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首页> 外文期刊>Journal of separation science. >Strategies of solvent system selection for the isolation of flavonoids by countercurrent chromatography
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Strategies of solvent system selection for the isolation of flavonoids by countercurrent chromatography

机译:逆流色谱分离黄酮类化合物的溶剂体系选择策略

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摘要

Flavonoids form a large class of important naturally occurring bioactive compounds Their isolation and purification from natural sources can sometimes be very difficult and time-consuming when traditional phytochemical techniques are used Countercurrent chromatography (CCC), a support-free liquid liquid partition chromatography technique, is very useful for the isolation of polar compounds and its use is increasing in the natural products field In this paper, we propose strategies of solvent system selection for the isolation of flavonoids by CCC, based on data from the literature, plus incorporation of own practical experiences The selected references report the isolation of over 300 different flavonoid compounds from more than 100 plant species, using 40 different solvent systems, showing the versatility of this technique The solvent system hexane-ethyl acetate-methanol-water is proposed as a starting point for the separation of samples containing free flavonoids, as it was cited in more than 60% of the papers A "fine tuning" step is proposed at each level of this solvent family Other modifications include exchanging the alcohol in the system as well as introducing a fifth solvent The solvent system ethyl-acetate-butanol-water is proposed as the starting point for glycosylated flavonoids Other solvent systems are also discussed The use of gradients is proposed for samples containing both free and glycosylated flavonoids, as the polarity window is larger in these cases. High-speed countercurrent chromatography was used in 89% of the reviewed data.
机译:黄酮类化合物是一大类重要的天然存在的生物活性化合物,当使用传统的植物化学技术时,从天然来源中分离和纯化有时会非常困难且耗时,而逆流色谱法(CCC)是一种无载体的液-液分配色谱技术。在分离极性化合物方面非常有用,并且在天然产物领域中的应用正在增加。在本文中,我们基于文献数据,结合自身的实践经验,提出了用于CCC分离类黄酮的溶剂体系选择策略。选定的参考文献报告了使用40种不同的溶剂系统从100多种植物中分离出300多种不同的类黄酮化合物,显示了该技术的多功能性。提出了以己烷-乙酸乙酯-甲醇-水为溶剂的溶剂系统分离含有游离类黄酮的样品超过60%的论文在该溶剂系列的每个级别都提出了“微调”步骤。其他修改包括交换体系中的醇以及引入第五种溶剂。提出了溶剂体系乙酸乙酯-丁醇-水作为糖基化黄酮类化合物的起点还讨论了其他溶剂系统建议将梯度用于含有游离和糖基化黄酮类化合物的样品,因为在这些情况下极性窗口较大。 89%的审查数据使用了高速逆流色谱法。

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