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采用在线等速电泳样品预处理和二极管阵列检测技术对尿液中乳清酸进行毛细管区带电泳分析。

Capillary zone electrophoresis of orotic acid in urine with on-line isotachophoresis sample pretreatment and diode array detection.

作者信息

Danková M, Strasík S, Molnárová M, Kaniansky D, Marák J

机构信息

Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University, Bratislava, Slovak Republic.

出版信息

J Chromatogr A. 2001 May 4;916(1-2):143-53. doi: 10.1016/s0021-9673(00)01079-7.

Abstract

Potentialities of capillary zone electrophoresis with on-line isotachophoresis sample pretreatment and diode array detection (ITP-CZE-DAD) to the separation, detection and identification of trace analytes present in biological matrices were investigated. Urine represented a multicomponent, variable and high ionic strength matrix while orotic acid was chosen as a model analyte of a practical clinical relevance in this investigation. Using the ITP-CZE combination in the column-coupling configuration of the separation system ITP provided an enhanced sample load capacity to the separation system (a 30 microl sample injection volume), concentrated the analyte and served as an on-line sample clean up technique. On the other hand, CZE performed a final separation of the analyte from matrix constituents present in the ITP pretreated sample and provided favorable conditions for its detection and identification by DAD. Using current correction and smoothing procedures analytically relevant DAD spectra of orotic acid could be obtained also in instances when this was injected in a model sample at a 2 x 10(-7) mol/l concentration (an estimated limit of determination of orotic acid at a 218 nm detection wavelength). ITP-CZE separations of urine samples (based on differences in acid-base properties and host-guest complexations of the analyte and matrix anionic constituents) led to significant sample clean ups. Consequently, DAD spectra of orotic acid matching its reference spectrum, could be acquired also in instances when the acid was present in urine matrices (loaded in 30 microl injection volumes of 20-fold diluted urine samples) at 4-6 x 10(-7) mol/l concentrations. Here, residual trace matrix interferents prevented a closer approach to the above value attainable for model samples. Although this work was focused only on one analyte and urine matrix it implies very promising potentialities of the ITP-CZE-DAD combination in the identification and quantitation of trace analytes present in biological matrices, in general.

摘要

研究了采用在线等速电泳样品预处理和二极管阵列检测(ITP-CZE-DAD)的毛细管区带电泳技术对生物基质中痕量分析物进行分离、检测和鉴定的潜力。尿液是一种多组分、可变且离子强度高的基质,而乳清酸被选为本次研究中具有实际临床意义的模型分析物。在分离系统的柱耦合配置中使用ITP-CZE组合,ITP提高了分离系统的进样量(30微升进样体积),浓缩了分析物,并作为一种在线样品净化技术。另一方面,CZE对ITP预处理样品中存在的分析物与基质成分进行了最终分离,并为通过DAD进行检测和鉴定提供了有利条件。使用电流校正和平滑程序,即使将乳清酸以2×10⁻⁷摩尔/升的浓度注入模型样品中(在218纳米检测波长下乳清酸的估计测定限),也能获得与分析相关的DAD光谱。尿液样品的ITP-CZE分离(基于分析物和基质阴离子成分的酸碱性质和主客体络合差异)导致了显著的样品净化。因此,当乳清酸以4 - 6×10⁻⁷摩尔/升的浓度存在于尿液基质中(以20倍稀释的尿液样品30微升进样体积进样)时,也能获得与参考光谱匹配的乳清酸DAD光谱。在这里,残留的痕量基质干扰物阻碍了更接近模型样品可达到的上述值。尽管这项工作仅关注一种分析物和尿液基质,但总体而言,它暗示了ITP-CZE-DAD组合在生物基质中痕量分析物的鉴定和定量方面具有非常有前景的潜力。

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