首页> 外文期刊>Analytical Chemistry >BINARY SOLVENT EFFECTS IN CAPILLARY ZONE ELECTROPHORESIS WITH ULTRASENSITIVE NEAR-IR FLUORESCENCE DETECTION OF RELATED TRICARBOCYANINE DYES AND DYE-LABELED AMINO ACIDS
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BINARY SOLVENT EFFECTS IN CAPILLARY ZONE ELECTROPHORESIS WITH ULTRASENSITIVE NEAR-IR FLUORESCENCE DETECTION OF RELATED TRICARBOCYANINE DYES AND DYE-LABELED AMINO ACIDS

机译:超敏感近红外荧光检测相关三碳菁染料和染料标记的氨基酸在毛细管区带电泳中的二元溶剂作用

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摘要

We have investigated the effects of mixed organic/aqueous carrier buffers on the chromatographic efficiency and detectability of native near-infrared (near-IR) dyes and near-IR dye-labeled amino acids separated using capillary electrophoresis (CE). The near-IR fluorescence detector for this application incorporated a solid-state Ti/sapphire laser for excitation and a single-photon avalanche diode photodetector. The on-column mass detection limits for a series of cationic tricarbocyanine near-IR dyes varied from 350 to 5500 ymol in running buffers comprised of 95/5 methanol/water (pH = 9.1). In predominately aqueous running buffers, the defection limits degraded with significant losses in the separation efficiencies. Two near-IR dyes with similar structures but different charges (cationic and anionic) were used to investigate efficiency losses with binary methanol/water running buffers. The results indicated that solute/wall interactions were a major contribution to zone broadening for the cationic dye in high water compositions, resulting in significant losses in the numbers of theoretical plates, while the anionic dye did not exhibit these types of interactions. In order to demonstrate the usefulness of near-IR fluorescence in CE applications, a series of amino acids were labeled with a near-IR fluorescent dye containing an isothiocyanate functional group and separated using CE with mixed methanol/water buffers. The fluorescence signal strength and the chromatographic resolution were found to be improved in high methanol compositions in the running buffer.
机译:我们已经研究了混合的有机/水性载体缓冲液对使用毛细管电泳(CE)分离的天然近红外(near-IR)染料和近红外染料标记的氨基酸的色谱效率和可检测性的影响。用于该应用的近红外荧光探测器结合了用于激发的固态钛/蓝宝石激光器和单光子雪崩二极管光电探测器。在由95/5甲醇/水(pH = 9.1)组成的运行缓冲液中,一系列阳离子三碳菁近红外染料的柱上质量检测限在350至5500 ymol之间变化。在主要的水性运行缓冲液中,缺陷极限降低,分离效率明显下降。两种结构相似但电荷不同的近红外染料(阳离子和阴离子)用于研究二元甲醇/水运行缓冲液的效率损失。结果表明溶质/壁相互作用是阳离子染料在高水组成中区域展宽的主要贡献,导致理论塔板数显着减少,而阴离子染料则不表现出这些类型的相互作用。为了证明近红外荧光在CE应用中的有用性,用含有异硫氰酸酯官能团的近红外荧光染料标记了一系列氨基酸,并使用CE与混合的甲醇/水缓冲液进行分离。发现在运行缓冲液中的高甲醇含量下,荧光信号强度和色谱分辨率得到改善。

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