Danková M, Kaniansky D, Fanali S, Iványi F
Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University, Bratislava, Slovak Republic.
J Chromatogr A. 1999 Apr 9;838(1-2):31-43. doi: 10.1016/s0021-9673(98)00974-1.
Analytical capabilities of capillary zone electrophoresis (CZE) with on-line coupled capillary isotachophoresis (ITP) sample pretreatment in the column-coupling capillary electrophoresis equipment to separate and determine enantiomers present in multicomponent ionic matrices were studied. Tryptophan was used as a model analyte in the ITP-capillary zone electrophoresis experiments performed in this context while a 90-component model mixture of UV-light absorbing organic anions and urine served as multicomponent sample matrices. Various working modes in which the on-line coupled capillary isotachophoresis-capillary zone electrophoresis combination in the column-coupling separation system can operate were employed in the anionic regime of the separation with direct injections of the samples. Advantages and limitations of these working modes in the separations of enantiomers present in model and urine matrices were assessed. Experiments with model mixtures of tryptophan enantiomers revealed that the two were resolved in the capillary zone electrophoresis stage with the aid of alpha-cyclodextrin also when their concentration ratio in the sample was 1:200 while the concentration of L(-)-tryptophan was 25 nmol/l. The limits of detection for the enantiomers were at approximately 10 nmol/l (approximately 1.5 ng/ml) concentrations for a 220 nm detection wavelength of the UV detector employed in the capillary zone electrophoresis stage and for a 30 microliters sample load. A high sample load capacity of the on-line coupled capillary isotachophoresis stage was effective in separating the samples corresponding to 3-6 microliters volumes of undiluted urine. The results from the runs with urine samples showed that only the capillary isotachophoresis-capillary zone electrophoresis combination with a post-column on-line coupled capillary isotachophoresis sample clean-up (responsible for a removal of more than 99% of the sample anionic constituents migrating in the on-line coupled capillary isotachophoresis stack and detectable in the capillary zone electrophoresis stage) provided a universal alternative for the detection and quantitation of the model analyte (L(-)-tryptophan).
研究了在柱耦合毛细管电泳设备中,利用在线耦合毛细管等速电泳(ITP)进行样品预处理的毛细管区带电泳(CZE)的分析能力,以分离和测定多组分离子基质中存在的对映体。在本文进行的ITP-毛细管区带电泳实验中,色氨酸用作模型分析物,而90种吸收紫外光的有机阴离子和尿液的模型混合物用作多组分样品基质。在分离的阴离子模式下,采用直接进样的方式,使用了柱耦合分离系统中在线耦合毛细管等速电泳-毛细管区带电泳组合的各种工作模式。评估了这些工作模式在分离模型和尿液基质中对映体时的优缺点。色氨酸对映体模型混合物的实验表明,当样品中它们的浓度比为1:200且L(-)-色氨酸浓度为25 nmol/l时,借助α-环糊精,二者在毛细管区带电泳阶段得以分离。对于毛细管区带电泳阶段使用的紫外检测器,在220 nm检测波长和30微升进样量的情况下,对映体的检测限约为10 nmol/l(约1.5 ng/ml)。在线耦合毛细管等速电泳阶段的高进样量能力有效地分离了相当于3-6微升未稀释尿液体积的样品。尿液样品的运行结果表明,只有采用柱后在线耦合毛细管等速电泳样品净化的毛细管等速电泳-毛细管区带电泳组合(负责去除在线耦合毛细管等速电泳堆积中迁移并在毛细管区带电泳阶段可检测到的超过99%的样品阴离子成分),才为检测和定量模型分析物(L(-)-色氨酸)提供了通用的替代方法。