Conversion of trichloroacetic acid to dichloroacetic acid in biological samples

被引:42
作者
Ketcha, MM
Stevens, DK
Warren, DA
Bishop, CT
Brashear, WT
机构
[1] USAF,AFMC,HSC,ARMSTRONG LAB,OCCUPAT & ENVIRONM HLTH DIRECTORATE,TOXICOL DIV,WRIGHT PATTERSON AFB,OH 45433
[2] WASHINGTON STATE UNIV,COLL PHARM,PULLMAN,WA 99164
[3] UNIV GEORGIA,DEPT TOXICOL & PHARM,ATHENS,GA 30602
关键词
D O I
10.1093/jat/20.4.236
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Trichloroethylene (TCE) has been identified as an environmental contaminant in groundwater. Trichloroacetic acid (TCA), dichloroacetic acid (DCA), chloral hydrate (CH), trichloroethanol (TCOH), and trichloroethanol glucuronide (TCOG) have been identified as metabolites of TCE. Studies have shown that TCA and DCA are toxicologically significant metabolites that can induce liver tumors in B6C3F1 mice. Methods for the analysis of these metabolites are important for conducting pharmacokinetic studies. In this study, TCA and DCA were derivatized to their methyl esters by dimethyl sulfate under acidic conditions and analyzed by gas chromatography with electron capture detection. In developing a method for esterifying TCA and DCA, the conversion of TCA to DCA was observed in freshly drawn blood upon the addition of acid. After blood was drawn from the animals, the amount of TCA converted to DCA by the addition of acid decreased with time. This conversion could be prevented by freezing blood samples overnight prior to the addition of acid. Further experiments demonstrated that this activity could be restored by the addition of dithionite to inactive blood samples or the addition of dithionite to methemoglobin prior to the addition of acid. The results reported here show that reduced hemoglobin may be involved in the acid-catalyzed conversion of TCA to DCA.
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页码:236 / 241
页数:6
相关论文
共 18 条
[11]   SIMULTANEOUS DETERMINATION OF TRICHLOROACETIC ACID AND TRICHLOROETHANOL BY GAS-CHROMATOGRAPHY [J].
HUMBERT, BE ;
FERNANDEZ, JG .
INTERNATIONAL ARCHIVES OF OCCUPATIONAL AND ENVIRONMENTAL HEALTH, 1976, 36 (04) :235-241
[12]  
IKEDA M, 1972, BRIT J IND MED, V29, P328
[13]   ESTERIFICATION OF TRIFLUOROACETIC-ACID WITH PHENYLDIAZOMETHANE FOR QUANTITATIVE GAS-CHROMATOGRAPHIC ANALYSIS - METHODS INVOLVING SEPARATION FROM BIOLOGICAL-MATERIALS [J].
KARASHIMA, D ;
SHIGEMATSU, A ;
FURUKAWA, T ;
NAGAYOSHI, T ;
MATSUMOTO, I .
JOURNAL OF CHROMATOGRAPHY, 1977, 130 (JAN11) :77-86
[14]  
KARASHIMA D, 1977, BIOMED ENVIRON MASS, V3, P41
[15]   GAS-CHROMATOGRAPHIC METHOD FOR THE HALOTHANE METABOLITES, TRIFLUOROACETIC-ACID AND BROMIDE, IN BIOLOGICAL-FLUIDS [J].
MAIORINO, RM ;
GANDOLFI, AJ ;
SIPES, IG .
JOURNAL OF ANALYTICAL TOXICOLOGY, 1980, 4 (05) :250-254
[16]   THE DEGRADATION OF HEME BY CARBON-TETRACHLORIDE - METABOLIC-ACTIVATION REQUIRES A FREE AXIAL COORDINATION SITE ON THE HEME IRON AND ELECTRON DONATION [J].
MANNO, M ;
KING, LJ ;
DEMATTEIS, F .
XENOBIOTICA, 1989, 19 (09) :1023-1035
[17]   ELECTROCATALYTIC DEHALOGENATION OF ALPHA-HALOACETIC ACIDS BY VITAMIN-B12 [J].
RUSLING, JF ;
MIAW, CL ;
COUTURE, EC .
INORGANIC CHEMISTRY, 1990, 29 (10) :2025-2027
[18]  
TANAKA S, 1968, BR J IND MED, V35, P214