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首页> 外文期刊>Lab on a chip >A portable smart phone-based plasmonic nanosensor readout platform that measures transmitted light intensities of nanosubstrates using an ambient light sensor
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A portable smart phone-based plasmonic nanosensor readout platform that measures transmitted light intensities of nanosubstrates using an ambient light sensor

机译:基于便携式智能手机的等离激元纳米传感器读取平台,可使用环境光传感器测量纳米基板的透射光强度

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摘要

Plasmonic nanosensors may be used as tools for diagnostic testing in the field of medicine. However, quantification of plasmonic nanosensors often requires complex and bulky readout instruments. Here, we report the development of a portable smart phone-based plasmonic nanosensor readout platform (PNRP) for accurate quantification of plasmonic nanosensors. This device operates by transmitting excitation light from a LED through a nanosubstrate and measuring the intensity of the transmitted light using the ambient light sensor of a smart phone. The device is a cylinder with a diameter of 14 mm, a length of 38 mm, and a gross weight of 3.5 g. We demonstrated the utility of this smart phone-based PNRP by measuring two well-established plasmonic nanosensors with this system. In the first experiment, the device measured the morphology changes of triangular silver nanoprisms (AgNPRs) in an immunoassay for the detection of carcinoembryonic antigen (CEA). In the second experiment, the device measured the aggregation of gold nanoparticles (AuNPs) in an aptamer-based assay for the detection of adenosine triphosphate (ATP). The results from the smart phone-based PNRP were consistent with those from commercial spectrophotometers, demonstrating that the smart phone-based PNRP enables accurate quantification of plasmonic nanosensors.
机译:等离子体等离子传感器可以用作医学领域诊断测试的工具。然而,等离激元纳米传感器的定量通常需要复杂且庞大的读出仪器。在这里,我们报告基于便携式智能手机的等离激元纳米传感器读出平台(PNRP)的发展,用于对等离激元纳米传感器的精确定量。该设备通过将来自LED的激发光透射通过纳米基板并使用智能手机的环境光传感器测量透射光的强度来进行操作。该设备是圆柱体,直径为14毫米,长度为38毫米,总重为3.5克。我们通过使用该系统测量两个完善的等离激元纳米传感器,证明了基于智能手机的PNRP的实用性。在第一个实验中,该设备在用于检测癌胚抗原(CEA)的免疫测定中测量了三角形银纳米棱镜(AgNPR)的形态变化。在第二个实验中,该设备在基于适体的检测三磷酸腺苷(ATP)的方法中测量了金纳米颗粒(AuNPs)的聚集。基于智能手机的PNRP的结果与商用分光光度计的结果一致,表明基于智能手机的PNRP能够对等离激元纳米传感器进行精确定量。

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