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GOLD-NANOPARTICLE-ENHANCED IGG IMMUNOLOGICAL DETECTION BY IN-SITU FABRY-PEROT SENSOR

机译:通过原位法布里 - 珀罗传感器进行金纳米粒子增强的IgG免疫学检测

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摘要

This paper proposes a needle-type biosensor for immunological application, which combines the abilities of real-time monitoring, in-situ measurement and high sensitivity, by adopting gold-nanoparticles (GNPs) coated with antibody to enhance the signal of Fabry-Perot (F-P) interferometry in an optic fiber sensing system. Strong reflection induced by larger index mismatch and longer optical path from GNPs-protein conjugation are suggested to attribute most to the signal enhancement in F-P interference shift. The experiments carry out the monitoring of immuno-sensing in real-time by the employment of rabbit IgG conjugate to GNPs-anti-rabbit IgG And the detection limit was demonstrated to approach 0.17 nM (~25.5 ng/ml), which was three orders of magnitude better than those of the traditional fiber-based F-P biosensors. Besides, the reproducibility of the sensor has been tested through at least three cycles of detection/surface-regeneration process and demonstrated a reasonable consistency. The relationship between the concentrations of GNPs-antibody and F-P spectrum shift has also been characterized. The time-constant of this sensor to complete one cycle of biomolecule-detection and surface-regeneration can be as low as 4 minutes.
机译:本文提出了一种针对免疫应用的针型生物传感器,它通过采用涂覆抗体的金纳米颗粒(GNP)来增强法布里 - 珀罗的信号来结合实时监测,原位测量和高灵敏度的能力。光纤传感系统中的FP)干涉测量。由GNPS-蛋白质缀合的较大指数失配和较长光路的强烈反射被建议归因于F-P干扰移位的信号增强。实验通过将兔IgG缀合物的就业进行实时对免疫感测的监测到GNPS-抗兔IgG,并证明检测限接近0.17nm(〜25.5ng / ml),这是三个订单比传统的基于纤维的FP生物传感器更好的数量。此外,传感器的再现性通过了至少三个检测/表面再生过程进行了测试,并证明了合理的稠度。还表征了GNPS-抗体和F-P谱移位浓度之间的关系。该传感器的时间常数以完成一个生物分子检测和表面再生循环可以低至4分钟。

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