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中国精品科技期刊2020
药雅俊, 柳雪姣, 裴妙荣, 陈强, 张俊英, 马慧雪. 不同苦荞茶中芦丁和槲皮素含量测定及二者冲泡溶出率比较研究[J]. 食品工业科技, 2020, 41(15): 250-255. DOI: 10.13386/j.issn1002-0306.2020.15.039
引用本文: 药雅俊, 柳雪姣, 裴妙荣, 陈强, 张俊英, 马慧雪. 不同苦荞茶中芦丁和槲皮素含量测定及二者冲泡溶出率比较研究[J]. 食品工业科技, 2020, 41(15): 250-255. DOI: 10.13386/j.issn1002-0306.2020.15.039
YAO Ya-jun, LIU Xue-jiao, PEI Miao-rong, CHEN Qiang, ZHANG Jun-ying, MA Hui-xue. Determination of Rutin and Quercetin in Different Tartary Buckwheat Tea and Comparative Study on Their Dissolution Rates[J]. Science and Technology of Food Industry, 2020, 41(15): 250-255. DOI: 10.13386/j.issn1002-0306.2020.15.039
Citation: YAO Ya-jun, LIU Xue-jiao, PEI Miao-rong, CHEN Qiang, ZHANG Jun-ying, MA Hui-xue. Determination of Rutin and Quercetin in Different Tartary Buckwheat Tea and Comparative Study on Their Dissolution Rates[J]. Science and Technology of Food Industry, 2020, 41(15): 250-255. DOI: 10.13386/j.issn1002-0306.2020.15.039

不同苦荞茶中芦丁和槲皮素含量测定及二者冲泡溶出率比较研究

Determination of Rutin and Quercetin in Different Tartary Buckwheat Tea and Comparative Study on Their Dissolution Rates

  • 摘要: 本文建立了HPLC法测定6款造粒成型苦荞茶、8款全麦(胚)苦荞茶中芦丁、槲皮素含量,并研究两类苦荞茶中芦丁、槲皮素的冲泡溶出率。采用Phenomenex C18色谱柱(4.6 mm×250 mm,5 μm),以甲醇(A)-0.1%冰乙酸(B)为流动相梯度洗脱,流速1.0 mL·min-1,检测波长257 nm,柱温30 ℃。在此色谱条件下,芦丁和槲皮素完全分离,线性范围分别为0.00362~0.90613 mg·mL-1(r=0.9996)、0.01439~0.71947 mg·mL-1(r=0.9998),平均回收率分别为101.99%(RSD 1.71%)、98.37%(RSD 2.03%)。结果表明,造粒成型苦荞茶中芦丁和槲皮素总量17.34 mg·g-1,槲皮素占89.10%,其冲泡液中芦丁、槲皮素总溶出率19.41%;全麦(胚)苦荞茶中芦丁、槲皮素总量11.96 mg·g-1,芦丁占91.39%,其冲泡液中芦丁、槲皮素总溶出率67.86%。苦荞茶冲泡液中芦丁、槲皮素总量:造粒成型苦荞茶<全麦(胚)苦荞茶(P<0.01)。采用SPSS 22.0对14款苦荞茶及冲泡液中芦丁、槲皮素总量和溶出率进行聚类分析,可分为造粒成型苦荞茶和全麦(胚)苦荞茶两类。

     

    Abstract: The content of rutin and quercetin in 6 kinds of granulated tartary buckwheat tea and 8 kinds of whole wheat (embryo) tartary buckwheat tea were determined by HPLC, and the dissolution rate of rutin and quercetin in two kinds of tartary buckwheat tea was studied. A Phenomenex C18 column (4.6 mm×250 mm, 5 μm) was used for gradient elution with methanol (A) -0.1% glacial acetic acid (B) as the mobile phase. The flow rate was 1.0 mL·min-1, and the detection wavelength was 257 nm, and column temperature was 30℃. Under this chromatographic condition, rutin and quercetin were completely separated, and the linear ranges were 0.00362~0.90613 mg·mL-1 (r=0.9996), 0.01439~0.71947 mg·mL-1 (r=0.9998), and the average recoveries were 101.99% (RSD 1.71%) and 98.37% (RSD 2.03%). The results showed that the total amount of rutin and quercetin in granulated buckwheat tea was 17.34 mg·g-1, and quercetin accounted for 89.10%. The total dissolution rate of rutin and quercetin in the brewing solution was 19.41%. The total amount of rutin and quercetin in whole wheat (embryo) buckwheat tea was 11.96 mg·g-1, of which rutin accounted for 91.39%. The total dissolution rate of rutin and quercetin in the brewing solution was 67.86%. The total dissolution of rutin and quercetin in the brewing solution:Granulated tartary buckwheat teaP<0.01). The cluster analysis of rutin and quercetin in 14 kinds of buckwheat tea and its brewing solution was carried out by SPSS 22.0. It could be divided into two categories:Granulated buckwheat tea and whole wheat (embryo) buckwheat tea.

     

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