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扩充腺病毒工具包:用于研究人腺病毒复制动态的报告病毒。

Expanding the adenovirus toolbox: reporter viruses for studying the dynamics of human adenovirus replication.

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada.

出版信息

J Virol. 2024 May 14;98(5):e0020724. doi: 10.1128/jvi.00207-24. Epub 2024 Apr 19.

Abstract

To streamline standard virological assays, we developed a suite of nine fluorescent or bioluminescent replication competent human species C5 adenovirus reporter viruses that mimic their parental wild-type counterpart. These reporter viruses provide a rapid and quantitative readout of various aspects of viral infection and replication based on EGFP, mCherry, or NanoLuc measurement. Moreover, they permit real-time non-invasive measures of viral load, replication dynamics, and infection kinetics over the entire course of infection, allowing measurements that were not previously possible. This suite of replication competent reporter viruses increases the ease, speed, and adaptability of standard assays and has the potential to accelerate multiple areas of human adenovirus research.IMPORTANCEIn this work, we developed a versatile toolbox of nine HAdV-C5 reporter viruses and validated their functions in cell culture. These reporter viruses provide a rapid and quantitative readout of various aspects of viral infection and replication based on EGFP, mCherry, or NanoLuc measurement. The utility of these reporter viruses could also be extended for use in 3D cell culture, organoids, live cell imaging, or animal models, and provides a conceptual framework for the development of new reporter viruses representing other clinically relevant HAdV species.

摘要

为了简化标准病毒学检测方法,我们开发了一套九种荧光或生物发光复制型人 5 型腺病毒报告病毒,它们模拟了其亲本野生型病毒。这些报告病毒基于 EGFP、mCherry 或 NanoLuc 测量,提供了病毒感染和复制各个方面的快速定量检测。此外,它们允许在整个感染过程中实时进行非侵入性的病毒载量、复制动力学和感染动力学测量,从而实现了以前不可能实现的测量。这组复制型报告病毒增加了标准检测的易用性、速度和适应性,并有潜力加速人类腺病毒研究的多个领域。

重要性

在这项工作中,我们开发了一套多功能的 HAdV-C5 报告病毒工具箱,并在细胞培养中验证了它们的功能。这些报告病毒基于 EGFP、mCherry 或 NanoLuc 测量,提供了病毒感染和复制各个方面的快速定量检测。这些报告病毒的用途也可以扩展到 3D 细胞培养、类器官、活细胞成像或动物模型,为开发代表其他临床相关 HAdV 种的新型报告病毒提供了一个概念框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d99/11092356/bde4aa78baa6/jvi.00207-24.f001.jpg

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