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Quantum dot enabled detection of Escherichia coli using a cell-phone

机译:量子点启用大肠杆菌的检测使用手机

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摘要

We report a cell-phone based Escherichia coli (E. coli) detection platform for screening of liquid samples. In this compact and cost-effective design attached to a cell-phone, we utilize anti-E. coli O157:H7 antibody functionalized glass capillaries as solid substrates to perform a quantum dot based sandwich assay for specific detection of E. coli O157:H7 in liquid samples. Using battery-powered inexpensive light-emitting-diodes (LEDs) we excite/pump these labelled E. coli particles captured on the capillary surface, where the emission from the quantum dots is then imaged using the cell-phone camera unit through an additional lens that is inserted between the capillary and the cell-phone. By quantifying the fluorescent light emission from each capillary tube, the concentration of E. coli in the sample is determined. We experimentally confirmed the detection limit of this cell-phone based fluorescent imaging and sensing platform as ~5 to 10 cfu mL−1 in buffer solution. We also tested the specificity of this E. coli detection platform by spiking samples with different species (e.g., Salmonella) to confirm that non-specific binding/detection is negligible. We further demonstrated the proof-of-concept of our approach in a complex food matrix, e.g., fat-free milk, where a similar detection limit of ~5 to 10 cfu mL−1 was achieved despite challenges associated with the density of proteins that exist in milk. Our results reveal the promising potential of this cell-phone enabled field-portable and cost-effective E. coli detection platform for e.g., screening of water and food samples even in resource limited environments. The presented platform can also be applicable to other pathogens of interest through the use of different antibodies.
机译:我们报告了一种用于筛选液体样品的基于手机基础的大肠杆菌(大肠杆菌)检测平台。在这种紧凑且经济高效的设计中,我们利用反e。 COLI O157:H7抗体官能化玻璃毛细管作为固体基材,用于在液体样品中进行大肠杆菌O157:H7的特异性检测量的基于含量的夹层测定。使用电池供电的廉价发光二极管(LED)我们激发/泵送这些标记的大肠杆菌颗粒在毛细管表面上捕获,然后通过额外的镜头使用手机摄像机单元对来自量子点的发射进行成像插入毛细管和手机之间。通过量化来自每个毛细管的荧光发光,测定样品中大肠杆菌的浓度。我们通过在缓冲溶液中通过实验证实了该细胞 - 电话基荧光成像和感测平台的检测极限在〜5至10cfu ml -1 -1 / sop>。我们还通过用不同物种(例如,沙门氏菌)掺入样品来测试该大肠杆菌检测平台的特异性以确认非特异性结合/检测可忽略不计。我们进一步展示了我们在复杂的食物基质中的方法的概念证明,例如脂肪牛奶,其中尽管存在挑战,但仍然可以实现类似的检测限〜5至10cfu ml -1 -1 -1 / sup>与牛奶中存在的蛋白质密度相关联。我们的结果揭示了这种手机的现场便携式和经济高效的大肠杆菌检测平台的有希望的潜力,例如,即使在资源有限的环境中也筛选水和食品样本。呈现的平台还可以通过使用不同抗体适用于其他感兴趣的病原体。

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