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基于氧化石墨烯-碳纳米管/铁镍纳米粒子的用于同时测定人血清中三氟拉嗪和多巴胺的电化学传感器。

Electrochemical sensor for simultaneous determination of trifluoperazine and dopamine in human serum based on graphene oxide-carbon nanotubes/iron-nickel nanoparticles.

作者信息

Ahmed Yousef M, Eldin Mahmoud A, Galal Ahmed, Atta Nada F

机构信息

Chemistry Department, Faculty of Science, Cairo University 12613 Giza Egypt

出版信息

RSC Adv. 2023 Aug 23;13(36):25209-25217. doi: 10.1039/d3ra04334g. eCollection 2023 Aug 21.

Abstract

Trifluoperazine (TFLP) is an important psychiatric medication that balances the dopamine (DA) level in the brain for patients suffering from neurological disorder diseases. An efficient electrochemical sensor is developed for detecting TFLP in real human serum samples. The sensor is fabricated by casting the GC surface with two consecutive thin layers, namely a graphene oxide-carbon nanotubes mixture (GRO-CNT), and iron-nickel nanoparticles (Fe-Ni). The diffusion-controlled oxidation process of TFLP at the composite surface includes one electron transfer process. Under optimized conditions, the sensor in human serum shows excellent catalytic effect for simultaneous determination of TFLP and dopamine (DA) in the same concentration range (0.5 μM to 18 μM) with low detection limits of 0.13 μM and 0.32 μM respectively. The combined effect of a large conductive surface area and the excellent catalytic activity of the nanocomposite improves the sensor's performance. The sensor exhibits a stable current response over four weeks, excellent reproducibility, and insignificant interference from common species present in human serum samples. The reliability test of using the sensor in serum samples shows good recovery of TFLP.

摘要

三氟拉嗪(TFLP)是一种重要的精神科药物,可调节患有神经紊乱疾病患者大脑中的多巴胺(DA)水平。人们开发了一种高效的电化学传感器,用于检测实际人血清样本中的TFLP。该传感器是通过在玻碳(GC)表面依次浇铸两层薄膜制成的,即氧化石墨烯-碳纳米管混合物(GRO-CNT)和铁镍纳米颗粒(Fe-Ni)。TFLP在复合材料表面的扩散控制氧化过程包括一个电子转移过程。在优化条件下,该人血清中的传感器对同时测定相同浓度范围(0.5 μM至18 μM)的TFLP和多巴胺(DA)具有优异的催化效果,检测限分别低至0.13 μM和0.32 μM。大导电表面积与纳米复合材料优异催化活性相结合提高了传感器性能。该传感器四周内电流响应稳定,重现性极佳,且人血清样本中常见物质的干扰可忽略不计。在血清样本中使用该传感器的可靠性测试表明TFLP回收率良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab1d/10445055/b7078b763d36/d3ra04334g-s1.jpg

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