Ou-Yang Yun Fu, Wang Yong Sheng, Mi Xian Wen, Xue Jin Hua, Wang Ying
School of Public Health, Nanhua University, P. R China.
Anal Sci. 2007 May;23(5):533-7. doi: 10.2116/analsci.23.533.
A novel method for the rapid and sensitive analysis of 1-hydroxypyrene (1-OHP) in human urine has been developed that uses a resonance light scattering (RLS) technique. The assay was based on the interaction of ethyl violet (EV) with 1-hydroxypyrene to form an ion-associate complex, which resulted in the enhancement of RLS intensity and the appearance of new RLS spectra. In the presence of anionic surfactant, the maximum RLS peak of the system was located at 396 nm at pH 8.0. Under the optimum conditions, it was found that the enhanced RLS intensity was directly proportional to the concentration of 1-hydroxypyrene in the range of 4.0 - 982 microg l(-1). The detection limit was 1.2 microg l(-1) and the recoveries of 1-hydroxypyrene were 92.8 - 102.3% (n = 6). The proposed method was successfully applied to the analysis of human urine samples. The results of 1-hydroxypyrene were in agreement with those obtained by the method of high-performance liquid chromatography.
已开发出一种利用共振光散射(RLS)技术对人尿液中1-羟基芘(1-OHP)进行快速灵敏分析的新方法。该分析方法基于乙基紫(EV)与1-羟基芘相互作用形成离子缔合物,这导致RLS强度增强并出现新的RLS光谱。在阴离子表面活性剂存在下,该体系的最大RLS峰位于pH 8.0时的396 nm处。在最佳条件下,发现增强的RLS强度在4.0 - 982 μg l⁻¹范围内与1-羟基芘的浓度成正比。检测限为1.2 μg l⁻¹,1-羟基芘的回收率为92.8 - 102.3%(n = 6)。所提出的方法成功应用于人尿液样本的分析。1-羟基芘的结果与通过高效液相色谱法获得的结果一致。