫刺激剂因其在疫苗生产中的巨大潜力而成为当前的焦点。尽管研究报告了疫苗佐剂的一些潜在副作用,如最近发现的ASIA综合征,但疫苗的巨大价值仍然毋庸置疑。事实上,最近的新冠疫情凸显了疫苗的重要性,尤其是在应对未来潜在大流行方面。在这一领域,佐剂研究可能在生产更有效的疫苗方面发挥主导作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d442/9147349/ddcc4324221e/vaccines-10-00819-g001.jpg

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