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Multianalyte detection using fiber optic particle plasmon resonance sensor based on plasmonic light scattering interrogation

机译:基于等离子光散射询问的光纤颗粒等离子体共振传感器进行多分析物检测

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A highly sensitive fiber optic particle plasmon resonance sensor (FO-PPR) is demonstrated for label-free biochemical detection. The sensing strategy relies on interrogating the plasmonic scattering of light from gold nanoparticles on the optical fiber in response to the surrounding refractive index changes or molecular binding events. The refractive index resolution is estimated to be 3.8 × 10~(-5) RIU. The limit of detection for anti-DNP antibody spiked in buffer is 1.2 × 10~(-9) g/ml (5.3 pM) by using the DNP-functionalized FO-PPR sensor. The image processing of simultaneously recorded plasmonic scattering photographs at different compartments of the sensor is also demonstrated. Results suggest that the compact sensor can perform multiple independent measurements simultaneously by means of monitoring the plasmonic scattering intensity via photodiodes or a CCD. The potential of using a combination of different kinds of noble metal nanoparticles with different types of functionalized probes in multiple cascaded detection windows on a single fiber to become an inexpensive and ultrasensitive linear-array sensing platform for higher-throughput biochemical detection is provided.
机译:高灵敏度的光纤粒子等离子体激元共振传感器(FO-PPR)被证明可用于无标记生化检测。传感策略依赖于响应周围折射率变化或分子结合事件,询问光纤上金纳米颗粒发出的光的等离子体散射。折射率分辨率估计为3.8×10〜(-5)RIU。使用DNP功能化的FO-PPR传感器,加标在缓冲液中的抗DNP抗体的检出限为1.2×10〜(-9)g / ml(5.3 pM)。还演示了在传感器的不同隔室中同时记录的等离激元散射照片的图像处理。结果表明,该紧凑型传感器可以通过监控光电二极管或CCD的等离子体散射强度来同时执行多个独立的测量。提供了将不同种类的贵金属纳米粒子与不同类型的功能化探针结合使用在单根光纤上的多个级联检测窗口中的潜力,从而成为一种廉价且超灵敏的线性阵列传感平台,可用于更高通量的生化检测。

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