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Carbohydrate-Based Label-Free Detection of Escherichia coli ORN 178 Using Electrochemical Impedance Spectroscopy

机译:电化学阻抗谱法基于碳水化合物的无标记大肠杆菌ORN 178检测

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A label-free biosensor for Escherichia coli (E. coli) ORN 178 based on faradaic electrochemical impedance spectroscopy (EIS) was developed. alpha-Mannoside or beta-galactoside was immobilized on a gold disk electrode using a self-assembled monolayer (SAM) via a spacer terminated in a thiol functionality. Impedance measurements (Nyquist plot) showed shifts due to the binding of E. coli ORN 178, which is specific for alpha-mannoside. No significant change in impedance was observed for E. coli ORN 208, which does not bind to alpha-mannoside. With increasing concentrations of E. coli ORN 178, electron-transfer resistance (R_(et)) increases before the sensor is saturated. After the Nyquist plot of E. coli/mixed SAM/gold electrode was modeled, a linear relationship between normalized R_(et) and the logarithmic value of E. coli concentrations was found in a range of bacterial concentration from 10~(2) to 10~(3) CFU/mL. The combination of robust carbohydrate ligands with EIS provides a label-free, sensitive, specific, user-friendly, robust, and portable biosensing system that could potentially be used in a point-of-care or continuous environmental monitoring setting.
机译:开发了一种基于法拉第电化学阻抗谱(EIS)的无标记生物传感器,用于大肠杆菌ORN 178。使用自组装单分子层(SAM)通过以硫醇官能团终止的间隔基将α-甘露糖苷或β-半乳糖苷固定在金盘电极上。阻抗测量(奈奎斯特图)显示出由于大肠杆菌ORN 178的结合而发生的变化,该结合对α-甘露糖苷具有特异性。对于未结合α-甘露糖苷的大肠杆菌ORN 208,未观察到阻抗的显着变化。随着大肠杆菌ORN 178浓度的增加,在传感器饱和之前,电子传输阻力(R_(et))会增加。对大肠杆菌/混合SAM /金电极的Nyquist图进行建模后,在细菌浓度从10〜(2)到1的范围内,归一化的R_(et)与大肠杆菌浓度的对数值之间存在线性关系。 10〜(3)CFU /毫升健壮的碳水化合物配体与EIS的结合提供了一种无标签,灵敏,特异,用户友好,健壮且便携式的生物传感系统,可潜在地用于即时护理或连续环境监测环境。

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