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用于研究病毒结合动力学和单颗粒灵敏度扩散的细胞膜衍生平台。

Cell Membrane Derived Platform To Study Virus Binding Kinetics and Diffusion with Single Particle Sensitivity.

作者信息

Peerboom Nadia, Schmidt Eneas, Trybala Edward, Block Stephan, Bergström Tomas, Pace Hudson P, Bally Marta

机构信息

Department of Physics , Chalmers University of Technology , Fysikgränd 3 , 412 96 Göteborg , Sweden.

Department of Infectious Diseases, Section for Clinical Virology, Institute of Biomedicine , University of Gothenburg , Guldhedsgatan 10B , 413 46 Göteborg , Sweden.

出版信息

ACS Infect Dis. 2018 Jun 8;4(6):944-953. doi: 10.1021/acsinfecdis.7b00270. Epub 2018 May 8.

Abstract

Discovery and development of new antiviral therapies essentially rely on two key factors: an in-depth understanding of the mechanisms involved in viral infection and the development of fast and versatile drug screening platforms. To meet those demands, we present a biosensing platform to probe virus-cell membrane interactions on a single particle level. Our method is based on the formation of supported lipid bilayers from cell membrane material. Using total internal reflection fluorescence microscopy, we report the contribution of viral and cellular components to the interaction kinetics of herpes simplex virus type 1 with the cell membrane. Deletion of glycoprotein C (gC), the main viral attachment glycoprotein, or deletion of heparan sulfate, an attachment factor on the cell membrane, leads to an overall decrease in association of virions to the membrane and faster dissociation from the membrane. In addition to this, we perform binding inhibition studies using the antiviral compound heparin to estimate its IC value. Finally, single particle tracking is used to characterize the diffusive behavior of the virus particles on the supported lipid bilayers. Altogether, our results promote this platform as a complement to existing bioanalytical assays, being at the interface between simplified artificial membrane models and live cell experiments.

摘要

新型抗病毒疗法的发现与开发主要依赖于两个关键因素

深入了解病毒感染所涉及的机制以及开发快速且通用的药物筛选平台。为满足这些需求,我们提出了一种生物传感平台,用于在单颗粒水平上探测病毒与细胞膜的相互作用。我们的方法基于由细胞膜材料形成支撑脂质双层。利用全内反射荧光显微镜,我们报道了病毒和细胞成分对1型单纯疱疹病毒与细胞膜相互作用动力学的贡献。主要病毒附着糖蛋白糖蛋白C(gC)的缺失或细胞膜上附着因子硫酸乙酰肝素的缺失,导致病毒粒子与膜的结合总体减少,并更快地从膜上解离。除此之外,我们使用抗病毒化合物肝素进行结合抑制研究以估计其IC值。最后,利用单颗粒追踪来表征病毒粒子在支撑脂质双层上的扩散行为。总之,我们的结果推动了这个平台成为现有生物分析检测的补充,处于简化人工膜模型和活细胞实验之间的界面。

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