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使用光离子化检测器通过气液色谱法分析血清和尿液中的治疗性药物及常见滥用药物。

Analysis of therapeutic and commonly abused drugs in serum and urine by gas-liquid chromatography using a photoionization detector.

作者信息

Jaramillo L F, Driscoll J N

出版信息

J Chromatogr. 1979 Dec 30;186:637-44. doi: 10.1016/s0021-9673(00)95284-1.

Abstract

A simple, rapid and sensitive gas chromatographic procedure using the photoionization detector (PID) was developed for the detection and quantitation of several drugs in serum and urine. In order to evaluate the performance of the PID, the results were compared with those of the flame-ionization detector (FID). The data indicate that the PID is 8-16 times more sensitive than the FID for the drugs studied in the barbiturate group. Excellent reproducibility was found for samples quantitated with the PID on a routine basis. The PID and FID produced statistically similar results on extracted serum samples. The correlation coefficient was 0.99. The PID also produced chromatograms with less background than those obtained with the FID for many extracted serum samples. The advantages of the PID for drug analysis in biological fluids include simplicity of operation, lack of solvent response, universal drug response, non-destructive character and stability.

摘要

开发了一种使用光离子化检测器(PID)的简单、快速且灵敏的气相色谱程序,用于检测和定量血清及尿液中的几种药物。为了评估PID的性能,将结果与火焰离子化检测器(FID)的结果进行了比较。数据表明,对于巴比妥酸盐组中研究的药物,PID的灵敏度比FID高8至16倍。对于常规用PID定量的样品,发现具有出色的重现性。在提取的血清样品上,PID和FID产生的结果在统计学上相似。相关系数为0.99。对于许多提取的血清样品,PID产生的色谱图背景也比FID获得的色谱图少。PID用于生物流体中药物分析的优点包括操作简单、无溶剂响应、对药物的普遍响应、非破坏性和稳定性。

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