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Electrochemical ELISA-based platform for bladder cancer protein biomarker detection in urine

机译:基于电化学ELISA的膀胱癌蛋白生物标志物检测平台尿液

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A novel fluidic-based electrochemical ELISA platform is descried for estimation of the bladder cancer protein markers nuclear mitotic apparatus protein 1 (NUMA1) and complement factor H-related 1 (CFHR1). The platform uses an off-site chamber for a sandwich immunoassay and performs the electrochemistry on-chip in a separate chamber. The off-site matrices were connected to the sensor chip in a manner that the sensors were exposed only to the final electroactive product for signal detection, thus avoiding interference from other molecules present in the sample. Two off-site matrices using 3D polymethyl methacrylate (PMMA) sheets and 2D polycarbonate (PC) membranes modified with the desired antibodies were investigated. Antibodies for NUMA1 and CFHR1 were utilized for the immunoassay and hair comb structured gold electrodes were used for sensing. Results in 10% synthetic urine reveal that the system can detect NUMA1 and CFHR1 in the 1-100 ng/ml range with high sensitivities of 260 nA/(ng/ml) and 310 nA/(ng/ml), for NUMA1 and CFHR1, respectively; negligible interference from the diluted urine and other molecules has been observed. A fully automated fluidic prototype has also been developed to demonstrate that automation of the process and multiplexing of detection can be achieved in a small footprint benchtop device. The use of off-site matrix-based platforms paves the way towards a new generation of electrochemical immunosensors for biomarker estimation with negligible non-specific interactions and false signals in complex samples.
机译:描述了一种新型流体基电化学ELISA平台,用于估计膀胱癌蛋白标记核有机丝蛋白蛋白1(NUMA1)和补体因子H相关1(CFHR1)。该平台采用夹层免疫测定的外场室,并在单独的室内进行芯片上的电化学。偏离现场基质以传感器仅暴露于用于信号检测的最终电活性产物的方式,从而避免了样品中存在的其他分子的干扰。研究了使用3D聚甲基丙烯酸甲酯(PMMA)片和2D聚碳酸酯(PC)用所需抗体改性的三维聚甲基丙烯酸甲酯(PMMA)片材和2D聚碳酸酯(PC)膜的两种非现场基质。用于NUMA1和CFHR1的抗体用于免疫测定和毛发梳理结构金电极用于感测。结果10%的合成尿液显示,系统可以检测1-100ng / ml范围内的NUMA1和CFHR1,具有高灵敏度为260na /(ng / ml)和310na /(ng / ml),用于NUMA1和CFHR1 , 分别;已经观察到稀释尿液和其他分子的可忽略不计的干扰。还开发了一种全自动流体原型,以证明可以在小型占地板设备中实现检测的过程和复用的自动化。使用非现场矩阵的平台为生物标志物估计的新一代电化学免疫传感器铺平了新的电化学免疫传感器,并且在复杂样品中具有可忽略的非特异性相互作用和假信号。

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