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首页> 外文期刊>Journal of liquid chromatography and related technologies >Extraction, preconcentration, and determination of methylphenidate in urine sample using solvent bar microextraction in combination with HPLC-UV: Optimization by experimental design
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Extraction, preconcentration, and determination of methylphenidate in urine sample using solvent bar microextraction in combination with HPLC-UV: Optimization by experimental design

机译:用溶剂棒微萃取与HPLC-UV的溶剂样品中尿液样品中甲基酚的萃取,预浓缩和测定:通过实验设计优化

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摘要

Methylphenidate (Ritalin) is a drug used for attention-deficit hyperactivity disorder treatment and narcolepsy symptoms control. This drug inhibits norepinephrine and dopamine reuptake in presynaptic neuron and appears to stimulate the cerebral cortex and subcortical structures similar to amphetamines. The aim of this work is to develop a new method for extraction, preconcentration, and determination of methylphenidate in human urine samples using solvent bar microextraction combined with HPLC and optimization by design of experiment approach. To get to the highest preconcentration factor, the effect of various affecting parameters such as the type of extraction solvent, donor phase pH, receiving phase pH, salt addition to the acceptor phase, extraction time, stirring speed, and extraction temperature was investigated and optimized by design of experiment approach. Under the optimized condition extraction (solvent: n-octanol, donor phase pH: 11.6; acceptor phase pH: 4; stirring speed: 650 rpm; extraction time: 25 min; temperature: 25癈; salt concentration in donor phase: 30% w/v NaCI), the following results were achieved: preconcentration factor: 104, limit of detection: 15 ng/mL, intra-day RSD: 3.5%, and inter-day RSD: 3.9%. Finally, the feasibility of this extraction method was confirmed by analyzing urine sample and satisfactory results were obtained.
机译:甲基酚(RITILIN)是一种用于注意力缺陷多动障碍治疗和鼻病症状控制的药物。该药物抑制了突触前神经元中的去甲肾上腺素和多巴胺再摄取,似乎刺激了与安非胺相似的脑皮质和皮下结构。本作作品的目的是使用溶剂棒微萃取和通过设计实验方法设计,开发一种新的萃取,前浓缩和测定人尿液样品中甲基酚的甲基酚酯的测定方法。为了达到最高的预浓度因子,研究了各种影响参数,例如提取溶剂的类型,供体相pH,接受相pH,盐除了对受体相,提取时间,搅拌速度和提取温度,并进行优化通过实验方法设计。在优化的条件萃取(溶剂:N-辛醇,供体相pH:11.6;受体相pH:4;搅拌速度:650rpm;提取时间:25分钟;温度:25°;供体阶段的盐浓度:30%w / v NaCl),实现了以下结果:预浓度因子:104,检测限:15 ng / ml,日内RSD:3.5%,以及日内的RSD:3.9%。最后,通过分析尿液样本和令人满意的结果,确认了该提取方法的可行性。

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