The plaque assay has long served as the "gold standard" to measure virus infectivity and test antiviral drugs, but the assay is labor-intensive, lacks sensitivity, uses excessive reagents, and is hard to automate. Recent modification of the assay to exploit flow-enhanced virus spread with quantitative imaging has increased its sensitivity. Here we performed flow-enhanced infection assays in microscale channels, employing passive fluid pumping to inoculate cell monolayers with virus and drive infection spread. Our test of an antiviral drug (5-fluorouracil) against vesicular stomatitis virus infections of BHK cell monolayers yielded a two-fold improvement in sensitivity, relative to the standard assay based on plaque counting. The reduction in scale, simplified fluid handling, image-based quantification, and higher assay sensitivity will enable infection measurements for high-throughput drug screening, sero-conversion testing, and patient-specific diagnosis of viral infections.
Infection on a chip: a microscale platform for simple and sensitive cell-based virus assays.
芯片上的感染:一种用于简单、灵敏的基于细胞的病毒检测的微型平台
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作者:Zhu Ying, Warrick Jay W, Haubert Kathryn, Beebe David J, Yin John
| 期刊: | Biomedical Microdevices | 影响因子: | 3.300 |
| 时间: | 2009 | 起止号: | 2009 Jun;11(3):565-70 |
| doi: | 10.1007/s10544-008-9263-7 | 研究方向: | 细胞生物学 |
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