含铝佐剂疫苗的作用机制:体外与体内模式
The mechanisms of action of vaccines containing aluminum adjuvants: an in vitro vs in vivo paradigm.
作者信息
Ghimire Tirth Raj
机构信息
Division of Veterinary and Primate Health, Global Primate Network, Kathmandu, Nepal ; Department of Zoology, Birendra Multiple Campus, Tribhuvan University, Chitwan, Nepal.
出版信息
Springerplus. 2015 Apr 16;4:181. doi: 10.1186/s40064-015-0972-0. eCollection 2015.
Adjuvants such as the aluminum compounds (alum) have been dominantly used in many vaccines due to their immunopotentiation and safety records since 1920s. However, how these mineral agents influence the immune response to vaccination remains elusive. Many hypotheses exist as to the mode of action of these adjuvants, such as depot formation, antigen (Ag) targeting, and the induction of inflammation. These hypotheses are based on many in vitro and few in vivo studies. Understanding how cells interact with adjuvants in vivo will be crucial to fully understanding the mechanisms of action of these adjuvants. Interestingly, how alum influences the target cell at both the cellular and molecular level, and the consequent innate and adaptive responses, will be critical in the rational design of effective vaccines against many diseases. Thus, in this review, mechanisms of action of alum have been discussed based on available in vitro vs in vivo evidences to date.
自20世纪20年代以来,诸如铝化合物(明矾)之类的佐剂因其免疫增强作用和安全记录而在许多疫苗中被广泛使用。然而,这些矿物质制剂如何影响疫苗接种后的免疫反应仍不清楚。关于这些佐剂的作用方式存在许多假说,例如储存库形成、抗原(Ag)靶向和炎症诱导。这些假说是基于许多体外研究和少数体内研究得出的。了解细胞在体内如何与佐剂相互作用对于全面理解这些佐剂的作用机制至关重要。有趣的是,明矾如何在细胞和分子水平上影响靶细胞以及随之而来的先天性和适应性反应,对于合理设计针对多种疾病的有效疫苗至关重要。因此,在本综述中,已根据迄今为止可用的体外与体内证据讨论了明矾的作用机制。
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