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采用两步梯度洗脱结合生物自显影法的高效薄层色谱法快速筛选麦冬中脂肪酶抑制剂。

Rapid Screening of Lipase Inhibitors from Ophiopogonis Radix Using High-Performance Thin Layer Chromatography by Two Step Gradient Elution Combined with Bioautographic Method.

机构信息

Institute of Chinese Medical Sciences, State Key Laboratory of Quality Research in Chinese Medicine, University of Macau, Macao 999078, China.

Zhuhai UM Science & Technology Research Institute, Zhuhai 519031, China.

出版信息

Molecules. 2022 Feb 9;27(4):1155. doi: 10.3390/molecules27041155.

Abstract

In this study, a high-performance thin layer chromatography (HPTLC) method by two step gradient elution with two mobile phases was developed for the simultaneous analysis of seven constituents in Ophiopogonis Radix. The chromatography was performed on silica gel 60 F plate with dichloromethane-methanol-ethyl acetate-water (70:25:12:3, ///) and dichloromethane-methanol (300:1, /) as the mobile phase for two step gradient elution. Then, the HPTLC profiles were observed after derivatization with 10% sulfuric acid in ethanol solution. The obtained HPTLC images were further analyzed by chemometric approaches and the samples could be clustered based on regions and/or growth years, which were two important factors affecting the constituents in Ophiopogonis Radix. Furthermore, five compounds including ophiopogonin D, ophiopojaponin C, ophiopogonin D', ophiopogonin C' and methylophiopogonanone B were screened as potential lipase inhibitors from Ophiopogonis Radix by the HPTLC-bioautographic method. The binding modes and interactions between the five compounds and lipase were further explored by molecular docking analysis. The developed HPTLC method could be used for quality control of Ophiopogonis Radix and screening of the potential lipase inhibitors.

摘要

在这项研究中,开发了一种两步梯度洗脱的高效薄层色谱(HPTLC)方法,使用两种流动相同时分析麦冬根中的七种成分。在硅胶 60 F 板上进行色谱分离,采用二氯甲烷-甲醇-乙酸乙酯-水(70:25:12:3,///)和二氯甲烷-甲醇(300:1,/)作为两步梯度洗脱的流动相。然后,用乙醇溶液中的 10%硫酸进行衍生化后观察 HPTLC 图谱。通过化学计量学方法对所得 HPTLC 图谱进行进一步分析,可以根据区域和/或生长年份对样品进行聚类,这是影响麦冬根中成分的两个重要因素。此外,通过 HPTLC-生物自显影法,从麦冬根中筛选出五种化合物,包括麦冬皂苷 D、麦冬皂苷 C、麦冬皂苷 D'、麦冬皂苷 C'和甲基麦冬酮 B,作为潜在的脂肪酶抑制剂。进一步通过分子对接分析探讨了这五种化合物与脂肪酶的结合模式和相互作用。所开发的 HPTLC 方法可用于麦冬的质量控制和潜在脂肪酶抑制剂的筛选。

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