Issues in the pharmacokinetics of trichloroethylene and its metabolites

被引:21
作者
Chiu, Weihsueh A.
Okino, Miles S.
Lipscomb, John C.
Evans, Marina V.
机构
[1] US EPA, Natl Ctr Environm Assessment, Washington, DC 20460 USA
[2] US EPA, Natl Exposure Res Lab, Las Vegas, NV 89193 USA
[3] US EPA, Natl Ctr Environm Assessment, Cincinnati, OH 45268 USA
[4] US EPA, Natl Hlth & Environm Effects Res Lab, Res Triangle Pk, NC 27711 USA
关键词
metabolism; pharmacokinetics; physiologically based pharmacokinetic model; risk assessment; trichloroethylene;
D O I
10.1289/ehp.8691
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Much progress has been made in understanding the complex pharmacoldnetics of trichlornethylene (TCE). Qualitatively, it is dear that TCE is metabolized to multiple metabolites either locally or into systemic circulation. Many of these metabolites are thought to have toxicologic importance. In addition, efforts to develop physiologically based pharmacokinetic (PBPK) models have led to a better quantitative assessment of the dosimetry of TCE and several of its metabolites. As part of a mini-monograph on key issues in the health risk assessment of TCE, this article is a review of a number of the current scientific issues in TCE pharmacokinetics and recent PBPK modeling efforts with a focus on literature published since 2000. Particular attention is paid to factors affecting PBPK modeling for application to risk assessment. Recent TCE PBPK modeling efforts, coupled with methodologic advances in characterizing uncertainty and variability, suggest that rigorous application of PBPK modeling to TCE risk assessment appears feasible at least for TCE and its major oxidative metabolites trichloroacetic acid and trichloroethanol. However, a number of basic structural hypotheses such as enterohepatic recirculation, plasma binding, and flow- or diffusion-limited treatment of tissue distribution require additional evaluation and analysis. Moreover, there are a number of metabolites of potential toxicologic interest, such as chloral, dichloroacetic acid, and those derived from glutathione conjugation, for which reliable pharmacokinetic data is sparse because of analytical difficulties or low concentrations in systemic circulation. It will be a challenge to develop reliable dosimetry for such cases.
引用
收藏
页码:1450 / 1456
页数:7
相关论文
共 83 条
[1]   A physiologically based pharmacokinetic model for trichloroethylene and its metabolites, chloral hydrate, trichloroacetate, dichloroacetate, trichloroethanol, and trichloroethanol glucuronide in B6C3F1 mice [J].
Abbas, R ;
Fisher, JW .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1997, 147 (01) :15-30
[2]   Physiologically based pharmacokinetic models for the transport of trichloroethylene in adipose tissue [J].
Albanese, RA ;
Banks, HT ;
Evans, MV ;
Potter, LK .
BULLETIN OF MATHEMATICAL BIOLOGY, 2002, 64 (01) :97-131
[3]   PHARMACOKINETIC MODELING OF TRICHLOROETHYLENE AND TRICHLOROACETIC-ACID IN HUMANS [J].
ALLEN, BC ;
FISHER, JW .
RISK ANALYSIS, 1993, 13 (01) :71-86
[4]   BIOSYNTHESIS AND BIOTRANSFORMATION OF GLUTATHIONE S-CONJUGATES TO TOXIC METABOLITES [J].
ANDERS, MW ;
LASH, L ;
DEKANT, W ;
ELFARRA, AA ;
DOHN, DR .
CRC CRITICAL REVIEWS IN TOXICOLOGY, 1988, 18 (04) :311-341
[5]   A multicompartment geometric model of the liver in relation to regional induction of cytochrome P450s [J].
Andersen, ME ;
Eklund, CR ;
Mills, JJ ;
Barton, HA ;
Birnbaum, LS .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1997, 144 (01) :135-144
[6]  
[Anonymous], EPA600P01002A
[7]   Evaluating noncancer effects of trichloroethylene: Dosimetry, mode of action, and risk assessment [J].
Barton, HA ;
Clewell, HJ .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2000, 108 :323-334
[8]   Dichloroacetate (DCA) dosimetry: interpreting DCA-induced liver cancer dose response and the potential for DCA to contribute to trichloroethylene-induced liver cancer [J].
Barton, HA ;
Bull, R ;
Schultz, I ;
Andersen, ME .
TOXICOLOGY LETTERS, 1999, 106 (01) :9-21
[9]   Biotransformation of trichloroethene: Dose dependent excretion of 2,2,2-trichloro-metabolites and mercapturic acids in rats and humans after inhalation [J].
Bernauer, U ;
Birner, G ;
Dekant, W ;
Henschler, D .
ARCHIVES OF TOXICOLOGY, 1996, 70 (06) :338-346
[10]   Statistical issues in toxicokinetic modeling: A Bayesian perspective [J].
Bernillon, P ;
Bois, FY .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2000, 108 :883-893