马慧, 李博涵, 朱美林, 李红梅, 戴轶群, 陈刚胜, 吴成柱. 碱提酸沉法提取银杏外种皮中银杏酸的工艺研究[J]. 蚌埠医科大学学报, 2019, 44(9): 1264-1267. DOI: 10.13898/j.cnki.issn.1000-2200.2019.09.034
    引用本文: 马慧, 李博涵, 朱美林, 李红梅, 戴轶群, 陈刚胜, 吴成柱. 碱提酸沉法提取银杏外种皮中银杏酸的工艺研究[J]. 蚌埠医科大学学报, 2019, 44(9): 1264-1267. DOI: 10.13898/j.cnki.issn.1000-2200.2019.09.034
    MA Hui, LI Bo-han, ZHU Mei-lin, LI Hong-mei, DAI Yi-qun, CHEN Gang-sheng, WU Cheng-zhu. Study on the extraction process of ginkgolic acid from seed coat of Ginkgo biloba using alkaline extraction and acid precipitation[J]. Journal of Bengbu Medical University, 2019, 44(9): 1264-1267. DOI: 10.13898/j.cnki.issn.1000-2200.2019.09.034
    Citation: MA Hui, LI Bo-han, ZHU Mei-lin, LI Hong-mei, DAI Yi-qun, CHEN Gang-sheng, WU Cheng-zhu. Study on the extraction process of ginkgolic acid from seed coat of Ginkgo biloba using alkaline extraction and acid precipitation[J]. Journal of Bengbu Medical University, 2019, 44(9): 1264-1267. DOI: 10.13898/j.cnki.issn.1000-2200.2019.09.034

    碱提酸沉法提取银杏外种皮中银杏酸的工艺研究

    Study on the extraction process of ginkgolic acid from seed coat of Ginkgo biloba using alkaline extraction and acid precipitation

    • 摘要:
      目的优化银杏外种皮的有效部位总银杏酸的提取工艺。
      方法采用碱提酸沉法提取银杏外种皮中银杏酸,通过单因素试验和正交试验,以白果酸含量为指标,采用高效液相色谱法测其含量,考察料液比、碱液浓度、碱提时间、酸沉pH、酸沉时间对提取工艺的影响。
      结果银杏酸的最佳提取工艺条件为料液比1:5,碱液浓度3%,碱提时间1 h,酸沉pH 5,酸沉时间1 h。
      结论经优选的碱提酸沉法提取银杏酸工艺,操作简单,稳定易行,提取效果好,重复性好,适合大量提取银杏外种皮中银杏酸。

       

      Abstract:
      ObjectiveTo optimize the extraction process of ginkgolic acid from the seedcoat of Ginkgo biloba L.
      MethodsThe ginkgolic acid was extracted from the seedcoat of Ginkgo biloba using alkaline extraction and acid precipitation.The single factor test and orthogonal experiment were applied.The content of ginkgolic acid was set as parameter, and determined using high performance liquid chromatography.The effects of solid-liquid ratio, alkali concentration, alkali extraction time, acid precipitation pH and acid precipitation time on extraction process were investigated.
      ResultsThe ratio of solid to liquid for 1:5, alkali concentration for 3%, alkali extraction time for 1 h were the optimum extraction conditions.
      ConclusionsThe optimized extraction process of ginkgolic acid using alkaline extraction and acid precipitation is simple, stable, easy to operate, and has good extraction repeatability, and suitable to extract ginkgolic acid from the seedcoat of Ginkgo biloba.

       

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