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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Application of microemulsion thin layer chromatography for the fingerprinting of licorice (Glycyrrhiza spp.)
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Application of microemulsion thin layer chromatography for the fingerprinting of licorice (Glycyrrhiza spp.)

机译:微乳薄层色谱在甘草指纹图谱中的应用

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Microemulsion thin layer chromatography (ME-TLC) has been developed for the fingerprinting of aqueous extract of licorice (Glycyrrhiza spp.). The separation conditions and operational processes of the method have been optimized, and its chromatographic characteristics compared with conventional TLC. The ME-TLC system is easier to operate, and with higher resolution and better reproducibility than the conventional TLC. The separation mechanism and retention behavior of ME-TLC are found to differ significantly from conventional TLC. The technique has been applied to the analysis of different licorice species including G. uralensis, G. glabra and G. inflata; and to monitor the dynamic accumulation of active ingredients in licorice plant harvested at different times during its growing cycle in a Good Agriculture Practice (GAP) research farm. Results show that without post-chromatographic derivatization, the ME-TLC fingerprinting images of different species appear as clear, well resolved bands and with strong intensities to reveal distinctively different compositional features of the samples. The technique has also been applied successfully to monitor the dynamic accumulation of active components in licorice plant as a function of growing time in an experimental licorice farm. The study demonstrates the potential of ME-TLC technique as a rapid fingerprinting tool for the authentication and quality assessment of licorice as well as other herbs. (c) 2005 Published by Elsevier B.V.
机译:已经开发了微乳液薄层色谱(ME-TLC)来对甘草(Glycyrrhiza spp。)的水提物进行指纹分析。该方法的分离条件和操作过程已得到优化,其色谱特性与常规TLC相比。与常规TLC相比,ME-TLC系统更易于操作,并且具有更高的分辨率和更好的重现性。发现ME-TLC的分离机理和保留行为与常规TLC明显不同。该技术已被用于分析甘草的不同种,包括甘草,甘草和膨胀黄。并在良好农业规范(GAP)研究农场中监测甘草植物在生长周期中不同时间收获的活性成分的动态积累。结果表明,在没有色谱后衍生化的情况下,不同物种的ME-TLC指纹图像显示为清晰,分辨良好的谱带,并具有很强的强度,以揭示样品的明显不同的组成特征。该技术也已成功地应用于监测甘草植物中活性成分的动态积累,这是甘草试验场中生长时间的函数。这项研究证明了ME-TLC技术作为一种快速指纹识别工具的潜力,可用于甘草以及其他草药的鉴定和质量评估。 (c)2005年由Elsevier B.V.

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