Institute for Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON M5S 3G9, Canada.
Lab Chip. 2015 Jul 7;15(13):2799-807. doi: 10.1039/c5lc00375j. Epub 2015 May 26.
Rapid phenotyping of bacteria to identify drug-resistant strains is an important capability for the treatment and management of infectious disease. At present, the rapid determination of antibiotic susceptibility is hindered by the requirement that, in existing devices, bacteria must be pre-cultured for 2-3 days to reach detectable levels. Here we report a novel electrochemical approach that achieves rapid readout of the antibiotic susceptibility profile of a bacterial infection within one hour. The electrochemical reduction of a redox-active molecule is monitored that reports on levels of metabolically-active bacteria. Bacteria are captured in miniaturized wells, incubated with antimicrobials and monitored for resistance. This electrochemical phenotyping approach is effective with clinically-relevant levels of bacteria, and provides results comparable to culture-based analysis. Results, however, are delivered on a much faster timescale, with resistance profiles available after a one hour incubation period.
快速表型细菌以鉴定耐药菌株是治疗和管理传染病的重要能力。目前,快速确定抗生素敏感性受到限制,因为在现有设备中,细菌必须预先培养 2-3 天才能达到可检测水平。在这里,我们报告了一种新的电化学方法,该方法可在一小时内快速读取细菌感染的抗生素敏感性谱。监测报告代谢活跃细菌水平的氧化还原活性分子的电化学还原。将细菌捕获在小型化井中,与抗菌药物孵育并监测耐药性。这种电化学生物表型分析方法对临床相关水平的细菌有效,并提供与基于培养的分析相当的结果。然而,结果在更短的时间尺度上提供,在一小时孵育期后即可获得耐药谱。