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首页> 外文期刊>ACS Omega >Novel Design of a Layered Electrochemical Dopamine Sensor in Real Samples Based on Gold Nanoparticles/β-Cyclodextrin/Nafion-Modified Gold Electrode
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Novel Design of a Layered Electrochemical Dopamine Sensor in Real Samples Based on Gold Nanoparticles/β-Cyclodextrin/Nafion-Modified Gold Electrode

机译:基于金纳米粒子/β-环糊精/ Nafion修饰金电极的真实样品中分层电化学多巴胺传感器的新颖设计

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Change in the level of dopamine (DA) concentration in the human body causes critical diseases such as schizophrenia and Parkinson’s disease. Therefore, the determination of DA concentration and monitoring its level in human body fluids is of great importance. An electrochemical sensor based on modification of the gold electrode surface with Nafion (NF), β-cyclodextrin (CD), and gold nanoparticles (AuNPs) was fabricated for the determination of DA in biological fluids. Combined impact of all the modifiers enhances the catalytic activity of the sensor. Gold nanoparticles increase the surface area of the sensor and enhance the electron transfer rate. CD plays a main role in enhancing the accumulation of protonated DA and forming stable complexes via electrostatic interactions and hydrogen bond formation. In addition, extra preconcentration of positively charged DA is achieved through ionic selectivity of NF. High electrocatalytic activity was achieved using the modified sensor for determination of DA in real urine samples in a wide concentration range, 0.05–280 μM with a low detection limit of 0.6 nM in the small linear dynamic range, 0.05–20 μM. Furthermore, common overlapped oxidation peaks of DA in presence of biologically interfering compounds at the gold electrode were resolved by using the modified sensor. Excellent recovery results were obtained using the proposed method for determination of DA in real urine samples.
机译:人体中多巴胺(DA)浓度的变化会导致严重的疾病,例如精神分裂症和帕金森氏病。因此,确定DA浓度并监测其在人体液中的含量非常重要。基于Nafion(NF),β-环糊精(CD)和金纳米颗粒(AuNPs)修饰金电极表面的电化学传感器用于测定生物流体中的DA。所有改性剂的共同作用增强了传感器的催化活性。金纳米颗粒增加了传感器的表面积并提高了电子传输速率。 CD在增强质子化DA的积累和通过静电相互作用和氢键形成形成稳定的络合物中起主要作用。另外,通过NF的离子选择性可实现正电荷DA的额外预浓缩。使用改进的传感器测定宽浓度范围0.05–280μM的真实尿液样品中的DA,可以实现较高的电催化活性,而在较小的线性动态范围0.05–20μM中,检出限为0.6 nM。此外,通过使用改进的传感器可以解决金电极上存在生物干扰化合物的情况下DA的常见重叠氧化峰。使用建议的方法测定实际尿液样品中的DA可获得极佳的回收率结果。

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