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Polymerase Chain Reaction-Free, Sample-to-Answer Bacterial Detection in 30 Minutes with Integrated Cell Lysis

机译:30分钟内无聚合酶链反应,样品到细菌的检测以及整合的细胞裂解

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An important goal for improved diagnosis and management of infectious disease is the development of rapid and accurate technologies for the decentralized detection of bacterial pathogens. Most current clinical methods that identify bacterial strains require time-consuming culture of the sample or procedures involving the polymerase chain reaction. Neither of these approaches has enabled testing at the point-of-need because of the requirement for skilled technicians and laboratory facilities. Here, we demonstrate the performance of an effective, integrated platform for the rapid detection of bacteria that combines a universal bacterial lysis approach and a sensitive nanostructured electrochemical biosensor. The lysis is rapid, is effective at releasing intercellular RNA from bacterial samples, and can be performed in a simple, cost-effective device integrated with an analysis chip. The platform was directly challenged with these unpurified lysates in buffer and urine. We successfully detected the presence of bacteria with high sensitivity and specificity and achieved a sample-to-answer turnaround time of 30 min. We have met the clinically relevant detection limit of 1 cfu/(mu)L, indicating that uncultured samples can be analyzed. This advance will greatly reduce time to successful detection from days to minutes.
机译:改善传染病诊断和管理的重要目标是开发快速,准确的技术来分散检测细菌病原体。当前鉴定细菌菌株的大多数临床方法需要耗时的样品培养或涉及聚合酶链反应的程序。由于需要熟练的技术人员和实验室设施,因此这些方法都无法在需要的地方进行测试。在这里,我们展示了一种有效的,集成的平台,可快速检测细菌,结合了通用的细菌裂解方法和灵敏的纳米结构电化学生物传感器,可实现高性能。裂解速度快,可有效地从细菌样品中释放细胞间RNA,并可在集成了分析芯片的简单,经济高效的设备中进行裂解。这些缓冲液和尿液中的这些未纯化的裂解物直接挑战了平台。我们成功地检测到了具有高灵敏度和特异性的细菌,并实现了30分钟的样品应答时间。我们已达到1 cfu /μL的临床相关检测限,表明可以对未培养的样品进行分析。这一进步将极大地减少成功检测所需的时间,从几天缩短到几分钟。

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