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Label-free electrochemical biosensors for clinical diagnostic

机译:用于临床诊断的无标记电化学生物传感器

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We present the development of a high sensitivity, label-free, biosensor platform suitable for multiplexed point-of-care diagnostics. A sensor surface based on a carboxy-terminated oligo ethylene-glycol (OEG) self-assembled monolayer (SAM) was developed and fully characterised. Optimal conditions for antibody immobilisation were found for a buffer pH approximately one unit below the pI of the antibody, which yielded both higher antibody density on the sensor surface as well as higher sensor response to the antigen. At the same time the surface showed good resistance to non-specific adsorption of high concentrations of proteins. A non-faradaic electrochemical impedance spectroscopy biosensor to detect human chorionic gonadotropin (hCG) in full serum was demonstrated as a proof of concept. By using the phase of the impedance at 100 mHz as the sensor response, a linear relationship of the phase shift vs the logarithm of hCG concentration was established between 26 fM and 0.26 nM with a sensitivity of 0.6 degree per decade, which is a significant improvement over current state-of-the-art biosensor systems.
机译:我们介绍了适用于多路复用的护理点诊断的高灵敏度,无标签,生物传感器平台的开发。基于羧基封端的寡核苷酸(OEG)自组装单层(SAM)的传感器表面进行了表征。发现抗体固定的最佳条件用于抗体PI以下的缓冲液pH,其在传感器表面上产生较高的抗体密度以及对抗原的更高的传感器响应。同时,表面对高浓度的蛋白质的非特异性吸附性良好抗性。作为概念证明,将非法电化学阻抗光谱生物传感器检测全血清中的人绒毛膜促性腺激素(HCG)作为概念证明。通过使用100MHz的阻抗的相位作为传感器响应,相移VS的线性关系与HCG浓度的对数建立在26件至0.26nm之间,灵敏度为每十年0.6度,这是一个显着的改善在目前的最先进的生物传感器系统。

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