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首页> 外文期刊>Journal of solid state electrochemistry >Electrochemical sensor for detection of imipramine antidepressant at low potential based on oxidized carbon nanotubes, ferrocenecarboxylic?acid, and cyclodextrin: application in psychotropic drugs and urine samples
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Electrochemical sensor for detection of imipramine antidepressant at low potential based on oxidized carbon nanotubes, ferrocenecarboxylic?acid, and cyclodextrin: application in psychotropic drugs and urine samples

机译:用于检测基于氧化碳纳米管,铁核羧酸α酸和环糊精的低电位下含氨碱抗抑郁药的电化学传感器:在精神药物和尿液中的应用

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Imipramine (IMP), a tricyclic antidepressant drug, is commonly prescribed for treatment of psychiatric patients suffering from different forms of depression. The appropriate amount of drug intake is crucial to ensure the optimum therapeutic effects minimizing severe collateral effects and toxicity. Therefore, the monitoring of imipramine is essential for its clinical applications. Herein, we report an electrochemical sensor based on a composite of ferrocenecarboxylic acid (FCA), β-cyclodextrin (CD), and oxidized multi-walled carbon nanotubes (f-CNT) modified glassy carbon electrode for detection of IMP at low potential. The electrochemical behavior of the proposed sensor was characterized by scanning electron microscopy, Raman spectroscopy, and cyclic voltammetry. The results show that imipramine determination using the proposed sensor occurs around 0?V vs Ag/AgCl in phosphate buffer pH?7.0. The calibration curves were obtained by cyclic voltammetry and differential pulse voltammetry, with linear ranges of 10 to 350?μmol?L_(?1)and 0.1 to 10?μmol?L_(?1), respectively. A detection limit of 0.03?μmol?L_(?1)was obtained for the detection of IMP. The sensor was applied for IMP determination in psychotropic drugs and urine samples and the results show a recovery percentage between 99 and 101% for the analyte.
机译:含丙氨酸(Imp)是一款三环抗抑郁药,通常规定治疗患有不同形式的抑郁症的精神病患者。适量的药物摄入至关重要,以确保最佳的治疗效果最小化严重的侧枝效应和毒性。因此,对Imipramine的监测对于其临床应用至关重要。在此,我们报告基于铁核羧酸(FCA),β-环糊精(CD)的复合物的电化学传感器,以及氧化的多壁碳纳米管(F-CNT)改性玻璃电极,用于检测IMP处的低电位。所提出的传感器的电化学行为的特征在于扫描电子显微镜,拉曼光谱和循环伏安法。结果表明,在磷酸盐缓冲液pHβ7.0中,使用所提出的传感器的含义测定发生约0. v Vs Ag / AgCl。校准曲线通过循环伏安法和差分脉冲伏安法获得,线性范围为10至350Ωμmol≤1_(α1)和0.1至10?μmol?L _(α1)。获得0.03Ωμmolα1(α1)的检测限进行检测。将传感器应用于精神药物和尿液样品中的Imp测定,结果显示分析物的恢复百分比为99和101%。

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