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首页> 外文期刊>Phytochemical Analysis >Preparative isolation, fast centrifugal partition chromatography purification and biological activity of cajaflavanone from Derris ferruginea stems.
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Preparative isolation, fast centrifugal partition chromatography purification and biological activity of cajaflavanone from Derris ferruginea stems.

机译:铁皮草茎中总黄酮的制备分离,快速离心分离纯化和生物活性。

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Introduction - The Derris genus is known to contain flavonoid derivatives, including prenylated flavanones and isoflavonoids such as rotenoids, which are generally associated with significant biological activity. Objective - To develop an efficient preparative isolation procedure for bioactive cajaflavanone. Methodology - Fast centrifugal partition chromatography (FCPC) was optimised to purify cajaflavanone from Derris ferruginea stems in a single step as compared to fractionation from the cyclohexane extract by successive conventional solid-liquid chromatography procedures. The purification yield, purity, time and solvent consumption per procedure are described. The anti-fungal, anti-bacterial, anti-leishmanial, anti-plasmodial, anti-oxidant activities and the inhibition of advanced glycation end-products (AGEs) by cajaflavanone accumulation are described. Results - FCPC enabled cajaflavanone purification in a single separation step, yielding sufficient quantities to perform in vitro biological screening. Interestingly, cajaflavanone had an inhibitory effect on the formation of AGEs, without displaying any in vitro anti-oxidant activity. Conclusion - A simple and efficient procedure, in comparison with other preparative methods, for bioactive cajaflavone purification has been developed using FCPC.Digital Object Identifier http://dx.doi.org/10.1002/pca.1336
机译:简介-德里斯属(Derris )含有类黄酮衍生物,包括异戊烯基黄烷酮和类黄酮(如类胡萝卜素),它们通常与重要的生物活性有关。目的-开发一种有效的生物活性卡加黄酮分离制备方法。方法学-与通过连续的常规固液色谱方法从环己烷提取物中进行分馏相比,快速离心分配色谱法(FCPC)可以在一个步骤中从铁皮草中纯化出黄aja酮。描述了每个步骤的纯化产率,纯度,时间和溶剂消耗。描述了抗真菌,抗细菌,抗利什曼肽,抗疟原虫,抗氧化活性以及卡加黄酮积累对高级糖基化终产物(AGEs)的抑制作用。结果-FCPC能够在单个分离步骤中纯化卡哈黄酮,从而产生足够的量来进行体外生物筛选。有趣的是,卡加黄酮对AGEs的形成具有抑制作用,而没有表现出任何体外抗氧化活性。结论-与其他制备方法相比,使用FCPC开发了一种简单有效的生物活性卡那黄酮纯化方法。数字对象标识符http://dx.doi.org/10.1002/pca.1336

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