Department of Chemistry, University of Illinois at Urbana-Champaign, 600 S. Mathews Avenue, Urbana, IL 61801, USA.
Biosens Bioelectron. 2012 Jan 15;31(1):388-92. doi: 10.1016/j.bios.2011.10.056. Epub 2011 Nov 11.
Viruses represent a continual threat to humans through a number of mechanisms, which include disease, bioterrorism, and destruction of both plant and animal food resources. Many contemporary techniques used for the detection of viruses and viral infections suffer from limitations such as the need for extensive sample preparation or the lengthy window between infection and measurable immune response, for serological methods. In order to develop a method that is fast, cost-effective, and features reduced sample preparation compared to many other virus detection methods, we report the application of silicon photonic microring resonators for the direct, label-free detection of intact viruses in both purified samples as well as in a complex, real-world analytical matrix. As a model system, we demonstrate the quantitative detection of Bean pod mottle virus, a pathogen of great agricultural importance, with a limit of detection of 10 ng/mL. By simply grinding a small amount of leaf sample in buffer with a mortar and pestle, infected leaves can be identified over a healthy control with a total analysis time of less than 45 min. Given the inherent scalability and multiplexing capability of the semiconductor-based technology, we feel that silicon photonic microring resonators are well-positioned as a promising analytical tool for a number of viral detection applications.
病毒通过多种机制对人类构成持续威胁,包括疾病、生物恐怖主义以及破坏植物和动物食物资源。许多用于检测病毒和病毒感染的现代技术存在局限性,例如需要广泛的样本制备,或者血清学方法在感染和可测量的免疫反应之间存在较长的窗口期。为了开发一种比许多其他病毒检测方法更快、更具成本效益且样本制备更少的方法,我们报告了硅光子微环谐振器在纯化样本以及复杂实际分析基质中对完整病毒的直接、无标记检测的应用。作为模型系统,我们展示了对豆荚斑驳病毒(一种具有重要农业意义的病原体)的定量检测,检测限为 10ng/mL。通过在研钵中用少量缓冲液研磨一小部分叶片样本,就可以在不到 45 分钟的总分析时间内,将受感染的叶片与健康对照区分开来。鉴于基于半导体的技术具有固有的可扩展性和多路复用能力,我们认为硅光子微环谐振器非常适合作为许多病毒检测应用的有前途的分析工具。