病毒学
异源的
重新分配
表位
生物
中和
免疫
接种疫苗
人性化鼠标
病毒
病毒载体
中和抗体
抗体
埃博拉病毒
病毒蛋白
免疫学
猴痘
HEK 293细胞
免疫原性
计算生物学
作者
Xilin Wu,Linjing Zhu,Shengjian Liang,Zhen Chang,Ya-Xin Wang,Qingcui Zou,Zhili Xu,Doudou Zhang,Jiaqian Hu,Shengya Geng,Zhifeng Li,Wenkui Yu,Zhiliang Hu,Ming Chen,Ke Cao,Bei Jia,Hongxia Wei,Rentian Cai,Junyi Long,Xiaoman Yang
标识
DOI:10.1126/scitranslmed.ady9025
摘要
Severe fever with thrombocytopenia syndrome virus (SFTSV), an emerging tick-borne phlebovirus, poses a growing public health threat, with no approved vaccines or targeted therapies. Its genetic diversity and rapid reassortment have hindered the development of broadly effective interventions. Here, we isolated and characterized broadly neutralizing camelid nanobodies generated by a heterologous immunization strategy. These nanobodies exhibited cross-subtype neutralization and conferred protection against disease in humanized and lethal murine models of SFTSV infection. Structural analysis revealed binding to distinct, nonoverlapping epitopes on the viral glycoprotein complex. A rationally designed cocktail leveraging this epitope diversity achieved complete viral inhibition through synergistic mechanisms. In both murine and immunocompetent ferret models, the cocktail enabled efficient viral clearance and full protection against lethal challenge. These results demonstrate the therapeutic potential of nanobody cocktails for SFTSV infection and establish a generalizable framework for nanobody-based countermeasures against genetically variable emerging viruses, including other members of the Bunyavirales order.
科研通智能强力驱动
Strongly Powered by AbleSci AI