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番泻苷及其苷元在溶液中的光稳定性。

Photostability of sennosides and their aglycones in solution.

机构信息

Zurich University of Applied Sciences, Institute of Chemistry and Biotechnology, Research Group of Natural Products and Phytopharmacy, Wädenswil, Switzerland.

Max Zeller und Söhne AG, Romanshorn, Switzerland.

出版信息

Phytochem Anal. 2024 Apr;35(3):521-529. doi: 10.1002/pca.3308. Epub 2024 Jan 10.

Abstract

INTRODUCTION

Sennosides are the main active constituents of the dried leaves and/or pods of Senna alexandrina Mill. that are used as laxatives. A hypothesis is that aglycones are formed during the degradation of sennosides. However, it is unknown, whether this happens under visible light exposure and how photosensitive sennosides behave in solution.

OBJECTIVES

Pure anthraquinone glycosides were tested on their behaviour during sample preparation in the lab under visible light exposure in dependence on the instability of the solvent.

MATERIALS AND METHODS

Samples before and after exposure were analysed using UHPLC with UV/Vis and MS detection.

RESULTS

Under visible light protection, the solutions were stable for 14 days at room temperature whereas a loss of 20%-60% was measured after 1 day of light exposure. The loss of sennosides due to degradation can be as fast as up to 2%-2.5% per hour, which might have a tremendous impact on phytochemical analysis results during the course of an analysis. The formation of aglycones was not observed in the degradation of sennosides and rhein-8-O-glucoside.

CONCLUSION

Aglycones could not be found as a result of the forced degradation. The solutions of sennosides clearly need to be protected from light to obtain reliable analytical results, and light protection is a major point for the stability of liquid preparations.

摘要

简介

番泻苷是番泻叶和/或豆荚的主要活性成分,被用作泻药。有假说认为在番泻苷的降解过程中形成了苷元。然而,目前尚不清楚这种情况是否发生在可见光照射下,以及光敏感的番泻苷在溶液中的行为如何。

目的

在实验室可见光暴露下,根据溶剂的不稳定性,测试纯蒽醌糖苷在样品制备过程中的行为。

材料和方法

使用 UHPLC 结合 UV/Vis 和 MS 检测对暴露前后的样品进行分析。

结果

在可见光保护下,溶液在室温下稳定 14 天,而在光照 1 天后,损失了 20%-60%。由于降解导致的番泻苷损失可能高达每小时 2%-2.5%,这可能会对分析过程中的植物化学分析结果产生巨大影响。在番泻苷和大黄酸-8-O-葡萄糖苷的降解过程中未观察到苷元的形成。

结论

由于强制降解,未发现苷元。为了获得可靠的分析结果,番泻苷溶液显然需要避光,并且避光是液体制剂稳定性的一个主要要点。

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