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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Response surface methodology in the development of a stacking-sensitive capillary electrophoresis method for the analysis of tricyclic antidepressants in human serum.
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Response surface methodology in the development of a stacking-sensitive capillary electrophoresis method for the analysis of tricyclic antidepressants in human serum.

机译:响应面方法在堆积敏感毛细管电泳方法开发中用于分析人血清中的三环类抗抑郁药。

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摘要

Stacking methods are very important in overcoming the poor detection limits in capillary electrophoresis (CE). In this paper, the separation and determination of several tricyclic antidepressants by a stacking method is described. The inclusion of acetonitrile (ACN) in the sample causes stacking (transient pseudoisotachophoresis) especially in presence of sodium chloride. An experimental design (central composite design) together with the response surface methodology has been used to find the optimum composition of the separation buffer and the optimal stacking conditions in few experiments. The response functions used are the product of the total resolution by the number of peaks, for the optimization of the separation buffer, and the product of the total resolution by the mean of the peak heights, for the optimization of the stacking conditions. About 28% of the capillary volume is loaded with sample. The calibration curves are linear over the working range (50-300 ng/mL). With a bubble capillary, the limits of detection (LODs) are in the order of 5 ng/mL. For the analysis of serum samples, enrichment with sodium chloride and the protein precipitation with ACN are enough to avoid interferences and to get stacking. Recoveries between 91.6 and 104% and RSD between 0.6 and 12% are obtained in the analysis of samples of lyophilized human serum and non-lyophilized human serum, spiked with the drugs.
机译:堆叠方法对于克服毛细管电泳(CE)的检测限很重要。本文介绍了通过堆积法分离和测定几种三环类抗抑郁药的方法。样品中包含乙腈(ACN)会导致堆积(瞬态假同位素电泳),特别是在存在氯化钠的情况下。实验设计(中央复合设计)以及响应面方法已用于在少数实验中找到分离缓冲液的最佳组成和最佳堆叠条件。为了优化分离缓冲液,使用的响应函数是总分辨率乘以峰数的乘积,而为了优化堆积条件,总的分辨率乘以峰高的平均值。大约28%的毛细管体积中装有样品。校准曲线在工作范围(50-300 ng / mL)内呈线性。对于气泡毛细管,检测限(LOD)约为5 ng / mL。对于分析血清样品,用氯化钠富集和用ACN沉淀蛋白质足以避免干扰并堆积。在对掺有药物的冻干人血清和非冻干人血清样品进行分析时,可得到91.6%至104%的回收率和RSD 0.6%至12%的回收率。

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