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Electron-Beam-Lithographed Nanostructures as Reference Materials for Label-Free Scattered-Light Biosensing of Single Filoviruses

机译:电子束光刻纳米结构作为单丝病毒无标签散射光生物传感的参考材料

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摘要

Optical biosensors based on scattered-light measurements are being developed for rapid and label-free detection of single virions captured from body fluids. Highly controlled, stable, and non-biohazardous reference materials producing virus-like signals are valuable tools to calibrate, evaluate, and refine the performance of these new optical biosensing methods. To date, spherical polymer nanoparticles have been the only non-biological reference materials employed with scattered-light biosensing techniques. However, pathogens like filoviruses, including the Ebola virus, are far from spherical and their shape strongly affects scattered-light signals. Using electron beam lithography, we fabricated nanostructures resembling individual filamentous virions attached to a biosensing substrate (silicon wafer overlaid with silicon oxide film) and characterized their dimensions with scanning electron and atomic force microscopes. To assess the relevance of these nanostructures, we compared their signals across the visible spectrum to signals recorded from Ebola virus-like particles which exhibit characteristic filamentous morphology. We demonstrate the highly stable nature of our nanostructures and use them to obtain new insights into the relationship between virion dimensions and scattered-light signal.
机译:正在开发基于散射光测量的光学生物传感器,以快速,无标签地检测从体液中捕获的单个病毒体。高度受控,稳定且无生物危害的参考材料会产生病毒样信号,是校准,评估和改进这些新型光学生物传感方法性能的宝贵工具。迄今为止,球形聚合物纳米颗粒已成为散射光生物传感技术中唯一使用的非生物参考材料。但是,诸如埃博拉病毒等丝状病毒的病原体远非球形,其形状会强烈影响散射光信号。使用电子束光刻技术,我们制造了类似于附着在生物传感衬底(覆盖有氧化硅膜的硅片)上的单个丝状病毒体的纳米结构,并通过扫描电子和原子力显微镜对其尺寸进行了表征。为了评估这些纳米结构的相关性,我们将它们在可见光谱范围内的信号与从埃博拉病毒样颗粒记录的信号进行了比较,这些颗粒表现出特征性的丝状形态。我们展示了我们纳米结构的高度稳定性,并利用它们获得了有关病毒体尺寸和散射光信号之间关系的新见解。

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