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Selective Focusing of Catecholamines and Weakly Acidic Compounds by Capillary Electrophoresis Using a Dynamic pH Junction

机译:使用动态pH结通过毛细管电泳对邻苯二酚胺和弱酸性化合物进行选择性聚焦

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摘要

A systematic study of selective analyte focusing in a multisection electrolyte system by capillary electrophoresis (CE) is presented. It was found that a dynamic pH junction between sample and background electrolyte zones can be used to focus zwitterionic catecholamines and weakly acidic compounds without the use of special ampholytes. Differences in pH and concentration of complexing agents, such as borate, in the sample and back-ground electrolyte zones were determined to cause focusing through changes in the local velocity of the analyte in two different segments of the capillary. Velocity-difference induced focusing (V-DIF) of analytes using a dynamic pH junction allowed the injection of large sample volumes and significantly improved the concentration sensitivity of CE. Under optimized conditions, the limit of detection for epinephrine was determined to be about 4×10~(-8) M (the original sample) with conventional UV absorbance detection. Moreover, separation efficiencies greater than a million theoretical plates can be achieved by focusing such large sample volumes into narrow zones. Multisection electrolyte systems, which lead to the formation of a dynamic pH junction, can be tuned toward improving the concentration sensitivity of specific analytes if their chemical properties are known.
机译:提出了通过毛细管电泳(CE)在多部分电解质系统中聚焦选择性分析物的系统研究。发现在样品和本底电解质区域之间的动态pH连接可以用于聚焦两性离子儿茶酚胺和弱酸性化合物,而无需使用特殊的两性电解质。确定了样品和背景电解质区域中pH值和络合剂(例如硼酸盐)的浓度的差异,从而通过毛细管两个不同部分中分析物的局部速度变化引起聚焦。使用动态pH结的速度差诱导分析物聚焦(V-DIF)允许进样大体积样品,并显着提高了CE的浓度灵敏度。在最佳条件下,采用常规紫外吸收检测法测定肾上腺素的检出限约为4×10〜(-8)M(原始样品)。而且,通过将如此大的样品体积集中到狭窄区域中,可以实现超过一百万个理论塔板的分离效率。如果已知化学分析物的化学性质,则可以调节导致动态pH结形成的多部分电解质系统,以提高特定分析物的浓度灵敏度。

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