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In vivo determination of tetrahydrobiopterin and monoamine neurotransmitters in rat brain by liquid chromatography with a nano crystalline Mn-doped lead dioxide film modified electrode

机译:纳米晶锰掺杂二氧化铅薄膜修饰电极液相色谱法体内测定大鼠脑中四氢生物蝶呤和单胺类神经递质

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摘要

The fabrication and application of a novel electrochemical detector (ED) with nano crystalline Mn-doped lead dioxide film chemically modified electrode (CME) for liquid chromatography (LC) were described. The Mn-cloped PbO2 film was characterized by scanning tunnel microscope. The electrochemical behaviors of tetrahydrobiopterin, monoamine neurotransmitters and their metabolites at the CME were investigated by cyclic voltammetry and differential pulse voltammetry. it was found that the CME exhibited efficiently electrocatalytic effect on the current response of the seven analytes and the linear ranges of them were over three orders of magnitude with the detection limits being 5.0 x 10(-10) mol L-1 for tetrahydrobiopterin, 2.5 x 10(-10) mol L-1 for dopamine, 2.0 x 10(-10) mol L-1 for norepinephrine, 5.0 x 10(-10) mol L-1 for serotonin, 4.0 x 10(-10) mol L-1 for 3,4-dihydroxyphenylacetic acid, 2.0 x 10(-9) mol L-1 for homovanillic acid, 1.0 x 10(-9) mol L-1 for 5-hydroxyincloleacetic acid. For its stability, sensitivity, convenience in preparing and long-life of activity, the Mn-cloped PbO2 electrode is therefore suitable for determination of real samples. Coupled with microdialysis sampling, the application of this method for the analysis of tetrahydrobiopterin, monoamine neurotransmitters and their metablites in rat brain was satisfactory.
机译:描述了一种新型的带有纳米晶锰掺杂的二氧化铅薄膜化学修饰电极(CME)的液相色谱(LC)电化学检测器(ED)的制备和应用。通过扫描隧道显微镜对Mn封闭的PbO2薄膜进行了表征。通过循环伏安法和差分脉冲伏安法研究了四氢生物蝶呤,单胺类神经递质及其代谢物在CME上的电化学行为。结果发现,CME对七种分析物的电流响应表现出有效的电催化作用,并且它们的线性范围超过三个数量级,四氢生物蝶呤的检出限为5.0 x 10(-10)mol L-1,2.5多巴胺x 10(-10)mol L-1,去甲肾上腺素2.0 x 10(-10)mol L-1、5-羟色胺5.0 x 10(-10)mol L-1、4.0 x 10(-10)mol L对于3,4-二羟基苯基乙酸为-1,对于高香草酸为2.0 x 10(-9)mol L-1,对于5-羟基氯乙酸为1.0 x 10(-9)mol L-1。 Mn封闭的PbO2电极由于其稳定性,灵敏度,制备方便性和活性的长寿命而适合用于测定真实样品。结合微透析取样,该方法在分析大鼠脑中四氢生物蝶呤,单胺类神经递质及其代谢产物方面的应用令人满意。

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