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An automated method of on-line extraction coupled with flow injection and capillary electrophoresis for phytochemical analysis

机译:一种自动在线提取结合流动注射和毛细管电泳进行植物化学分析的方法

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In this study, an automated system for phytochemical analysis was successfully fabricated for the first time in our laboratory. The system included on-line decocting, filtering, cooling, sample introducing, separation, and detection, which greatly simplified the sample preparation and shortened the analysis time. Samples from the decoction extract were drawn every 5 min through an on-line filter and a condenser pipe to the sample loop from which 20-μL samples were injected into the running buffer and transported into a split-flow interface coupling the flow injection and capillary electrophoresis systems. The separation of glycyrrhetinic acid (GTA) and glycyrrhizic acid (GA) took less than 5 min by using a 10 mM borate buffer (adjusted pH to 8.8) and +10 kV voltage. Calibration curves showed good linearity with correlation coefficients (R) more than 0.9991. The intra-day repeatabilities (n = 5, expressed as relative standard deviation) of the proposed system, obtained using GTA and GA standards, were 1.1 % and 0.8% for migration time and 0.7% and 0.9% for peak area, respectively. The mean recoveries of GTA and GA in the off-line extract of Glycyrrhiza uralensis Fisch root were better than 99.0%. The limits of detection (signal-to-noise ratio = 3) of the proposed method were 6.2 μg/mL and 6.9 μg/mL for GTA and GA, respectively. The dynamic changes of GTA and GA on the decoction time were obtained during the on-line decoction process of Glycyrrhiza uralensis Fisch root.
机译:在这项研究中,首次在我们的实验室中成功制造了一个自动化的植物化学分析系统。该系统包括在线煎煮,过滤,冷却,样品引入,分离和检测,从而大大简化了样品制备并缩短了分析时间。通过在线过滤器和冷凝器,每隔5分钟从汤提取物中提取样品至样品定量管,从样品定量管中将20 µL样品注入运行缓冲液中,并输送至分流接口中,该分流接口将流动注射和毛细管连接电泳系统。通过使用10 mM硼酸盐缓冲液(pH调节至8.8)和+10 kV电压,甘草次酸(GTA)和甘草次酸(GA)的分离花费了不到5分钟的时间。校准曲线显示出良好的线性,相关系数(R)大于0.9991。使用GTA和GA标准获得的拟议系统的日内重复性(n = 5,表示为相对标准偏差),对于迁移时间分别为1.1%和0.8%,对于峰面积分别为0.7%和0.9%。甘草离线根提取物中GTA和GA的平均回收率均高于99.0%。该方法的检出限(信噪比= 3)对于GTA和GA分别为6.2μg/ mL和6.9μg/ mL。在甘草Fisch根在线煎煮过程中,得到了GTA和GA随煎煮时间的动态变化。

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