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黑嚏根草(Helleborus niger L.)根中甾体皂苷及其发酵过程中转化产物的液相色谱-质谱(n)表征

LC-MS(n) characterization of steroidal saponins in Helleborus niger L. roots and their conversion products during fermentation.

作者信息

Duckstein Sarina M, Stintzing Florian C

机构信息

WALA Heilmittel GmbH, Department of Analytical Development & Research, Section Phytochemical Research, Dorfstrasse 1, D-73087 Bad Boll/Eckwälden, Germany.

WALA Heilmittel GmbH, Department of Analytical Development & Research, Section Phytochemical Research, Dorfstrasse 1, D-73087 Bad Boll/Eckwälden, Germany.

出版信息

Steroids. 2015 Jan;93:47-59. doi: 10.1016/j.steroids.2014.09.011. Epub 2014 Nov 20.

Abstract

Steroidal saponins comprise a substantial part of the secondary metabolite spectrum in the medicinal plant Helleborus niger L. (black hellebore). The saponin fraction from the roots was investigated by LC-MS(n) resulting in 38 saponins and β-ecdysone. Nine diosgenyl-type glycosides, mainly furostanols consisting of the aglycones diosgenin, macranthogenin, sceptrumgenin, and sarsasapogenin were accompanied by 5 diosgenyl-type saponins exhibiting an aglycone with an additional OH group. However, the most relevant compounds were 24 acetylated polyhydroxy saponins including hellebosaponins A and D. The enzymes glucuronidase, β-glucosidase, and pectinase were used to obtain an idea on potential fermentative transformation reactions by incubation of the isolated model saponins macranthosid I and hellebosaponin A. In a second step, aqueous H. niger extracts containing a much greater range of saponins were monitored during fermentation and 12months of storage. The metabolites were examined and assigned by LC-MS(n) and targeted extracted ion current (EIC) scan analyses. Good agreement was found among the results from the model compounds and the whole aqueous fermented extracts. The native diosgenyl-type furostanol saponins were converted to spirostanols under scission of hexoses. Alteration of the acetylated polyhydroxy saponins, exclusively spirostanols, took place following cleavage of acetyl groups and terminal deoxyhexoses. Most interestingly, the pentoses of the sugar chain at C(1) were not affected. Conversion of acetylated polyhydroxy saponins resulted in a final structure type which was stable and detectable, even after 12months of fermentation and storage.

摘要

甾体皂苷是药用植物黑嚏根草(Helleborus niger L.)次生代谢产物谱的重要组成部分。采用液相色谱 - 质谱联用(LC-MS(n))对根中的皂苷部分进行了研究,共鉴定出38种皂苷和β-蜕皮激素。9种薯蓣皂苷元型糖苷,主要是由苷元薯蓣皂苷元、大花万寿竹苷元、偏诺皂苷元和平贝母皂苷元组成的呋甾烷醇,同时还有5种苷元带有额外羟基的薯蓣皂苷元型皂苷。然而,最相关的化合物是24种乙酰化多羟基皂苷,包括嚏根草皂苷A和D。使用葡萄糖醛酸酶、β-葡萄糖苷酶和果胶酶,通过对分离出的模型皂苷大花万寿竹苷I和嚏根草皂苷A进行孵育,来了解潜在的发酵转化反应。第二步,在发酵和储存12个月期间,监测含有更多种类皂苷的黑嚏根草水提取物。通过LC-MS(n)和靶向提取离子流(EIC)扫描分析对代谢产物进行检测和鉴定。模型化合物和整个水发酵提取物的结果之间具有良好的一致性。天然的薯蓣皂苷元型呋甾烷醇皂苷在己糖裂解的情况下转化为螺旋甾烷醇。乙酰化多羟基皂苷(仅为螺旋甾烷醇)在乙酰基和末端脱氧己糖裂解后发生变化。最有趣的是,C(1)位糖链上的戊糖不受影响。乙酰化多羟基皂苷的转化产生了一种最终的结构类型,即使在发酵和储存12个月后仍然稳定且可检测。

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