首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Schinus terebinthifolius scale-up countercurrent chromatography (Part I): High performance countercurrent chromatography fractionation of triterpene acids with off-line detection using atmospheric pressure chemical ionization mass spectrometry
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Schinus terebinthifolius scale-up countercurrent chromatography (Part I): High performance countercurrent chromatography fractionation of triterpene acids with off-line detection using atmospheric pressure chemical ionization mass spectrometry

机译:Schinus terebinthifolius放大逆流色谱法(第I部分):高效逆流色谱法分离三萜烯酸并使用大气压化学电离质谱进行离线检测

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摘要

'Countercurrent chromatography' (CCC) is an ideal technique for the recovery, purification and isolation of bioactive natural products, due to the liquid nature of the stationary phase, process predictability and the possibility of scale-up from analytical to preparative scale. In this work, a method developed for the fractionation of Schinus terebinthifolius Raddi berries dichloromethane extract was thoroughly optimized to achieve maximal throughput with minimal solvent and time consumption per gram of processed crude extract, using analytical, semi-preparative and preparative 'high performance countercurrent chromatography' (HPCCC) instruments. The method using the biphasic solvent system composed of n-heptane-ethyl acetate-methanol-water (6:1:6:1, v/v/v/v) was volumetrically scaled up to increase sample throughput up to 120 times, while maintaining separation efficiency and time. As a fast and specific detection alternative, the fractions collected from the CCC-separations were injected to an 'atmospheric pressure chemical ionization mass-spectrometer' (APCI-MS/MS) and reconstituted molecular weight MS-chromatograms of the APCI-ionizable compounds from S. terebinthifolius were obtained. This procedure led to the direct isolation of tirucallane type triterpenes such as masticadienonic and 3 beta-masticadienolic acids. Also oleanonic and moronic acids have been identified for the first time in the species. In summary, this approach can be used for other CCC scale-up processes, enabling MS-target-guided isolation procedures. (C) 2015 Elsevier B.V. All rights reserved.
机译:“逆流色谱法”(CCC)由于固定相的液体性质,过程可预测性以及从分析规模扩大到制备规模的可能性,因此是回收,纯化和分离生物活性天然产物的理想技术。在这项工作中,使用分析,半制备和制备型'高效逆流色谱法,对用于分离链球菌(Schinus terebinthifolius Raddi浆果)二氯甲烷提取物的分馏方法进行了彻底优化,以实现最大的通量,同时每克加工的原油提取物的溶剂和时间消耗最少。 (HPCCC)仪器。使用由正庚烷-乙酸乙酯-甲醇-水(6:1:6:1,v / v / v / v)组成的双相溶剂系统的方法按体积放大,以将样品通量提高至120倍,而保持分离效率和时间。作为快速,特异性的检测替代方法,将从CCC分离物中收集的馏分注入“大气压化学电离质谱仪”(APCI-MS / MS)中,然后将来自ACC的可电离化合物的重现分子量MS色谱图获得了S.terebinthifolius。该方法导致了直接分离出提拉卡万型三萜烯,例如乳香二烯酮酸和3β-乳香二烯酸。在该物种中还首次鉴定了齐墩果酸和巴豆酸。总之,此方法可用于其他CCC放大过程,从而实现MS目标指导的隔离过程。 (C)2015 Elsevier B.V.保留所有权利。

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