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采用环糊精作为反相高效液相色谱流动相添加剂,实现儿茶素的绿色分离。

Eco-friendly separation of catechins using cyclodextrins as mobile phase additives in RP-HPLC.

机构信息

Department of Chemical Engineering, Inha University, Incheon 402-751, Korea.

出版信息

Phytochem Anal. 2012 Jul-Aug;23(4):308-14. doi: 10.1002/pca.1359. Epub 2011 Oct 13.

Abstract

BACKGROUND

New mobile phases for RP-HPLC were developed for the separation of catechin compounds in tea. Cyclodextrin mobile phase additives decreased the use of toxic and inflammable organic solvents without compromising resolution or separation efficiency.

AIMS

To develop a simple greener method for analyzing five tea catechins in RP-HPLC, the mobile phase condition was optimized and the lowest organic modifier proportion with content resolutions and retention factors were obtained.

MATERIALS & METHODS: Eco-friendly cyclodextrins were used as mobile phase additives to decrease the proportion of organic modifier and improve resolutions and retention factors.

RESULTS

The effects of several physico-chemical parameters on the retention factors were investigate d and the optimum conditions were obtained on a conventional C₁₈ column, where the mobile phase consisted of acetonitrile/water (12/88, v/v) with 1.5 mmol/L β-cyclodextrin at a flow rate of 1.0 mL/min.

DISCUSSION

Cyclodextrins can separate analytes through host-guest complexation, where a transient diastereomeric complex is formed between the cyclodextrin and the analyte. β-Cyclodextrin is the most accessible, the least expensive and generally the most useful cyclodextrin.

CONCLUSION

This work developed a simple eco-friendly method with the lowest concentration of organic solvents. Under the optimal condition, five catechins could be baseline separated within 17 minutes in the isocratic mode. This research exhibited the potential for the separation and determination of other active compounds from natural plants by a greener method.

摘要

背景

开发了用于茶中儿茶素化合物分离的反相高效液相色谱(RP-HPLC)新流动相。环糊精流动相添加剂减少了有毒和易燃有机溶剂的使用,而不会影响分辨率或分离效率。

目的

开发一种用于 RP-HPLC 中分析五种茶儿茶素的简单、更环保的方法,优化流动相条件,获得最低有机改性剂比例,同时获得最高含量分辨率和保留因子。

材料与方法

使用环保型环糊精作为流动相添加剂,减少有机改性剂的比例,提高分辨率和保留因子。

结果

考察了几种物理化学参数对保留因子的影响,在常规 C₁₈ 柱上获得了最佳条件,流动相由乙腈/水(12/88,v/v)组成,其中含有 1.5 mmol/Lβ-环糊精,流速为 1.0 mL/min。

讨论

环糊精可以通过主客体络合作用分离分析物,其中环糊精和分析物之间形成瞬态非对映异构体络合物。β-环糊精是最易接近的、最便宜的,通常也是最有用的环糊精。

结论

本工作开发了一种简单的环保方法,使用的有机溶剂浓度最低。在最佳条件下,五种儿茶素可在等度模式下在 17 分钟内基线分离。该研究展示了通过更环保的方法分离和测定天然植物中其他活性化合物的潜力。

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