Petrlova Jitka, Mikelova Radka, Stejskal Karel, Kleckerova Andrea, Zitka Ondrej, Petrek Jiri, Havel Ladislav, Zehnalek Josef, Vojtech Adam, Trnkova Libuse, Kizek Rene
Department of Chemistry and Biochemistry, Mendel University of Agriculture and Forestry, Brno, Czech Republic.
J Sep Sci. 2006 May;29(8):1166-73. doi: 10.1002/jssc.200500425.
The most active form of sulfur in biomolecules is the thiol group, present in a number of biologically active compounds. Here we present a comprehensive study of thiol analysis using flow injection analysis/HPLC with electrochemical detection. The effect of different potentials of working electrodes, of organic solvent contents in the mobile phase, and of isocratic and gradient elution on simultaneous determination of thiol compounds (cysteine, cystine, N-acetylcysteine, homocysteine, reduced and oxidised glutathione, desglycinephytochelatin, and phytochelatins) are described and discussed. These thiol compounds were well separated and detected under optimised HPLC-electrochemical detection conditions (mobile phase: 80 mM trifluoroacetic acid and methanol with a gradient profile starting at 97:3 (TFA:methanol), kept constant for the first 8 min, then decreasing to 85:15 during one minute, kept constant for 8 min, and finally increasing linearly up to 97:3 from 17 to 18 min; the flow rate was 0.8 mL/min, column and detector temperature 25 degrees C, and the electrode potential 900 mV). We were able to determine tens of femtomoles (3 S/N) of the thiols per injection (5 microL), except for phytochelatin5 whose detection limit was 2.1 pmole. This technique was consequently used for simultaneous determination of compounds of interest in biological samples (maize tissue and human blood serum).
生物分子中硫的最活跃形式是硫醇基团,它存在于许多生物活性化合物中。在此,我们展示了一项使用流动注射分析/高效液相色谱结合电化学检测进行硫醇分析的全面研究。描述并讨论了工作电极的不同电位、流动相中有机溶剂含量以及等度洗脱和梯度洗脱对硫醇化合物(半胱氨酸、胱氨酸、N - 乙酰半胱氨酸、高半胱氨酸、还原型和氧化型谷胱甘肽、去甘氨酸植物螯合肽以及植物螯合肽)同时测定的影响。在优化的高效液相色谱 - 电化学检测条件下(流动相:80 mM 三氟乙酸和甲醇,梯度洗脱起始比例为 97:3(三氟乙酸:甲醇),前 8 分钟保持恒定,然后在 1 分钟内降至 85:15,再保持 8 分钟恒定,最后在 17 至 18 分钟内线性增至 97:3;流速为 0.8 mL/min,柱温和检测器温度为 25 摄氏度,电极电位为 900 mV),这些硫醇化合物得到了良好的分离和检测。除了植物螯合肽 5 的检测限为 2.1 pmole 外,我们能够每次进样(5 μL)测定低至数十飞摩尔(3 倍信噪比)的硫醇。因此,该技术被用于同时测定生物样品(玉米组织和人血清)中感兴趣的化合物。