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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Reliability of simulated robustness testing in fast liquid chromatography, using state-of-the-art column technology, instrumentation and modelling software
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Reliability of simulated robustness testing in fast liquid chromatography, using state-of-the-art column technology, instrumentation and modelling software

机译:使用最先进的色谱柱技术,仪器和建模软件在快速液相色谱中进行模拟耐用性测试的可靠性

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The goal of this study was to evaluate the accuracy of simulated robustness testing using commercial modelling software (DryLab) and state-of-the-art stationary phases. For this purpose, a mixture of amlodipine and its seven related impurities was analyzed on short narrow bore columns (50. ×. 2.1. mm, packed with sub-2. μm particles) providing short analysis times. The performance of commercial modelling software for robustness testing was systematically compared to experimental measurements and DoE based predictions. We have demonstrated that the reliability of predictions was good, since the predicted retention times and resolutions were in good agreement with the experimental ones at the edges of the design space. In average, the retention time relative errors were <1.0%, while the predicted critical resolution errors were comprised between 6.9 and 17.2%. Because the simulated robustness testing requires significantly less experimental work than the DoE based predictions, we think that robustness could now be investigated in the early stage of method development.Moreover, the column interchangeability, which is also an important part of robustness testing, was investigated considering five different C8 and C18 columns packed with sub-2. μm particles. Again, thanks to modelling software, we proved that the separation was feasible on all columns within the same analysis time (less than 4. min), by proper adjustments of variables.
机译:这项研究的目的是评估使用商业建模软件(DryLab)和最先进的固定相进行的仿真鲁棒性测试的准确性。为此,在短而窄的小孔色谱柱(50. x。2.1.mm,填充有亚2 µm颗粒)上分析了氨氯地平及其七种相关杂质的混合物,从而缩短了分析时间。系统比较了用于鲁棒性测试的商业建模软件的性能与实验测量结果和基于DoE的预测。我们已经证明了预测的可靠性是好的,因为预测的保留时间和分辨率与设计空间边缘处的实验结果和分辨率非常吻合。平均而言,保留时间的相对误差<1.0%,而预测的临界分离度误差在6.9%和17.2%之间。由于模拟的稳健性测试比基于DoE的预测所需的实验工作量要少得多,因此我们认为现在可以在方法开发的早期阶段研究稳健性。此外,还研究了色谱柱互换性,这也是稳健性测试的重要组成部分考虑使用sub-2填充的五种不同的C8和C18色谱柱。微米颗粒。同样,借助建模软件,我们证明了通过适当调整变量,可以在相同分析时间内(少于4分钟)在所有色谱柱上进行分离。

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