a VIDO-InterVac , University of Saskatchewan , Saskatoon , Canada.
b Microbiology and Immunology , University of Saskatchewan , Saskatoon , Canada.
Expert Rev Vaccines. 2019 May;18(5):505-521. doi: 10.1080/14760584.2019.1604231. Epub 2019 Apr 22.
Adjuvants form an integral component in most of the inactivated and subunit vaccine formulations. Careful and proper selection of adjuvants helps in promoting appropriate immune responses against target pathogens at both innate and adaptive levels such that protective immunity can be elicited. Areas covered: Herein, we describe the recent progress in our understanding of the mode of action of adjuvants that are licensed for use in human vaccines or in clinical or pre-clinical stages at both innate and adaptive levels. Different pathogens have distinct characteristics, which require the host to mount an appropriate immune response against them. Adjuvants can be selected to elicit a tailor-made immune response to specific pathogens based on their unique properties. Identification of biomarkers of adjuvanticity for several candidate vaccines using omics-based technologies can unravel the mechanism of action of modern and experimental adjuvants. Expert opinion: Adjuvant technology has been revolutionized over the last two decades. In-depth understanding of the role of adjuvants in activating the innate immune system, combined with systems vaccinology approaches, have led to the development of next-generation, novel adjuvants that can be used in vaccines against challenging pathogens and in specific target populations.
佐剂是大多数灭活疫苗和亚单位疫苗制剂的一个组成部分。佐剂的精心和正确选择有助于在先天和适应性免疫水平上促进针对靶病原体的适当免疫反应,从而可以引发保护性免疫。涵盖领域:本文描述了我们对佐剂作用模式的理解的最新进展,这些佐剂已获得许可用于人类疫苗,或处于先天和适应性水平的临床或临床前阶段。不同的病原体具有不同的特征,这要求宿主对其产生适当的免疫反应。根据其独特的特性,佐剂可以被选择来引发针对特定病原体的定制免疫反应。使用基于组学的技术对几种候选疫苗的佐剂进行鉴定,可以揭示现代和实验性佐剂的作用机制。专家意见:佐剂技术在过去二十年中发生了革命性变化。深入了解佐剂在激活先天免疫系统中的作用,结合系统疫苗学方法,导致了新一代新型佐剂的开发,可用于针对挑战性病原体和特定目标人群的疫苗。