汉坦病毒GnH纳米颗粒免疫原在小鼠体内引发交叉中和抗体反应。

IF 3.8 2区 医学 Q2 CHEMISTRY, MEDICINAL
Kevin E Ramos, Margarette C Mariano, Eva Mittler, Romina Pardo, Vanessa Zylberman, Pablo Guardado-Calvo, Kartik Chandran, Jonathan R Lai
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引用次数: 0

摘要

汉坦病毒是由啮齿动物传播的人畜共患病原体,可引起人类严重和致命的疾病。“新世界”汉坦病毒(北美和南美特有)包括人类致病性安第斯正汉坦病毒(ANDV)、巧克力正汉坦病毒(CHOV)和Sin Nombre正汉坦病毒(SNV)。人类感染可导致汉坦病毒心肺综合征(HCPS),死亡率约为40%。目前,还没有fda批准的汉坦病毒疫苗或治疗方法,但针对糖蛋白Gn和Gc的中和抗体已被证明对动物有保护作用。在这里,我们从ANDV, CHOV或SNV中开发了带有Gn头部结构域(GnH)的纳米颗粒免疫原。ANDV-GnH单体的初步免疫研究表明,该抗原在小鼠中引起反应性但非中和性抗体反应。为了增强免疫反应,我们开发了一种使用SpyCatcher/SpyTag生物偶联技术将GnHs与mi3纳米颗粒连接的策略。我们发现ANDV- gnh -mi3纳米颗粒引发了一种交叉反应性抗体反应,可以中和含有ANDV和CHOV糖蛋白的假型病毒,但不能中和SNV。相比之下,CHOV-GnH-mi3纳米颗粒只引起同型中和反应。最后,用ANDV-GnH-mi3和SNV-GnH-mi3纳米颗粒混合免疫小鼠血清的反应性与用ANDV-GnH-mi3免疫小鼠血清的反应性相似,只是表明SNV-GnH-mi3抗体反应甚至没有同型中和。这些结果表明,免疫优势的差异可能有助于gnh免疫原引起的汉坦病毒靶向中和反应的广度。尽管如此,ANDV-GnH-mi3免疫获得的交叉中和血清表明,通过适当的工程设计,开发广泛的免疫原是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hantavirus GnH Nanoparticle Immunogen Elicits a Cross-Neutralizing Antibody Response in Mice.

Hantaviruses are zoonotic pathogens that are spread by rodents and can cause severe and fatal disease in humans. "New World" hantaviruses (endemic to North and South America) include the human pathogenic Andes orthohantavirus (ANDV), Choclo orthohantavirus (CHOV), and Sin Nombre orthohantavirus (SNV). Human infections can lead to hantavirus cardiopulmonary syndrome (HCPS), which is associated with ∼40% mortality. Currently, there are no FDA-approved hantavirus vaccines or treatments, but neutralizing antibodies targeting the glycoproteins Gn and Gc have been shown to be protective in animals. Here, we develop nanoparticle immunogens bearing the Gn head domain (GnH) from ANDV, CHOV, or SNV. Initial immunization studies with the ANDV-GnH monomer indicated that this antigen elicited a reactive but non-neutralizing antibody response in mice. To bolster the immune response, we developed a strategy to link GnHs to mi3 nanoparticles using the SpyCatcher/SpyTag bioconjugation technology. We found that ANDV-GnH-mi3 nanoparticles elicited a cross-reactive antibody response that neutralized pseudotyped viruses containing ANDV and CHOV glycoproteins but not SNV. In contrast, CHOV-GnH-mi3 nanoparticles elicited only a homotypic neutralizing response. Finally, the reactivity of sera from mice immunized with a cocktail of ANDV-GnH-mi3 and SNV-GnH-mi3 nanoparticles was similar to sera from mice immunized with ANDV-GnH-mi3, only indicating that the SNV-GnH-mi3 antibody response was not even homotypically neutralizing. These results suggest that there are differences in immunodominance that may contribute to the breadth of the hantavirus-targeting neutralizing response elicited by GnH-based immunogens. Nonetheless, the cross-neutralizing sera obtained by ANDV-GnH-mi3 immunization suggest that developing broad immunogens may be possible with appropriate engineering.

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来源期刊
ACS Infectious Diseases
ACS Infectious Diseases CHEMISTRY, MEDICINALINFECTIOUS DISEASES&nb-INFECTIOUS DISEASES
CiteScore
9.70
自引率
3.80%
发文量
213
期刊介绍: ACS Infectious Diseases will be the first journal to highlight chemistry and its role in this multidisciplinary and collaborative research area. The journal will cover a diverse array of topics including, but not limited to: * Discovery and development of new antimicrobial agents — identified through target- or phenotypic-based approaches as well as compounds that induce synergy with antimicrobials. * Characterization and validation of drug target or pathways — use of single target and genome-wide knockdown and knockouts, biochemical studies, structural biology, new technologies to facilitate characterization and prioritization of potential drug targets. * Mechanism of drug resistance — fundamental research that advances our understanding of resistance; strategies to prevent resistance. * Mechanisms of action — use of genetic, metabolomic, and activity- and affinity-based protein profiling to elucidate the mechanism of action of clinical and experimental antimicrobial agents. * Host-pathogen interactions — tools for studying host-pathogen interactions, cellular biochemistry of hosts and pathogens, and molecular interactions of pathogens with host microbiota. * Small molecule vaccine adjuvants for infectious disease. * Viral and bacterial biochemistry and molecular biology.
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