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远志根中C-葡萄糖基呫吨酮类化合物聚远志呫吨酮的结构分析

Structural Analysis of Polygalaxanthones, C-Glucosyl Xanthones of Polygala tenuifolia Roots.

作者信息

Tsujimoto Takashi, Nishihara Masakazu, Osumi Yuko, Hakamatsuka Takashi, Goda Yukihiro, Uchiyama Nahoko, Ozeki Yoshihiro

机构信息

Department of Biotechnology and Life Science, Faculty of Engineering, Tokyo University of Agriculture and Technology.

Nara Prefectural Pharmaceutical Research Center.

出版信息

Chem Pharm Bull (Tokyo). 2019;67(11):1242-1247. doi: 10.1248/cpb.c19-00608.

Abstract

Polygalaxanthone III, a xanthone glycoside that is a major constituent of "Polygala Root" (Polygala tenuifolia roots, Onji in the Japanese Pharmacopoeia), has been used as a standard in the quality control of crude drugs. However, we previously noted differences in the chromatographic properties of one of three samples of polygalaxanthone III. Therefore, standardization of the standard itself is extremely important. The structures of three standard samples commercially available as polygalaxanthone III were characterized by LC/MS and NMR. LC/MS analysis revealed that two molecular types exist. Both types are chromatographically separable but have an identical mass number with distinguishable MS/MS spectra. One dimensional (1D)-NMR analyses demonstrated that both had the same xanthone moiety and heteronuclear multiple bond correlation (HMBC) analyses revealed that they are structural isomers at the connecting position of glucose to apiose 1-position. Consequently, the isomers were identified as polygalaxanthone III and its regioisomer, polygalaxanthone XI. Based on the findings, we recommend using the LC-MS/MS detection method, which discriminates polygalaxanthone III and XI, to confirm the quality of the standard.

摘要

远志酮III是一种黄酮苷,是“远志根”(远志的根,日本药局方中的远志)的主要成分,已被用作生药质量控制的标准品。然而,我们之前注意到三个远志酮III样品之一的色谱性质存在差异。因此,标准品本身的标准化极其重要。通过液相色谱/质谱联用(LC/MS)和核磁共振(NMR)对市售的三种作为远志酮III的标准样品的结构进行了表征。LC/MS分析表明存在两种分子类型。两种类型在色谱上可分离,但具有相同的质量数,其二级质谱(MS/MS)谱可区分。一维(1D)-NMR分析表明两者具有相同的黄酮部分,异核多键相关(HMBC)分析表明它们在葡萄糖与芹糖1位连接位置上是结构异构体。因此,这些异构体被鉴定为远志酮III及其区域异构体远志酮XI。基于这些发现,我们建议使用能够区分远志酮III和XI的LC-MS/MS检测方法来确认标准品的质量。

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