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同时测定玫瑰花瓣及近缘植物中的可水解鞣质。

Simultaneous determination of hydrolysable tannins in the petals of Rosa rugosa and allied plants.

机构信息

Kitami Institute of Technology, 165 Koen-cho, Kitami 090-8507, Japan.

出版信息

J Nat Med. 2010 Jul;64(3):383-7. doi: 10.1007/s11418-010-0418-5.

Abstract

The petals of Rosa rugosa and allied plants for medicinal use contain abundant hydrolysable tannins, and they show remarkable biological activities. The activities are dependent on the structures of the hydrolysable tannins, so their contents and compositions are essential for evaluation of medicinal potency. Therefore, we optimized the simultaneous quantitative determination of the hydrolysable tannins using ultra-performance liquid chromatography. A column of ethylene bridged hybrid (BEH) phenyl (C(6) alkyl phenyl group as solid-phase modification) was shown to be most effective for the separation of hydrolysable tannins isolated from R. rugosa and related compounds when the column temperature was kept under 25 degrees C. The efficacy of the BEH phenyl column might be due to the interaction between solid phase and phenolic ester groups of hydrolysable tannins such as galloyl, hexahydroxydiphenoyl and valoneoyl groups. The relation between the retention times on the BEH phenyl column and the column temperature was demonstrated to depend on the structural characteristics of hydrolysable tannins.

摘要

皱叶蔷薇及近缘植物的花瓣中含有丰富的可水解单宁,具有显著的生物活性。这些活性取决于可水解单宁的结构,因此其含量和组成对于评估药用功效至关重要。因此,我们采用超高效液相色谱法对可水解单宁进行了同时定量测定的优化。结果表明,在 25°C 以下保持柱温时,采用乙烯桥联杂化(BEH)苯基(C(6)烷基苯基作为固相修饰)柱对从皱叶蔷薇及相关化合物中分离出的可水解单宁进行分离最为有效。BEH 苯基柱的功效可能归因于可水解单宁中的酚酯基团(如没食子酰基、六羟二苯酰基和缬草酸基)与固定相之间的相互作用。在 BEH 苯基柱上的保留时间与柱温之间的关系证明取决于可水解单宁的结构特征。

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