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A ten-minute, single step, label-free, sample-to-answer assay for qualitative detection of cytokines in serum at femtomolar levels

机译:十分分钟,单一步骤,无标记,样本到答案的测定,用于在Femtomolar水平的血清中的细胞因子进行定性检测

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摘要

Label-free electronic affinity based immuno-sensing is an attractive candidate as a platform technology for analyzing biomarkers due to the ease of miniaturization and minimal use of reagents. Electronic based sensing approaches, however, have lagged behind their optical counterparts in terms of detection limit, selectivity, and reliability. Also, the matrix dependent nature of electronic sensing modalities makes difficult the analysis of biomarkers in high salt concentration samples such as serum due to charge screening. We present a novel sensing platform, the micro-well sensor, that works by functionalizing nanoscale volume wells with antibodies and monitoring the impedance change inside the wells due binding of target protein. This detection modality is advantageous to many label-free electronic sensors in that signal power scales with increase in salt concentration, thus improving the sensitivity of the platform. We demonstrate rapid label-free qualitative detection of cytokines within ten minutes at femtoMolar concentrations and a dynamic range of 3 orders of magnitude in serum samples. We describe the design, fabrication, and characterization of the micro-well sensor in serum samples using inflammatory protein biomarkers.
机译:无标签的电子亲和基于的免疫感应是一种有吸引力的候选者,作为用于分析生物标志物的平台技术,因为易于小型化和试剂使用的最小使用。然而,电子基于传感方法在检测极限,选择性和可靠性方面已经滞后于其光学对应物。而且,电子感测模型的基质依赖性本质难以在高盐浓度样品中的生物标志物的分析,例如由于电荷筛选引起的血清。我们介绍了一种新颖的传感平台,微孔传感器,通过用抗体官能化纳米级体积孔,并监测靶蛋白的井中的井内阻抗变化。该检测模态对许多无标签的电子传感器是有利的,即在该信号功率尺度增加,随着盐浓度的增加,从而提高了平台的灵敏度。我们在Femtomolar浓度下展示了在十分钟内无需定性检测细胞因子,并且在血清样品中的3个数量级的动态范围。我们使用炎症蛋白生物标志物描述血清样品中微孔传感器的设计,制造和表征。

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