首页> 外文期刊>Journal of the Chilean Chemical Society >APPLICATION OF RESPONSE SURFACE MODELING FOR OPTIMIZATION AND DETERMINATION OF MALONDIALDIALDEHYDE BY VORTEX-ASSISTED DISPERSIVE LIQUID-LIQUID MICROEXTRACTION AND GC-FID
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APPLICATION OF RESPONSE SURFACE MODELING FOR OPTIMIZATION AND DETERMINATION OF MALONDIALDIALDEHYDE BY VORTEX-ASSISTED DISPERSIVE LIQUID-LIQUID MICROEXTRACTION AND GC-FID

机译:响应表面建模在涡流辅助分散液 - 液微萃取和GC-FID中优化和测定丙二醛醛的应用

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An analytical method based on vortex-assisted dispersive liquid-liquid microextraction and gas chromatography-flame ionization detection is presented for the extraction and determination of malondialdehyde) MDA (in blood plasma of human. Various parameters affecting the extraction efficiency such as type and volume of extraction and dispersive solvents, vortex and centrifuge times, volume, ionic strength and pH of the sample solution were evaluated using, one-variable-at-a-time and response surface methodology. In order to optimize the MDA extraction and determination, seven factors in five- levels were used for design of experiments (DOE). Under optimum extraction condition, this method showed linear range of calibration curve between 10–1150 μg L–1. The detection limit of the proposed method was found to be 0.8 μg L–1 with a relative standard deviation better than 5.5% (n=10) for blood serum samples. Enrichment factor was calculated to be 175 fold and the total analysis time including microextraction was about 13 min. The method was successfully applied for the analysis of MDA in blood plasma of human.
机译:提出了一种用于提取和丙二醛的测定)MDA(在人的血浆基于涡流辅助分散液液微萃取气相色谱 - 火焰电离检测的分析方法。影响萃取效率的各种参数,如类型和体积使用,萃取和分散溶剂,涡旋和离心倍,体积,离子强度和样品溶液的pH值进行了评价一变量-AT-A-时间和响应面分析法。为了优化MDA提取和判定,七个因素在五元水平用于实验设计(DOE)。在最佳提取条件,该方法表现出标准曲线的线性范围10-1150微克L-1之间。所提出的方法的检测限被发现是0.8微克大号-1与血液血清样品的相对标准偏差优于5.5%(N = 10)。富集因子计算为175倍,总分析时间INCLUDIN G微萃取约为13分钟。该方法已成功应用于人类血浆中MDA的分析。

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