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首页> 外文期刊>Analytical and bioanalytical chemistry >Construction of a highly sensitive signal-on aptasensor based on gold nanoparticles/functionalized silica nanoparticles for selective detection of tryptophan
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Construction of a highly sensitive signal-on aptasensor based on gold nanoparticles/functionalized silica nanoparticles for selective detection of tryptophan

机译:基于金纳米颗粒/官能化二氧化硅纳米粒子的高敏感信号对高敏感信号的构建,用于选择性检测色氨酸

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摘要

AbstractIn this work, a highly sensitive, low-cost, and label-free aptasensor based on signal-on mechanisms of response was developed by immobilizing the aptamer on gold nanoparticles (AuNPs)/amine-functionalized silica nanoparticle (FSN)/screen-printed electrode (SPE) surface for highly selective electrochemical detection of tryptophan (Trp). The hemin (Hem), which interacted with the guanine bases of the aptamer, worked as a redox indicator to generate a readable electrochemical signal. The changes in the charge transfer resistance have been monitored using the voltammetry and electrochemical impedance spectroscopic (EIS) techniques. The peak current of Hem linearly increased with increasing concentration of Trp, in differential pulse voltammetry, from 0.06 to 250?nM with a detection limit of 0.026?nM. Also, the results obtained from EIS studies showed that the Trp was detected sensitively with the fabricated aptasensor in the range of 0.06–250?nM. The detection limit is 0.01?nM, much lower than that obtained by most of the reported electrochemical methods. The usage of aptamer as a recognition layer led to a sensor with high affinity for Trp, compared with control amino acids of tyrosine, histidine, arginine, lysine, valine, and methionine. The usability of the aptasensor was successfully evaluated by the determination of Trp in a human blood serum sample. Thus, the sensor could provide a promising plan for the construction of aptasensors.
Graphical abstractSchematic outline the principle for tryptophan aptasensing
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机译:<![CDATA [<标题>抽象 ara id =“par1”>在此工作中,通过固定制定了基于信号对响应机制的高度敏感,低成本和无标签的APTASENSOR用于高选择性电化学检测的金纳米颗粒(AUNP)/胺官能化二氧化硅纳米粒子(FSN)/丝网印刷电极(SPE)表面的适体,用于色氨酸(TRP)。与适体的鸟嘌呤碱相互作用的血红素(下摆)作为氧化还原指示剂,以产生可读电化学信号。使用伏安法和电化学阻抗光谱(EIS)技术监测电荷传递电阻的变化。下摆的峰值电流随着TRP浓度的浓度增加,差分脉冲伏安法,0.06至250ΩNM,检出限为0.026Ω·Nm。此外,从EIS研究中获得的结果表明,在0.06-250Ω·NM的范围内敏感地检测到TRP。检出限为0.01≤nm,远低于大多数报告的电化学方法获得的。与酪氨酸,组氨酸,精氨酸,精氨酸,赖氨酸,缬氨酸和蛋氨酸的对照氨基酸相比,使用适体作为识别层的识别层的使用传感器,其具有高亲和力,与对照氨基酸相比。通过测定人血清样品中的TRP成功评估了Aptasensor的可用性。因此,传感器可以为构建Aptasensors提供有希望的计划。 ara id =“par8”outputmedium =“在线”> <图类别=“标准”float =“no”id =“figa”> <标题语言=“en”> 图形抽象 示意图ColteChan Aptasensing的原理 ]]>

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