Hirokawa T, Takemi H, Kiso Y, Takiyama R, Morio M, Fujii K, Kikuchi H
J Chromatogr. 1984 Feb 10;305(2):429-37.
Experimentally determined optimum separation conditions for a metabolite of anaesthetic halothane in urine, trifluoroacetic acid, were assessed by means of computer simulation of the isotachophoretic steady-state. The simulation confirmed that urinary acids and trifluoroacetic acid can be separated in the limited pH range of 3.5-3.7 buffered by beta-alanine, as far as the pH dependence of effective mobility is utilized. The separated fraction of the trifluoroacetic acid zone was identified by mass spectrometry. The simulated coefficient of the calibration curve agreed well with the observed value.
通过等速电泳稳态的计算机模拟,评估了实验确定的尿液中麻醉剂氟烷的一种代谢物三氟乙酸的最佳分离条件。模拟结果证实,利用有效迁移率对pH的依赖性,在由β-丙氨酸缓冲的3.5 - 3.7有限pH范围内,可以分离尿液中的酸和三氟乙酸。通过质谱法鉴定了三氟乙酸区的分离部分。校准曲线的模拟系数与观测值吻合良好。