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高效液相色谱法同时测定葡萄籽中芦丁、槲皮素与异槲皮素的含量 被引量:2

Simultaneous determination of rutin,quercetin,and isoquercetin in grape seeds by HPLC
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摘要 目的建立高效液相色谱法测定葡萄籽中的芦丁、槲皮素与异槲皮素的含量。方法葡萄籽经提取处理得到黄酮苷元,通过高效液相色谱法测定芦丁、槲皮素、异槲皮素的含量来计算总黄酮的含量。在Agilent 1200系统中,室温条件下使用Symmetry C18柱(4.6mm×250mm,5.0μm),以乙腈-0.4%磷酸溶液(40∶60)为流动相;流速1.0mL.min-1;检测波长501nm。结果芦丁、槲皮素、异槲皮素在0.2~1.6μg线性关系均良好,相关系数r分别为0.999 1、0.999 4、0.999 0,平均回收率分别为101.0%、98.2%、99.7%,RSD分别为1.3%、2.7%、1.6%(n=6)。结论该法灵敏度高、专属性强,可以通过测定葡萄籽中的芦丁、槲皮素、异槲皮素来推算其总黄酮含量,对葡萄籽的药用成分价值作出评估。 Objective To determine the content of rutin, quercetin and isoquercetin in grape seeds by HPLC. Methods Flavone glycosides were extracted from grape seeds, in which the content of rutin, quercetin and isoquercetin was as- sayed via HPLC to calculate the total flavone quantity. By Agilentl200 workstation equipped with the Syrnnletry C18 column (4. 6 minX250 ram, 5.0μm) at room temperature, the mobile phase was composed of acetotrile and 0.4% phosphoric acid (40 : 60), flushed at 1.0 mL · min^-1 and detected at 501 nm. Results Good linearity was obtained at 0. 2-1.6 μg, the average recoveries were 101.0%, 98.2%, and 99.7%, with the relative coefficients 0. 999 1, 0. 999 4, and 0. 999 0, and theRSDs were 1.3%, 2.7%, and 1.6%, respectively, n=6. Conclusion The method proves sensitive and specific, applicable for the content determination of rutin, quercetin and isoquercetin in grape seeds to estimate the qualityof total flavone, leading to the accreditation of active ingredients in grape seeds.
出处 《中南药学》 CAS 2011年第12期894-897,共4页 Central South Pharmacy
关键词 葡萄籽 芦丁 槲皮素 异槲皮素 高效液相色谱 grape seed rutin quercetin isoquercetin HPLC
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  • 1曾诚,罗颂平,宓穗卿,黄天来,李坤寅,骆运晖.菟丝子活性成分槲皮素含量测定中HPLC方法的建立[J].中国中医药信息杂志,2004,11(8):701-703. 被引量:5
  • 2董文庚,邓晓丽,苗凤智,牟艳艳,陈秋生,孙震,林艳.HPLC法测定银杏叶中黄酮的含量[J].理化检验(化学分册),2005,41(8):563-565. 被引量:26
  • 3诸姮,胡宏友,卢昌义,李雄.植物体内的黄酮类化合物代谢及其调控研究进展[J].厦门大学学报(自然科学版),2007,46(A01):136-143. 被引量:88
  • 4JAN A T, KAMLI M R, MURTAZA I, et al. Dietary flavonoid quercetin and associated health benefitsan overview[J]. Food Reviews International, 2010, 26(3): 302-317.
  • 5KOBORI M, MASUMOTO S, AKIMOTO Y, et al. Dietary quercetin alleviates diabetic symptoms and reduces streptozotocin-induced disturbance of hepatic gene expression in mice[J]. Molecular Nutrition and Food Research, 2009, 53(7): 859-868.
  • 6STEWART L K, SOILEAU J L, RIBNICKY D, et al. Quercetin transiently increases energy expenditure but persistently decreases circulating markers of inflammation in C57BL/6J mice fed a high-fat diet[J]. Metabolism, 2008, 57(7): 39-46.
  • 7OVERMAN A, CHUANG C C, MCINTOSH M. Quercetin attenuates inflammation in human macrophages and adipocytes exposed to macrophage-conditioned media[J]. International Journal of Obesity, 2011, 35(9): 1165-1172.
  • 8YANG Lei, LI Xiaofan, GAO Lei, et al. Suppressive effects of quercetin-3-O-(6"-feruloyl)-beta-D-galactopyranoside on adipogenesis in 3T3-L1 preadipocytes through down-regulation of PPARgamma and CEBPalpha expression[J]. Phytotherapy Research, 2012, 26(3): 438-444.
  • 9AHN J, LEE H, KIM S, et al. The anti-obesity effect of quercetin is mediated by the AMPK and MAPK signaling pathways[J]. Biochemical and Biophysical Research Communications, 2008, 373(4): 545-549.
  • 10KOBORI M, MASUMOTO S, AKIMOTO Y, et al. Chronic dietary intake of quercetin alleviates hepatic fat accumulation associated with consumption of a Western-style diet in C57BL6J mice[J]. Molecular Nutrition and Food Research, 2011, 55(4): 530-540.

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