1995Journal of Analytical ToxicologyRequires access

Development of a Biomonitoring Assay for ortho-Toluidine or its Metabolites in Human Urine

J.A. Williamson, Paul H. Lieder, L. Amegashitsi

Open publisher page 4 citations

Abstract

We describe a method for the measurement of a metabolite of ortho-toluidine in urine. The method uses capillary gas chromatographic separation with mass spectrometric detection to quantitate the metabolite, and it requires no derivatization or extraction of the urine sample prior to analysis. Quantitation is accomplished by comparison with a control spiked with a standard of the metabolite. The coefficient of variation for day-to-day reproducibility of the assay was 9.7%. The limit of quantitation was 10 micrograms/L (10 parts per billion).

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What this paper is about

We describe a method for the measurement of a metabolite of ortho-toluidine in urine. The method uses capillary gas chromatographic separation with mass spectrometric detection to quantitate the metabolite, and it requires no derivatization or extraction of the urine sample prior to analysis. Quantitation is accomplished by comparison with a control spiked with a standard of the metabolite. The coefficient of variation for day-to-day reproducibility of the assay was 9.7%. The limit of quantitation was 10 micrograms/L (10 parts per billion).

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Available abstract

We describe a method for the measurement of a metabolite of ortho-toluidine in urine. The method uses capillary gas chromatographic separation with mass spectrometric detection to quantitate the metabolite, and it requires no derivatization or extraction of the urine sample prior to analysis. Quantitation is accomplished by comparison with a control spiked with a standard of the metabolite. The coefficient of variation for day-to-day reproducibility of the assay was 9.7%. The limit of quantitation was 10 micrograms/L (10 parts per billion).

Key concepts: Metabolite, Chromatography, Biomonitoring, Derivatization, Urine, Chemistry, Detection limit, Coefficient of variation

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