Shrivastava-Ranjan Punya, Kelly Jamie A, McMullan Laura K, Cannon Deborah, Morgan Laura, Chatterjee Payel, Jain Shilpi, Montgomery Joel M, Flint Mike, Albariño César G, Spiropoulou Christina F
Viral Special Pathogens Branch, Division of High Consequence Pathogens and Pathology, Centers for Disease Control and Prevention, Atlanta, GA 30329, USA.
Viruses. 2025 May 19;17(5):723. doi: 10.3390/v17050723.
Hantaviruses, including the Sin Nombre virus (SNV) and Andes virus (ANDV), are associated with severe global health risks, causing high mortality rates in hantavirus pulmonary syndrome (HPS) patients. Neutralizing antibodies are essential for virus clearance and survival, making neutralization assays critical for understanding immunity and evaluating therapeutic strategies. In this study, we developed a recombinant vesicular stomatitis virus (VSV)-based surrogate system expressing SNV and ANDV glycoproteins (GPCs), enabling neutralization studies under biosafety level 2 conditions. The neutralization titers obtained with the VSV-based system closely matched the findings from authentic hantavirus assays performed under biosafety level 3 conditions, confirming its potential as a useful tool for determining immune responses and advancing hantavirus research.
汉坦病毒,包括辛诺柏病毒(SNV)和安第斯病毒(ANDV),与严重的全球健康风险相关,可导致汉坦病毒肺综合征(HPS)患者的高死亡率。中和抗体对于病毒清除和存活至关重要,这使得中和试验对于理解免疫和评估治疗策略至关重要。在本研究中,我们开发了一种基于重组水疱性口炎病毒(VSV)的替代系统,该系统表达SNV和ANDV糖蛋白(GPC),能够在生物安全2级条件下进行中和研究。基于VSV的系统获得的中和滴度与在生物安全3级条件下进行的真实汉坦病毒试验结果密切匹配,证实了其作为确定免疫反应和推进汉坦病毒研究的有用工具的潜力。