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双水相体系萃取分离杜仲叶中桃叶珊瑚甙的研究 被引量:14

Extraction and Separation of Aucubin from the Leave of Eucommia ulmoides in Aqueous Two-phase System
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摘要 建立了由高分子化合物聚乙二醇(PEG4000)与葡聚糖40000(D40)形成的双水相体系萃取分离杜仲叶中桃叶珊瑚甙的新方法。考察了萃取体系相图,研究了PEG4000/D40质量分数、样品溶液加入量、pH值和温度等因素对双水相成相及桃叶珊瑚甙萃取率的影响。结果表明:PEG4000的质量分数为11%,D40质量分数为8%、样品溶液加入量为8g,温度为60℃,溶液pH为7时,双水相体系对桃叶珊瑚甙有较高的萃取率,重复三次可达到66.32%,而且萃取得到的桃叶珊瑚甙产品的纯度达到48.67%,远远高于粗提物中的8.750%。 A new method to extract and separate aucubin from the leave of Eucommia ulmoides Oliv.in aqueous two-phase system formed by macromolecular compound PEG4000 and dextran 40000 was investigated.The effect of phase map of extraction system,the addition amount of sample solution,pH and temperature were investigated systematically.The results showed that the best ATPS was composed of 11% PEG4000 and 8% D40,and addition of sample was 8 g at 60 ℃,pH 7.The highest extraction rate could reach to 66.32% after three ti...
出处 《天然产物研究与开发》 CAS CSCD 2010年第2期264-267,共4页 Natural Product Research and Development
基金 湖南省教育厅重点项目(08A056) 张家界市科技局项目(2008) 吉首大学研究生科研创新项目(JGY200907)
关键词 桃叶珊瑚甙 杜仲叶 双水相体系 萃取 分离 aucubin leave of Eucommia ulmoides Oliv. aqueous two-phase system extraction separation
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  • 1DeyamaTakeshi NishibeSanseietal.中国药理学报,2001,22(12):1057-1057.
  • 2Kawasaki T, Uezono K, Nakazawa Y. J. Health Sci., 2000, 22: 29.
  • 3Uezono K, Kawasaki T et al. Therap. Res., 1997, 18: 94.
  • 4Metori K, Tanimoto S et al. Nat. Med., 1998, 52: 465.
  • 5Li Y, Sato T, Metori K et al. Biol. Pharm. Bull., 1998, 21: 1306.
  • 6DENGYong PENGMing(邓勇 彭明).农业工程学报,1997,13(3):230-230.
  • 7DONGJuan-e MABai-lin JIAEr-hong(董娟娥 马柏林 贾二红).西北林学院学报,2001,16(1):53-53.
  • 8XIAO Chong-hou(肖崇厚). Chinese Traditional Medicine Chemistry(中药化学). Shanghai: Shanghai Science and Technology Press(上海: 上海科学技术出版社), 1977. 442.
  • 9XIN Qi-yi, XU Rui-qiu, ZHOU Zheng(邢其毅, 徐瑞秋, 周政). Basic Organic Chemistry(基础有机化学). Beijing: Higher Education Press(北京: 高等教育出版社), 2000.
  • 10FANG Kai-tai(方开泰). Uniform Design and the Uniform Design Tables(均匀设计与均匀设计表). Beijing: Science Press(北京: 科学出版社), 1994. 69.

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