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An integrated microfluidic device utilizing dielectrophoresis and multiplex array PCR for point-of-care detection of pathogens

机译:使用介电电泳和多重阵列PCR的集成微流控设备,用于病原体的即时检测

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The early identification of causative pathogens in clinical specimens that require no cultivation is essential for directing evidence-based antimicrobial treatments in resource limited settings. Here, we describe an integrated microfluidic device for the rapid identification of pathogens in complex physiological matrices such as blood. The device was designed and fabricated using SiipChip technologies, which integrated four channels processing independent samples and identifying up to twenty different pathogens. Briefly, diluted whole human blood samples were directly injected into the device for analysis. The pathogens were extracted from the blood by dielectrophoresis, retained in an array of grooves, and identified by multiplex array PCR in nanoliter volumes with end-point fluorescence detection. The universality of the dielectrophoretic separation of pathogens from physiological fluids was evaluated with a panel of clinical isolates covering predominant bacterial and fungal species. Using this system, we simultaneously identified Pseudomonas aeruginosa, Staphylococcus aureus and Escherichia coli O157:H7 within 3 h. In addition to the prompt diagnosis of bloodstream infections, this method may also be utilized for differentiating microorganisms in contaminated water and environmental samples.
机译:在资源有限的环境中,早期鉴定不需要培养的临床标本中的致病性病原体对于指导循证抗菌治疗至关重要。在这里,我们描述了一种集成的微流控设备,用于快速识别复杂的生理基质(例如血液)中的病原体。该设备使用SiipChip技术进行设计和制造,该技术集成了四个通道,可处理独立的样品并识别多达20种不同的病原体。简而言之,将稀释的全人类血液样本直接注入设备进行分析。通过介电电泳从血液中提取病原体,将其保留在凹槽阵列中,并通过纳米阵列体积的多重阵列PCR与终点荧光检测进行鉴定。用一组涵盖主要细菌和真菌物种的临床分离株评估病原体从生理性液体中进行电泳分离的普遍性。使用此系统,我们在3 h内同时鉴定了铜绿假单胞菌,金黄色葡萄球菌和大肠杆菌O157:H7。除了迅速诊断出血流感染外,该方法还可用于区分受污染的水和环境样品中的微生物。

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