University of Belgrade, Faculty of Pharmacy, Department of Drug Analysis, Belgrade, Serbia.
Talanta. 2011 Sep 15;85(3):1453-60. doi: 10.1016/j.talanta.2011.06.029. Epub 2011 Jun 17.
In this paper a new chromatographic response function (CRF) is designed and proposed for utilization in the optimization strategies. The function capability to represent the overall quality of a experimentally obtained chromatograms was compared to the other two objective functions and proved to give more accurate and reliable results. The new CRF has improved concept of separation and time term estimation. It reflects all important defects of the chromatogram such as the appearance of asymmetrical or overlapping peaks and prolonged elution time and allows the appropriate weighting of each of them. The LC separation of raloxifene and its four impurities was evaluated through the central composite design experimental plan choosing the new CRF to be the only output of the system. The function demonstrated the ability to judge the impact of the complex interactions of the selected chromatographic parameters (acetonitrile content in the mobile phase, sodium dodecyl sulfate concentration in the water phase, pH of the mobile phase and column temperature) on the mixture behavior and led to the determination of the optimal separation conditions. The newly developed CRF proved to have the advanced performances and it presents the important step forward in the optimization of the chromatographic separation.
本文设计并提出了一种新的色谱响应函数 (CRF),用于优化策略。该函数能够代表实验获得的色谱图的整体质量,与其他两个目标函数进行了比较,结果证明其能够提供更准确、可靠的结果。新的 CRF 具有改进的分离和时间项估计概念。它反映了色谱图的所有重要缺陷,如不对称或重叠峰的出现以及洗脱时间延长,并允许对它们进行适当的加权。通过中心组合设计实验方案评估了雷洛昔芬及其四种杂质的 LC 分离,选择新的 CRF 作为系统的唯一输出。该函数展示了判断所选色谱参数(流动相中乙腈含量、水相中十二烷基硫酸钠浓度、流动相 pH 值和柱温)的复杂相互作用对混合物行为的影响的能力,并确定了最佳分离条件。新开发的 CRF 被证明具有先进的性能,是色谱分离优化的重要进步。