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脂质介导的生物合成标记策略用于禽流感病毒感染的体内动态追踪

Lipid-mediated biosynthetic labeling strategy for in vivo dynamic tracing of avian influenza virus infection.

作者信息

Liu Junfang, Su Minhong, Chen Xin, Li Zhongli, Fang Zekui, Yi Li

机构信息

Department of Pulmonary and Critical Care Medicine, Zhujiang Hospital, 70570Southern Medical University, Guangzhou, China.

Special Medical Service Center, Zhujiang Hospital, 70570Southern Medical University, Guangzhou, China.

出版信息

J Biomater Appl. 2022 Apr;36(9):1689-1699. doi: 10.1177/08853282211063298. Epub 2022 Jan 7.

Abstract

Monitoring the infection behavior of avian influenza viruses is crucial for understanding viral pathogenesis and preventing its epidemics among people. A number of viral labeling methods have been utilized for tracking viral infection process, but most of them are laborious or decreasing viral activity. Herein we explored a lipid biosynthetic labeling strategy for dynamical tracking the infection of H5N1 pseudotype virus (H5N1p) in host. Biotinylated lipids (biotinyl Cap-PE) were successfully incorporated into viral envelope when it underwent budding process by taking advantage of host cell-derived lipid metabolism. Biotin-H5N1p virus was effectively in situ-labeled with streptavidin-modified near-infrared quantum dots (NIR SA-QDs) using streptavidin-biotin conjugation with well-preserved virus activities. Dual-labeled imaging obviously shows that H5N1p viruses are primarily taken up in host cells via clathrin-mediated endocytosis. In animal models, Virus-conjugated NIR QDs displayed extraordinary photoluminescence, superior stability, and tissue penetration in lung, allowing us to long-term monitor respiratory viral infection in a noninvasive manner. Importantly, the co-localization of viral hemagglutinin protein and QDs in infected lung further conformed the dynamic infection process of virus in vivo. Hence, this in situ QD-labeling strategy based on cell natural biosynthesis provides a brand-new and reliable tool for noninvasion visualizing viral infection in body in a real-time manner.

摘要

监测禽流感病毒的感染行为对于理解病毒发病机制以及预防其在人群中的流行至关重要。已经使用了多种病毒标记方法来追踪病毒感染过程,但其中大多数方法操作繁琐或会降低病毒活性。在此,我们探索了一种脂质生物合成标记策略,用于动态追踪H5N1假型病毒(H5N1p)在宿主中的感染情况。利用宿主细胞衍生的脂质代谢,生物素化脂质(生物素化Cap-PE)在病毒出芽过程中成功掺入病毒包膜。通过链霉亲和素-生物素共轭反应,生物素-H5N1p病毒被链霉亲和素修饰的近红外量子点(NIR SA-QDs)有效地原位标记,且病毒活性得以良好保留。双标记成像明显显示,H5N1p病毒主要通过网格蛋白介导的内吞作用被宿主细胞摄取。在动物模型中,病毒共轭的NIR量子点在肺部表现出非凡的光致发光、卓越的稳定性和组织穿透性,使我们能够以非侵入性方式长期监测呼吸道病毒感染。重要的是,病毒血凝素蛋白与量子点在受感染肺部的共定位进一步证实了病毒在体内的动态感染过程。因此,这种基于细胞天然生物合成的原位量子点标记策略为实时非侵入性可视化体内病毒感染提供了一种全新且可靠的工具。

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