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二维多心切割离心分配色谱-液相色谱法用于从雪绒花植物中制备分离抗氧化剂

Two-dimensional multi-heart cutting centrifugal partition chromatography-liquid chromatography for the preparative isolation of antioxidants from Edelweiss plant.

作者信息

Marlot Léa, Batteau Magali, Escofet Marie-Claire, Nuccio Sylvie, Coquoin Véronique, De Vaumas René, Faure Karine

机构信息

Université de Lyon, CNRS, Université Claude Bernard Lyon 1, ENS de Lyon, Institut des Sciences Analytiques, UMR 5280, 5 rue de la Doua, F-69100 VILLEURBANNE, France.

Extrasynthese, Impasse Jacquard, F-69730 GENAY, France.

出版信息

J Chromatogr A. 2017 Jun 30;1504:55-63. doi: 10.1016/j.chroma.2017.04.056. Epub 2017 Apr 27.

Abstract

The Edelweiss plant has been recognized as a very valuable source of anti-aging principles due to its composition of antioxidants compounds: leontopodic acid A and 3,5-dicaffeoylquinic acid. In this work, off-line multi-heart cutting CPC-LC separation was set up at industrial scale in order to isolate and produce new high quality reference material of these two antioxidants from Edelweiss. For this purpose, CPC and HPLC methods were developed and optimized at laboratory scale and a comprehensive CPCxHPLC analysis of the crude extract was established. Thereby, the CPC method led to a first separation of the target compounds according to their partition coefficient in the solvent system and the HPLC method was performed on the recovered fractions to lead to a second separation. A 2D CPCxHPLC plot was established in order to know the fractions to select at the industrial scale. Then, the CPC and HPLC methods were transferred at industrial scale and the multi-heart cutting CPC-LC was performed in off-line mode. Using CPC with methyl ter-butyl ether-water 1:1 (v/v) solvent system and LC with Denali C18 column, 2g of crude extract sample were injected and leontopodic acid A and 3,5-dicaffeoylquinic acid were recovered with purity over 97%. The compounds were identified by MS and NMR.

摘要

雪绒花因其抗氧化化合物(狮足酸A和3,5-二咖啡酰奎宁酸)的组成,被认为是抗衰老成分的非常有价值的来源。在这项工作中,离线多中心切割CPC-LC分离在工业规模上建立起来,以便从雪绒花中分离并生产这两种抗氧化剂的新的高质量参考物质。为此,在实验室规模上开发并优化了CPC和HPLC方法,并建立了粗提物的综合CPCxHPLC分析。由此,CPC方法根据目标化合物在溶剂系统中的分配系数进行了第一次分离,HPLC方法对回收的馏分进行了第二次分离。建立了二维CPCxHPLC图谱,以便了解在工业规模上要选择的馏分。然后,将CPC和HPLC方法转移到工业规模,并以离线模式进行多中心切割CPC-LC。使用甲基叔丁基醚-水1:1(v/v)溶剂系统的CPC和Denali C18柱的LC,注入2g粗提物样品,回收的狮足酸A和3,5-二咖啡酰奎宁酸纯度超过97%。这些化合物通过质谱和核磁共振进行了鉴定。

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