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Retention and Separation Changes of Ternary and Quaternary Alkaloids from Chelidonium majus L. by TLC Under the Influence of External Magnetic Field

机译:外源磁场对薄层白屈菜三元和第四级生物碱的保留和分离变化

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摘要

Thin layer techniques proved their usefulness in the analysis of plant extract material. Thanks to their low operation costs, high sample throughput and possibility to gather chromatographic data for the whole sample in a single act, they allowed to find, and in some cases identify, active ingredients often hidden in sophisticated plant extract matrices. It was also proved that the presence of a magnetic field changes the retention of some substances, and moreover changes the separation efficiency of chromatographic systems. In the presented experiment, retention, efficiency and separation abilities of TLC chromatographic systems for mixtures of alkaloids under the influence of magnetic field depending on inductivity of the magnetic field, the saturation of chromatographic chamber and quantity of chromatographed substances were investigated. The results obtained were tested on real plant extracts that revealed the ability of chromatography in a magnetic field for separation of ternary and quaternary alkaloids from Chelidonium majus L. Our experiments proved that the presence of magnetic field induction lines perpendicular to the chromatographic plate plane can influence the width and retention of chromatographed substances, and can be considered as a tool for separation adjustment of plant extracts containing ternary and quaternary alkaloids.
机译:薄层技术证明了其在植物提取物材料分析中的有用性。由于其较低的运行成本,较高的样品通量以及一次操作即可收集整个样品色谱数据的可能性,他们得以找到并在某些情况下鉴定出通常隐藏在复杂植物提取物基质中的活性成分。还证明了磁场的存在改变了某些物质的保留,而且改变了色谱系统的分离效率。在本实验中,研究了在磁场影响下,TLC色谱系统对生物碱混合物的保留,效率和分离能力,这取决于磁场的感应度,色谱室的饱和度和色谱物质的数量。在真实的植物提取物上测试了获得的结果,该提取物揭示了在磁场中色谱法能够从白屈菜中分离出三价和四价生物碱的能力。我们的实验证明,垂直于色谱板平面的磁场感应线的存在会影响色谱物质的宽度和保留时间,可以看作是调整包含三元和四元生物碱的植物提取物的分离工具。

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