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Biological fate of sulfur mustard, 1,1-thiobis(2-chloroethane): Isolation and identification of urinary metabolites following intraperitoneal administration to rat
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Detection of trace levels of thiodiglycol in blood, plasma and urine using gas chromatography-electron capture negative ion chemical ionization mass spectrometry
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R.M Black and R.W. Read. Detection of trace levels of thiodiglycol in blood, plasma and urine using gas chromatography-electron capture negative ion chemical ionization mass spectrometry. J. Chromatogr. 449: 261-270 (1988).
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Methods for the analysis of thiodiglycol sulfoxide, a metabolite of sulfur mustard, in urine using gas chromatography-mass spectrometry
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R.M. Black and R.W. Read. Methods for the analysis of thiodiglycol sulfoxide, a metabolite of sulfur mustard, in urine using gas chromatography-mass spectrometry. J Chromatogr. 558: 393-404 (1991).
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Analysis of 1,1′-sulfonylbis[2-(methylsulfinyl)ethane] and 1-methylsulfinyl-2-[2-(methylthio)-ethylsulfonyl] ethane, metabolites of sulfur mustard, in urine using gas chromatography-mass spectrometry
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R.M. Black, R.J. Clarke, and R.W. Read. Analysis of 1,1′- sulfonylbis[2-(methylsulfinyl)ethane] and 1-methylsulfinyl-2-[2-(methylthio)- ethylsulfonyl] ethane, metabolites of sulfur mustard, in urine using gas chromatography-mass spectrometry. J. Chromatogr. 558: 405-414 (1991).
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Improved methodology for the detection and quantitation of urinary metabolites of sulfur mustard using gas chromatography-tandem mass spectrometry
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R.M. Black and R.W. Read. Improved methodology for the detection and quantitation of urinary metabolites of sulfur mustard using gas chromatography-tandem mass spectrometry. J. Chromatogr. B 665: 97-105 (1995).
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R.M. Black, J.L. Hambrook, D.J. Howells, and R.W. Read. Biological fate of sulfur mustard, 1,1′-thiobis(2-chloroethane). Urinary excretion profiles of hydrolysis products and β-lyase metabolites after cutaneous application in the rat. J. Anal. Toxicol. 16: 79-84 (1992).
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0028906866
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Biological fate of sulfur mustard, 1,1′-thiobis(2-chloroethane): Identification of β-lyase metabolites and hydrolysis products in human urine
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R.M. Black and R.W. Read. Biological fate of sulfur mustard, 1,1′-thiobis(2-chloroethane): identification of β-lyase metabolites and hydrolysis products in human urine. Xenobiotica 25: 167-173 (1995).
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Analysis of thiodiglycol in urine of victims of an alleged attack with mustard gas, Part II
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E.M. Jakubowski, F.R. Sidell, R.A. Evans, M.A. Carter, J.R. Keeler, J.D. McMonagle, A. Swift, J.R. Smith, and T.W. Dolzine. Quantification of thiodiglycol in human urine after an accidental sulfur mustard exposure. Toxicol. Methods 10: 143-150 (2000).
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Analysis of the sulfur mustard metabolite 1,1′-sulfonylbis[2-S-(N- acetylcysteinyl)ethane] in urine by negative ion electrospray liquid chromatography-mass spectrometry
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R.W. Read and R.M. Black. Analysis of the sulfur mustard metabolite 1,1′-sulfonylbis[2-S-(N-acetylcysteinyl)ethane] in urine by negative ion electrospray liquid chromatography-mass spectrometry. J. Anal. Toxicol. 28: pp-pp (2004).
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The chemistry of 1,1′-thiobis(2-chloroethane) (sulfur mustard). Part 1. Some simple derivatives
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