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将中和作用融入拉沙病毒疫苗设计中。

Infusion of neutralization into Lassa vaccine design.

作者信息

Li Haoyang, Hastie Kathryn M, Saphire Erica Ollmann

机构信息

Center for Vaccine Innovation, La Jolla Institute for Immunology, 9420 Athena Circle, La Jolla, CA 92037, USA.

Center for Vaccine Innovation, La Jolla Institute for Immunology, 9420 Athena Circle, La Jolla, CA 92037, USA; Department of Medicine, University of California San Diego, La Jolla, CA 92037, USA.

出版信息

Trends Immunol. 2025 Jul;46(7):512-524. doi: 10.1016/j.it.2025.05.006. Epub 2025 Jun 24.

Abstract

Lassa virus (LASV), which causes deadly Lassa fever (endemic in Western Africa), is a priority pathogen and a global health threat. Current vaccine candidates protect LASV-challenged animals through T cell immunity or non-neutralizing IgG/Fc receptor-mediated functions in the absence of potent neutralization. Neutralizing antibodies (nAbs), applied through passive immunization, also provide broad and complete protection against LASV. Rational design of LASV glycoprotein complex (GPC), the primary target for adaptive immunity, overcomes prior challenges to elicitation of nAbs caused by the dense glycan shield, metastability, and heterogeneity of GPC. Well-engineered GPC immunogens, in combination with advanced immunization methods and existing clinical trial phase vaccine candidates, provide a possibility to infuse neutralizing activity into complementary mechanisms of immune protection delivered by LASV vaccination.

摘要

拉沙病毒(LASV)可引发致命的拉沙热(在西非流行),是一种重点病原体,对全球健康构成威胁。目前的候选疫苗通过T细胞免疫或在缺乏有效中和作用时通过非中和性IgG/抗体介导的功能来保护受拉沙病毒攻击的动物。通过被动免疫应用的中和抗体(nAbs)也能提供针对拉沙病毒的广泛且完全的保护。对适应性免疫的主要靶点——拉沙病毒糖蛋白复合体(GPC)进行合理设计,克服了先前因GPC密集的聚糖屏蔽、亚稳定性和异质性而引发中和抗体的挑战。精心设计的GPC免疫原,与先进的免疫方法和现有的临床试验阶段候选疫苗相结合,为将中和活性注入拉沙病毒疫苗接种所提供的免疫保护互补机制创造了可能性。

相似文献

1
Infusion of neutralization into Lassa vaccine design.将中和作用融入拉沙病毒疫苗设计中。
Trends Immunol. 2025 Jul;46(7):512-524. doi: 10.1016/j.it.2025.05.006. Epub 2025 Jun 24.

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