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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Fluorescence detection by intensity changes for high-performance thin-layer chromatography separation of lipids using automated multiple development
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Fluorescence detection by intensity changes for high-performance thin-layer chromatography separation of lipids using automated multiple development

机译:通过强度变化进行荧光检测,从而使用自动化的多重开发对脂质进行高效薄层色谱分离

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摘要

Changes in emission of berberine cation, induced by non-covalent interactions with lipids on silica gel plates, can be used for detecting and quantifying lipids using fluorescence scanning densitometry in HPTLC analysis. This procedure, referred to as fluorescence detection by intensity changes (FDIC) has been used here in combination with automated multiple development (HPTLC/AMD), a gradient-based separation HPTLC technique, for separating, detecting and quantifying lipids from different families. Three different HPTLC/AMD gradient schemes have been developed for separating: neutral lipid families and steryl glycosides; different sphingolipids; and sphingosine-sphinganine mixtures. Fluorescent molar responses of studied lipids, and differences in response among different lipid families have been rationalized in the light of a previously proposed model of FDIC response, which is based on ion-induced dipole interactions between the fluorophore and the analyte. Likewise, computational calculations using molecular mechanics have also been a complementary useful tool to explain high FDIC responses of cholesteryl and steryl-derivatives, and moderate responses of sphingolipids. An explanation for the high FDIC response of cholesterol, whose limit of detection (LOD) is 5. ng, has been proposed. Advantages and limitations of FDIC application have also been discussed.
机译:由与硅胶板上的脂质的非共价相互作用引起的小ber碱阳离子发射变化,可用于在HPTLC分析中使用荧光扫描光密度法检测和定量脂质。此过程称为强度变化荧光检测(FDIC),已与基于梯度的分离HPTLC技术自动多重显影(HPTLC / AMD)结合使用,用于分离,检测和定量来自不同家族的脂质。已开发出三种不同的HPTLC / AMD梯度方案来分离:中性脂质家族和甾醇苷;不同的鞘脂;和鞘氨醇-鞘氨醇混合物。根据先前提出的FDIC响应模型,已合理化了研究脂质的荧光摩尔响应以及不同脂质家族之间响应的差异,该模型基于荧光团与分析物之间的离子诱导偶极相互作用。同样,使用分子力学进行计算也已成为解释胆固醇和甾醇衍生物的高FDIC响应和鞘脂的中等响应的补充有用工具。已经提出了对胆固醇的高FDIC反应的解释,其检测极限(LOD)为5 ng。还讨论了FDIC应用程序的优缺点。

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