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Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate and Trichloroethanol
BACKGROUND: Trichloroethylene (TCE) is a suspected human carcinogen and a common ground-water contaminant. Chloral hydrate (CH) is the major metabolite of TCE formed in the liver by cytochrome P450 2E1. CH is metabolized to the hepatocarcinogen trichloroacetate (TCA) by aldehyde dehydrogenase (ALDH)...
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Formato: | Texto |
Lenguaje: | English |
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National Institute of Environmental Health Sciences
2006
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1551986/ https://www.ncbi.nlm.nih.gov/pubmed/16882532 http://dx.doi.org/10.1289/ehp.9047 |
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author | Bronley-DeLancey, Apryl McMillan, David C. McMillan, JoEllyn M. Jollow, David J. Mohr, Lawrence C. Hoel, David G. |
author_facet | Bronley-DeLancey, Apryl McMillan, David C. McMillan, JoEllyn M. Jollow, David J. Mohr, Lawrence C. Hoel, David G. |
author_sort | Bronley-DeLancey, Apryl |
collection | PubMed |
description | BACKGROUND: Trichloroethylene (TCE) is a suspected human carcinogen and a common ground-water contaminant. Chloral hydrate (CH) is the major metabolite of TCE formed in the liver by cytochrome P450 2E1. CH is metabolized to the hepatocarcinogen trichloroacetate (TCA) by aldehyde dehydrogenase (ALDH) and to the noncarcinogenic metabolite trichloroethanol (TCOH) by alcohol dehydrogenase (ADH). ALDH and ADH are polymorphic in humans, and these polymorphisms are known to affect the elimination of ethanol. It is therefore possible that polymorphisms in CH metabolism will yield subpopulations with greater than expected TCA formation with associated enhanced risk of liver tumors after TCE exposure. METHODS: The present studies were undertaken to determine the feasibility of using commercially available, cryogenically preserved human hepatocytes to determine simultaneously the kinetics of CH metabolism and ALDH/ADH genotype. Thirteen human hepatocyte samples were examined. Linear reciprocal plots were obtained for 11 ADH and 12 ALDH determinations. RESULTS: There was large interindividual variation in the V(max) values for both TCOH and TCA formation. Within this limited sample size, no correlation with ADH/ALDH genotype was apparent. Despite the large variation in V(max) values among individuals, disposition of CH into the two competing pathways was relatively constant. CONCLUSIONS: These data support the use of cryopreserved human hepatocytes as an experimental system to generate metabolic and genomic information for incorporation into TCE cancer risk assessment models. The data are discussed with regard to cellular factors, other than genotype, that may contribute to the observed variability in metabolism of CH in human liver. |
format | Text |
id | pubmed-1551986 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2006 |
publisher | National Institute of Environmental Health Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-15519862006-08-29 Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate and Trichloroethanol Bronley-DeLancey, Apryl McMillan, David C. McMillan, JoEllyn M. Jollow, David J. Mohr, Lawrence C. Hoel, David G. Environ Health Perspect Research BACKGROUND: Trichloroethylene (TCE) is a suspected human carcinogen and a common ground-water contaminant. Chloral hydrate (CH) is the major metabolite of TCE formed in the liver by cytochrome P450 2E1. CH is metabolized to the hepatocarcinogen trichloroacetate (TCA) by aldehyde dehydrogenase (ALDH) and to the noncarcinogenic metabolite trichloroethanol (TCOH) by alcohol dehydrogenase (ADH). ALDH and ADH are polymorphic in humans, and these polymorphisms are known to affect the elimination of ethanol. It is therefore possible that polymorphisms in CH metabolism will yield subpopulations with greater than expected TCA formation with associated enhanced risk of liver tumors after TCE exposure. METHODS: The present studies were undertaken to determine the feasibility of using commercially available, cryogenically preserved human hepatocytes to determine simultaneously the kinetics of CH metabolism and ALDH/ADH genotype. Thirteen human hepatocyte samples were examined. Linear reciprocal plots were obtained for 11 ADH and 12 ALDH determinations. RESULTS: There was large interindividual variation in the V(max) values for both TCOH and TCA formation. Within this limited sample size, no correlation with ADH/ALDH genotype was apparent. Despite the large variation in V(max) values among individuals, disposition of CH into the two competing pathways was relatively constant. CONCLUSIONS: These data support the use of cryopreserved human hepatocytes as an experimental system to generate metabolic and genomic information for incorporation into TCE cancer risk assessment models. The data are discussed with regard to cellular factors, other than genotype, that may contribute to the observed variability in metabolism of CH in human liver. National Institute of Environmental Health Sciences 2006-08 2006-05-30 /pmc/articles/PMC1551986/ /pubmed/16882532 http://dx.doi.org/10.1289/ehp.9047 Text en http://creativecommons.org/publicdomain/mark/1.0/ Publication of EHP lies in the public domain and is therefore without copyright. All text from EHP may be reprinted freely. Use of materials published in EHP should be acknowledged (for example, ?Reproduced with permission from Environmental Health Perspectives?); pertinent reference information should be provided for the article from which the material was reproduced. Articles from EHP, especially the News section, may contain photographs or illustrations copyrighted by other commercial organizations or individuals that may not be used without obtaining prior approval from the holder of the copyright. |
spellingShingle | Research Bronley-DeLancey, Apryl McMillan, David C. McMillan, JoEllyn M. Jollow, David J. Mohr, Lawrence C. Hoel, David G. Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate and Trichloroethanol |
title | Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk
Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate
and Trichloroethanol |
title_full | Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk
Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate
and Trichloroethanol |
title_fullStr | Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk
Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate
and Trichloroethanol |
title_full_unstemmed | Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk
Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate
and Trichloroethanol |
title_short | Application of Cryopreserved Human Hepatocytes in Trichloroethylene Risk
Assessment: Relative Disposition of Chloral Hydrate to Trichloroacetate
and Trichloroethanol |
title_sort | application of cryopreserved human hepatocytes in trichloroethylene risk
assessment: relative disposition of chloral hydrate to trichloroacetate
and trichloroethanol |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1551986/ https://www.ncbi.nlm.nih.gov/pubmed/16882532 http://dx.doi.org/10.1289/ehp.9047 |
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