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蓝莓不可萃取多酚的纯化及组分分析
引用本文:韩彩静,金磊,林新明,林东森,程玉蕾,程安玮.蓝莓不可萃取多酚的纯化及组分分析[J].北京工商大学学报(自然科学版),2016,34(1):50-54.
作者姓名:韩彩静  金磊  林新明  林东森  程玉蕾  程安玮
作者单位:栖霞市农业局 农产品质量安全管理办公室,山东 栖霞 265300;山东省农业科学院 农产品研究所,山东 济南 250100,栖霞市农业局 农产品质量安全管理办公室,山东 栖霞 265300,栖霞市农业局 农产品质量安全管理办公室,山东 栖霞 265300,栖霞市农业局 农产品质量安全管理办公室,山东 栖霞 265300,栖霞市农业局 农产品质量安全管理办公室,山东 栖霞 265300,山东省农业科学院 农产品研究所,山东 济南 250100
基金项目:国家自然科学基金青年基金资助项目(31101270)。
摘    要:对蓝莓果实中不可萃取多酚进行了提取、分离和纯化,并利用高效液相色谱对其组成成分进行了分析。结果表明,7种大孔树脂中HPD-100C对蓝莓不可萃取多酚的吸附率和解吸率都相对较高;采用大孔树脂HPD-100C进行动态纯化,再利用高效液相色谱分析其组分,得出蓝莓不可萃取多酚中主要物质为飞燕草色素、矢车菊色素、牵牛花色素、芍药花色素、锦葵色素,与可萃取多酚相似,说明两者具有相似组分。

关 键 词:不可萃取多酚  纯化  组分分析
收稿时间:2014/12/30 0:00:00

Purification and Composition Analysis of Non-Extractable Polyphenols in Blueberry
HAN Caijing,JIN Lei,LIN Xinming,LIN Dongsen,CHENG Yulei and CHENG Anwei.Purification and Composition Analysis of Non-Extractable Polyphenols in Blueberry[J].Journal of Beijing Technology and Business University:Natural Science Edition,2016,34(1):50-54.
Authors:HAN Caijing  JIN Lei  LIN Xinming  LIN Dongsen  CHENG Yulei and CHENG Anwei
Institution:Management Office of Agricultural Product Quality and Safety, Agricultural Bureau of Qixia, Qixia 265300,China;Institute of Agro-Food Science and Technology, Shandong Academy of Agricultural Science, Jinan 250100,China,Management Office of Agricultural Product Quality and Safety, Agricultural Bureau of Qixia, Qixia 265300,China,Management Office of Agricultural Product Quality and Safety, Agricultural Bureau of Qixia, Qixia 265300,China,Management Office of Agricultural Product Quality and Safety, Agricultural Bureau of Qixia, Qixia 265300,China,Management Office of Agricultural Product Quality and Safety, Agricultural Bureau of Qixia, Qixia 265300,China and Institute of Agro-Food Science and Technology, Shandong Academy of Agricultural Science, Jinan 250100,China
Abstract:The extraction, separation and purification of non-extractable polyphenols (NEPP) in blueberries were studied and its components were analyzed using HPLC.The results showed that adsorption and desorption rates of HPD-100C were relatively high among seven kinds of macroporous resins. HPD-100C was used for dynamic purification and HPLC was applied for components analysis. The main components of NEPP were delphinidin, cyanidin, petunidin, peonidin, and malvidin, which is similar to those of extractable polyphenols (EPP).
Keywords:non-extractable polyphenols  purification  composition analysis
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