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Progress and prediction of multicomponent quantification in complex systems with practical LC-UV methods

机译:使用实用的LC-UV方法在复杂系统中进行多组分定量的研究进展和预测

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摘要

Complex systems exist widely, including medicines from natural products, functional foods, and biological samples. The biological activity of complex systems is often the result of the synergistic effect of multiple components. In the quality evaluation of complex samples, multicomponent quantitative analysis (MCQA) is usually needed. To overcome the difficulty in obtaining standard products, scholars have proposed achieving MCQA through the “single standard to determine multiple components (SSDMC)” approach. This method has been used in the determination of multicomponent content in natural source drugs and the analysis of impurities in chemical drugs and has been included in the Chinese Pharmacopoeia. Depending on a convenient (ultra) high-performance liquid chromatography method, how can the repeatability and robustness of the MCQA method be improved? How can the chromatography conditions be optimized to improve the number of quantitative components? How can computer software technology be introduced to improve the efficiency of multicomponent analysis (MCA)? These are the key problems that remain to be solved in practical MCQA. First, this review article summarizes the calculation methods of relative correction factors in the SSDMC approach in the past five years, as well as the method robustness and accuracy evaluation. Second, it also summarizes methods to improve peak capacity and quantitative accuracy in MCA, including column selection and two-dimensional chromatographic analysis technology. Finally, computer software technologies for predicting chromatographic conditions and analytical parameters are introduced, which provides an idea for intelligent method development in MCA. This paper aims to provide methodological ideas for the improvement of complex system analysis, especially MCQA.
机译:复杂的系统广泛存在,包括来自天然产物、功能性食品和生物样品的药物。复杂系统的生物活性往往是多种组分协同作用的结果。在复杂样品的质量评估中,通常需要多组分定量分析(MCQA)。为了克服获得标准产品的困难,学者们提出了通过“单一标准确定多个组件(SSDMC)”的方法实现MCQA。该方法已用于天然来源药物中多组分含量的测定和化学药物中杂质的分析,已被纳入中国药典。依靠一种方便(超)高效的液相色谱方法,如何提高MCQA方法的重复性和稳定性?如何优化色谱条件以增加定量组分的数量?如何引入计算机软件技术来提高多组分分析(MCA)的效率?这些是实际MCQA中仍有待解决的关键问题。首先,本文综述了近5年来SSDMC方法中相对校正因子的计算方法,以及方法鲁棒性和准确性评价。其次,还总结了提高MCA峰容量和定量准确性的方法,包括色谱柱选择和二维色谱分析技术。最后,介绍了用于预测色谱条件和分析参数的计算机软件技术,为MCA的智能方法开发提供了思路。本文旨在为改进复杂系统分析,特别是MCQA提供方法论思路。

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