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远红外辅助萃取溶剂去除-毛细管电泳法测定莲心生物活性成分。

Far infrared-assisted removal of extraction solvent for capillary electrophoretic determination of the bioactive constituents in Plumula Nelumbinis.

机构信息

School of Pharmacy, Fudan University, Shanghai, P. R. China.

Institute of Shanghai Architectural Design and Research, Shanghai, P. R. China.

出版信息

Electrophoresis. 2019 Feb;40(4):582-586. doi: 10.1002/elps.201800477. Epub 2018 Nov 29.

Abstract

Far infrared radiation was employed in the rapid removal of the solvents in the extracts of Plumula Nelumbinis and standard mixture solutions to prevent the interference of the solvent peaks toward their capillary electrophoretic measurements. The sample solutions in small vials were exposed to far infrared ray at 60°C for 3 min to remove solvent. The dried samples in the vials were each dissolved into running buffer with the aid of ultrasonication for capillary electrophoresis analysis. The far infrared-assisted solvent removal approach was sucessfully applied in the rapid determination of neferine, liensinine, isoliensinine, rutin and hyperoside in Plumula Nelumbinis. The five analytes could be well separated within 12 min in a 40 cm long fused silica capillary at a separation voltage of 12 kV in a 50 mM borate buffer (pH 9.2). The results indicated that the interferences of the solvent peaks in the capillary electropherograms of the herbal drugs were eliminated completely.

摘要

远红外辐射被用于快速去除菝葜提取物和标准混合物溶液中的溶剂,以防止溶剂峰对其毛细管电泳测量的干扰。将小瓶中的样品溶液在 60°C 下暴露于远红外线下 3 分钟以去除溶剂。在小瓶中干燥的样品在每个超声辅助下溶解到运行缓冲液中,用于毛细管电泳分析。远红外辅助溶剂去除方法成功应用于快速测定菝葜中的荷叶碱、莲心碱、异莲心碱、芦丁和金丝桃苷。在 50 mM 硼酸盐缓冲液(pH 9.2)中,在 40 cm 长的熔融石英毛细管中以 12 kV 的分离电压,五种分析物可在 12 分钟内得到良好分离。结果表明,完全消除了草药中毛细管电泳图谱中溶剂峰的干扰。

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