首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A smartphone-based particle diffusometry platform for sub-attomolar detection of Vibrio cholerae in environmental water
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A smartphone-based particle diffusometry platform for sub-attomolar detection of Vibrio cholerae in environmental water

机译:基于智能手机的粒子扩散模量平台,用于环境水中振动霍乱的亚抗摩尔检测

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摘要

Each year, 3.4 million people die from waterborne diseases worldwide. Development of a rapid and portable platform for detecting and monitoring waterborne pathogens would significantly aid in reducing the incidence and spread of infectious diseases. By combining optical methods and smartphone technology with molecular assays, the sensitivity required to detect exceedingly low concentrations of waterborne pathogens can readily be achieved. Here, we implement smartphone-based particle diffusometry (PD) detection of loop-mediated isothermal amplification (LAMP) targeting the waterborne pathogen Vibrio cholerae (V. cholerae). By measuring the diffusion of 400 nm streptavidin-coated fluorescent nanoparticles imaged at 68X magnification on a smartphone, we can detect as few as 6 V. cholerae cells per reaction (0.66 aM) in just 35 minutes. In a doubleblinded study with 132 pond water samples, we establish a 91.8% sensitivity, 95.2% specificity, and 94.3% accuracy of the smartphone-based PD platform for detection of V. cholerae. Together, these results demonstrate the utility of this smartphone-based PD platform for rapid and sensitive detection of V. cholerae at the point of use.
机译:每年,340万人死于全世界的水性疾病。用于检测和监测水性病原体的快速和便携式平台的开发将显着帮助降低传染病的发病率和传播。通过将光学方法和智能手机技术与分子测定相结合,可以容易地实现检测超过低浓度的水性病原体所需的灵敏度。在这里,我们实施靶向水性病原体Vibrio霍乱(V.Cholerae)的环介导的等温扩增(灯)的智能手机的粒子扩散管(Pd)检测。通过测量在智能手机上以68倍放大率成像的400nm链霉蛋白涂覆的荧光纳米粒子的扩散,我们可以在短短35分钟内检测每次反应(0.66AM)的少至6 V.霍乱细胞。在具有132个池塘水样的普通研究中,我们建立了91.8%的灵敏度,95.2%的特异性,基于智能手机的PD平台的精度为95.2%,用于检测V.Cholerae的PD平台。这些结果一起展示了基于智能手机的PD平台的效用,以便在使用点进行V.霍乱的快速和敏感性检测。

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