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A capillary electrophoresis electrospray ionization-mass spectrometry method using a borate background electrolyte for the fingerprinting analysis of flavonoids in Ginkgo biloba herbal supplements

机译:硼酸盐背景电解质的毛细管电泳电喷雾电离质谱法用于银杏叶草药补品中黄酮类成分的指纹分析

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摘要

A laboratory-built sheath liquid capillary electrophoresis-mass spectrometry interface was used to develop a qualitative method for fingerprinting analysis of 14 structurally similar flavones, flavonols, flavonones, and several representative glycosides in plant samples. The migration order of the flavonoids was dependent on a the number of hydroxyl groups present on the flavonoid B-ring, extent of conjugation, number of glycosidic functionalities, and ability of the flavonoid to form stable borate complexes with the background electrolyte. Parent ion scans of the flavonoids yielded [M - H] , except for catechol containing flavonoids, which were detected as borate adducts. These adducts can be used diagnostically to determine the presence or absence of catechol groups on unknown polyphenolic compounds. Product ion scans of the flavonoid glycosides and borate adducts typically yielded the deprotonated aglycone fragment as the base peak, which could be used to confirm the base structure of the flavonoid. This method's utility was demonstrated by analyzing flavonoids present in ethanolic extracts of Ginkgo biloba herbal supplements.
机译:实验室建立的鞘液毛细管电泳-质谱联用技术开发了一种定性方法,用于对植物样品中的14种结构相似的黄酮,黄酮醇,黄酮和几种代表性糖苷进行指纹分析。类黄酮的迁移顺序取决于类黄酮B环上存在的羟基数,缀合程度,糖苷官能度数以及类黄酮与背景电解质形成稳定硼酸盐络合物的能力。黄酮类化合物的母体离子扫描结果为[MH],但邻苯二酚类黄酮类化合物被检测为硼酸盐加合物。这些加合物可用于诊断确定未知多酚化合物上是否存在儿茶酚基团。类黄酮糖苷和硼酸盐加合物的产物离子扫描通常产生去质子化的糖苷配基片段作为基础峰,可用于确认类黄酮的基础结构。通过分析银杏草药补充剂乙醇提取物中存在的类黄酮,证明了该方法的实用性。

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