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首页> 外文期刊>Separation and Purification Technology >Application of high-speed counter-current chromatography and preparative high-performance liquid chromatography mode for rapid isolation of anthraquinones from Morinda officinalis How.
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Application of high-speed counter-current chromatography and preparative high-performance liquid chromatography mode for rapid isolation of anthraquinones from Morinda officinalis How.

机译:高速逆流色谱和制备型高效液相色谱法在从巴戟天中快速分离蒽醌中的应用

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摘要

Five anthraquinones including alizarin-1-methylether, 1,2-dimethoxy-3-hydroxyanthraquinone, 1-hydroxy-3-hydroxymethylanthraquinone, rubiadin-1-methylether and anthragallol-2-methylether were isolated and purified by high-speed counter-current chromatography (HSCCC) and followed by preparative high-performance liquid chromatography (prep-HPLC) mode from Morinda officinalis How. n-Hexane-ethyl acetate-methanol-water (6:4:5:5, v/v/v/v) was employed as the two-phase solvent system in HSCCC. Consequently, partially purified fraction "1" (90.6 mg, containing alizarin-1-methylether and 1,2-dimethoxy-3-hydroxyanthraquinone), partially purified fraction "2" (52.5mg, containing 1-hydroxy-3-hydroxymethylanthraquinone and rubiadin-1-methylether) and 19.8 mg anthragallol-2-methylether were obtained from 300 mg of the crude extract. Then the partially purified fractions were further separated by prep-HPLC, which recovered 54.9 mg alizarin-1-methylether, 10.2 mg 1,2-dimethoxy-3-hydroxyanthraquinone, 16.4mg l-hydroxy-3-hydroxymethylanthraquinone and 18.2mg rubiadin-1-methylether. The purity of each compound was over 96%, as determined by HPLC. The structures of five anthraquinones were identified by MS and ~1H NMR. It is the first report of discovering 1,2-dimethoxy-3-hydroxyanthraquinone from the plant of M. officinalis How. The results demonstrated that this separation mode can integrate the advantages of HSCCC and prep-HPLC to improve separation efficiency, and adopted method was a feasible, economical and efficient technique for rapid preparative isolation of complicated natural products.
机译:分离并纯化了五种蒽醌,包括茜素-1-甲基醚,1,2-二甲氧基-3-羟基蒽醌,1-羟基-3-羟基甲基蒽醌,茜草素-1-甲基醚和蒽酚-2-甲基醚,并通过高速逆流色谱法进行了纯化。 (HSCCC)模式,然后从Morinda officinalis How中获得制备型高效液相色谱(prep-HPLC)模式。正己烷-乙酸乙酯-甲醇-水(6:4:5:5,v / v / v / v)用作HSCCC中的两相溶剂系统。因此,部分纯化的级分“ 1”(90.6 mg,含有茜素-1-甲基醚和1,2-二甲氧基-3-羟基蒽醌),部分纯化的级分“ 2”(52.5mg,含有1-羟基-3-羟甲基蒽醌和茜草素)从300 mg的粗提物中获得了-1-甲基醚和19.8 mg蒽酚-2-甲基醚。然后通过制备型HPLC进一步分离部分纯化的级分,回收了54.9mg茜素-1-甲基醚,10.2mg 1,2-二甲氧基-3-羟基蒽醌,16.4mg 1-羟基-3-羟基甲基蒽醌和18.2mg rubiadin-1。 -甲醚。通过HPLC测定,每种化合物的纯度均超过96%。通过MS和〜1H NMR鉴定了五个蒽醌的结构。这是首次从M. officinalis How的植物中发现1,2-二甲氧基-3-羟基蒽醌的报道。结果表明,该分离模式可以兼顾HSCCC和制备型HPLC的优点,提高分离效率,所采用的方法是一种快速,复杂,经济的分离天然产物的可行,经济,有效的技术。

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