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首页> 外文期刊>Journal of molecular recognition: JMR >Electrochemical recognition of taurine biomarker in unprocessed human plasma samples using silver nanoparticlebased nanocomposite: A new platform for early stage diagnosis of neurodegenerative diseases of the nervous system
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Electrochemical recognition of taurine biomarker in unprocessed human plasma samples using silver nanoparticlebased nanocomposite: A new platform for early stage diagnosis of neurodegenerative diseases of the nervous system

机译:使用银纳米粒子基纳米复合材料在未加工的人血浆样品中牛磺酸生物标志物的电化学识别:神经系统神经变性疾病的早期诊断新平台

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Abstract The rapid and accurate determination of the level of taurine biomarker in various tissues and body fluids can be of great interest in the early diagnosis of several important pathologies and diseases. In the present study, an innovative electrochemical interface for quantitation of taurine based on ternary signal amplification strategy was fabricated. In this work, silver nanoparticles were electrodeposited onto green and biocompatible nanocomposite containing α‐cyclodextrin as conductive matrix. Therefore, a double layer film based on α‐cyclodextrin and silver nanoparticles was exploited to develop a highly sensitive electrochemical sensor for detection of taurine. Fully electrochemical methodology was used to prepare a transducer on a glassy carbon electrode which provided a high surface area towards sensitive detection of taurine biomarker. The surface morphology of electrode surface was characterized by high‐resolution field emission scanning electron microscope (FE‐SEM). The proposed sensing platform provides a simple tool for taurine detection. The calibration curve for taurine concentration was linear in 0.7?nM to 0.1?mM with low limit of quantification of 0.7?nM. The practical analytical utility of the modified electrode was illustrated by determination of taurine in unprocessed human plasma samples with recovery of 90.8% to 104%.
机译:摘要迅速准确地测定各种组织和体液中的牛磺酸生物标志物水平可能对若干重要病理和疾病的早期诊断感兴趣。在本研究中,制造了一种基于三元信号放大策略的牛磺酸的创新电化学界面。在这项工作中,将银纳米颗粒电沉积在含有α-环糊精的绿色和生物相容性纳米复合材料上作为导电基质。因此,利用基于α-环糊精和银纳米颗粒的双层膜来开发用于检测牛磺酸的高敏感的电化学传感器。完全电化学方法用于在玻璃状碳电极上制备换能器,该碳电极提供高表面积朝向牛磺酸生物标志物的敏感性检测。通过高分辨率场发射扫描电子显微镜(Fe-SEM)的特征在于电极表面的表面形态。建议的传感平台为牛磺酸检测提供了一个简单的工具。牛磺酸浓度的校准曲线在0.7Ω·nm至0.1Ωmm的线性下线性,定量下限为0.7Ω·nm。通过测定未加工的人血浆样品中的牛磺酸,回收率为90.8%至104%,说明了改性电极的实际分析效用。

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