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Determination of 2,5-hexanedione,a metabolite of n-hexane,in urine: evaluation and application of three analytical methods
Institution:1. Academic Medical Center, University of Amsterdam, Coronel Laboratory for Occupational and Environmental Health, Department of Human Toxicology, P.O. Box 22700, 1100 DE Amsterdam, Netherlands;2. TNO-Nutrition and Food Research, Division of Occupational Toxicology and Nutrition, P.O. Box 5815, 2280 HV Rijswijk, Netherlands;1. Faculté de médecine, Département de Psychiatrie, Université de Montréal, Montréal, Québec, Canada;2. Faculté de médecine, Département de Neurosciences, Université de Montréal, Montréal, Québec, Canada;3. FRQ-S Research Center in Behavioural Neurobiology, Concordia University, Montréal, Québec, Canada;1. Department of Neurology, King George’s Medical University, U.P., Lucknow 226003, India;2. Breach Candy Hospital, Mumbai, India;3. Department of Pathology, R.M.L. Institute of Medical Sciences, Lucknow 226010, India;4. Department of Microbiology, King George’s Medical University, U.P., Lucknow 226003, India
Abstract:Three methods for the determination of 2,5-hexanedione (2,5-HD) in urine were compared in order to assess their applicability for toxicokinetic studies and biological monitoring of occupational exposure to n-hexane. Two of them were based on derivatization, followed by gas chromatography and electron-capture detection. of these two, one is a modification of the other, already published, method. The third one involves direct extraction of 2,5-HD followed by gas chromatography and flame-ionization detection. To determine 2,5-HD in urine of workers occupationally exposed to n-hexane, the most straightforward method, direct extraction of 2,5-HD from urine, has been proven to be the most suitable. However, in case of very low concentrations of 2,5-HD in urine, or analysis of small samples of blood, e.g. in kinetic studies, it is necessary to use a more sensitive procedure. The sensitivity of the methods based on the derivation of 2,5-HD followed by electron-capture detection, was, as expected, much higher in terms of analytical reliability. By using these methods, however, precautions are necessary to avoid a matrix effect.
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