Li Jinhua, Cai Zongwei
Department of Chemistry, Hong Kong Baptist University, Kowloon Tong, Kowloon, Hong Kong SAR, China.
Talanta. 2008 Oct 19;77(1):331-9. doi: 10.1016/j.talanta.2008.06.033. Epub 2008 Jul 1.
We demonstrated that anionic porphyrins could be stacked and separated in micellar electrokinetic chromatography (MEKC) and microemulsion electrokinetic chromatography (MEEKC) by applying acetonitrile and high salt content in human urine sample matrix. The introduction of sample containing acetonitrile and sodium chloride into the CE capillary at more than 10% of the total capillary volume resulted in the improvement of peak resolution and the enhancement of detection sensitivity. The achieved acetonitrile stacking enrichment factors of six porphyrins ranged from 12 to 32 in MEKC and from 28 to 33 in MEEKC, respectively. The stacking technique was successfully applied for analyzing porphyrins present in urine samples that were deproteinized with acetonitrile. For the analysis of coproporphyrin isomers, addition of the sodium cholate (SC) into micelle and microemulsion solutions provided adequate resolution. Calibration curves obtained for the determination of coproporphyrin isomers were found linear between 30 and 400 nmol L(-1), and the limit of detection (LOD) was 20 nmol L(-1) in MEEKC. Intra- and interday precisions (n=11) in the microemulsion separation system for the isomers at spiked concentrations of 40-400 nmol L(-1) in urine were in the range of 0.1-0.4% and 0.7-7.6% for migration time and peak area, respectively. Coproporphyrin III, coproporphyrin I and uroporphyrin were detected at levels of 80.7 nmol L(-1), 32.3 nmol L(-1) and 19.8 nmol L(-1), respectively, in the urine samples collected from healthy individuals. Different porphyrin profiles, however, were observed in urine samples from porphyria cutanea tarda (PCT) patients.
我们证明,通过在人尿液样品基质中加入乙腈和高盐含量,阴离子卟啉可以在胶束电动色谱法(MEKC)和微乳液电动色谱法(MEEKC)中实现堆叠和分离。将含有乙腈和氯化钠的样品以超过毛细管总体积10%的量引入CE毛细管,可提高峰分辨率并增强检测灵敏度。在MEKC中,六种卟啉实现的乙腈堆叠富集因子分别为12至32,在MEEKC中为28至33。该堆叠技术成功应用于分析用乙腈脱蛋白的尿液样品中的卟啉。对于粪卟啉异构体的分析,在胶束和微乳液溶液中加入胆酸钠(SC)可提供足够的分离度。用于测定粪卟啉异构体的校准曲线在30至400 nmol L⁻¹之间呈线性,在MEEKC中的检测限(LOD)为20 nmol L⁻¹。在微乳液分离系统中,尿液中加标浓度为40 - 400 nmol L⁻¹的异构体的日内和日间精密度(n = 11),迁移时间和峰面积分别在0.1 - 0.4%和0.7 - 7.6%范围内。从健康个体采集的尿液样品中,粪卟啉III、粪卟啉I和尿卟啉的检测水平分别为80.7 nmol L⁻¹、32.3 nmol L⁻¹和19.8 nmol L⁻¹。然而,在迟发性皮肤卟啉症(PCT)患者的尿液样品中观察到了不同的卟啉谱。