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首页> 外文期刊>Journal of Liquid Chromatography >METHODS DEVELOPMENT IN CAPILLARY ELECTROPHORESIS WITH AUTOMATED PEAK TRACKING BY CHEMOMETRIC ANALYSIS OF DIODE ARRAY DETECTION DATA
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METHODS DEVELOPMENT IN CAPILLARY ELECTROPHORESIS WITH AUTOMATED PEAK TRACKING BY CHEMOMETRIC ANALYSIS OF DIODE ARRAY DETECTION DATA

机译:二极管阵列检测数据化学分析的自动峰追踪在毛细管电泳中的方法开发

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Developing methods for capillary electrophoresis is complicated by the complex array of interacting variables that affect resolution. Optimizing a separation is, therefore, time-consuming. This process can be minimized and simplified if the individual sample components can be tracked through a minimal structured experimental set. We have adapted an HPLC methods development system, Unicam Diamond Optimization Software, for this purpose. An experimental plane of ten different conditions is executed, and the separations are monitored with a diode array detector. Each three-dimensional data file is subjected to Principal Component Analysis and Iterative Target Transform Factor Analysis to test the spectral homogeneity of each peak and to deconvolute comigrations. The resulting pure spectra are used to track the individual sample components across the experimental plane. In this way, a migration model is calculated for each analyte, and, in turn, a resolution map is constructed. The optimal CE separation is obtained with a minimal number of experiments and without prior knowledge of the sample or the use of standards. This approach is illustrated and tested with over-the-counter pharmaceutical preparations.
机译:毛细管电泳的开发方法由于影响分辨率的相互作用变量的复杂阵列而变得复杂。因此,优化分离非常耗时。如果可以通过最小化的结构化实验集跟踪各个样品成分,则可以最小化和简化此过程。为此,我们采用了HPLC方法开发系统Unicam Diamond Optimization Software。执行十种不同条件的实验平面,并使用二极管阵列检测器监控间隔。每个三维数据文件都要经过主成分分析和迭代目标变换因子分析,以测试每个峰的光谱均匀性并进行去卷积偏移。所得的纯光谱用于跟踪实验平面上的各个样品成分。通过这种方式,可以为每种分析物计算迁移模型,然后构建分辨率图。通过最少的实验即可获得最佳的CE分离效果,而无需事先了解样品或使用标准品。这种方法已通过非处方药制剂进行了说明和测试。

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