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A new microfluidic approach for the one-step capture amplification and label-free quantification of bacteria from raw samples

机译:一种新的微流控方法可对原始样品中的细菌进行一步捕获扩增和无标记定量

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摘要

A microfluidic method to specifically capture and detect infectious bacteria based on immunorecognition and proliferative power is presented. It involves a microscale fluidized bed in which magnetic and drag forces are balanced to retain antibody-functionalized superparamagnetic beads in a chamber during sample perfusion. Captured cells are then cultivated in situ by infusing nutritionally-rich medium. The system was validated by the direct one-step detection of Salmonella Typhimurium in undiluted unskimmed milk, without pre-treatment. The growth of bacteria induces an expansion of the fluidized bed, mainly due to the volume occupied by the newly formed bacteria. This expansion can be observed with the naked eye, providing simple low-cost detection of only a few bacteria and in a few hours. The time to expansion can also be measured with a low-cost camera, allowing quantitative detection down to 4 cfu (colony forming unit), with a dynamic range of 100 to 107 cfu ml–1 in 2 to 8 hours, depending on the initial concentration. This mode of operation is an equivalent of quantitative PCR, with which it shares a high dynamic range and outstanding sensitivity and specificity, operating at the live cell rather than DNA level. Specificity was demonstrated by controls performed in the presence of a 500× excess of non-pathogenic Lactococcus lactis. The system's versatility was demonstrated by its successful application to the detection and quantitation of Escherichia coli O157:H15 and Enterobacter cloacae. This new technology allows fast, low-cost, portable and automated bacteria detection for various applications in food, environment, security and clinics.
机译:提出了一种基于免疫识别和增殖能力的特异性捕获和检测传染性细菌的微流体方法。它涉及一个微型流化床,在该流化床中,磁力和拖曳力是平衡的,以在样品灌注过程中将抗体功能化的超顺磁珠保持在腔室内。然后通过注入营养丰富的培养基原位培养捕获的细胞。该系统通过未经预处理的脱脂脱脂牛奶中的鼠伤寒沙门氏菌的直接一步检测而得到验证。细菌的生长引起流化床的膨胀,这主要是由于新形成的细菌所占据的体积。可以用肉眼观察到这种膨胀,从而仅需几个小时即可进行低成本的简单检测。扩展时间也可以使用低成本相机进行测量,允许定量检测低至4 cfu(菌落形成单位),动态范围为100至10 7 cfu ml – 1 在2至8小时内,具体取决于初始浓度。这种操作模式等效于定量PCR,它具有较高的动态范围,并具有出色的灵敏度和特异性,可在活细胞而非DNA水平上操作。通过在500倍过量的非致病性乳酸乳球菌存在下进行的对照证明了特异性。该系统的多功能性已成功应用于检测和定量大肠杆菌O157:H15和阴沟肠杆菌。这项新技术允许快速,低成本,便携式和自动化的细菌检测,用于食品,环境,安全和诊所的各种应用。

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