10
Views
55
CrossRef citations to date
0
Altmetric
Original Articles

Experimental human exposures to tetrachloroethylene vapor and elimination in breath after inhalation

, &
Pages 143-150 | Published online: 04 Jun 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Junshan Qiu, Yeh-Chung Chien, James V. Bruckner & Jeffery W. Fisher. (2009) Bayesian Analysis of a Physiologically Based Pharmacokinetic Model for Perchloroethylene in Humans. Journal of Toxicology and Environmental Health, Part A 73:1, pages 74-91.
Read now
Harvey J. Clewell, P. Robinan Gentry, Janet E. Kester & Melvin E. Andersen. (2005) Evaluation of Physiologically Based Pharmacokinetic Models in Risk Assessment: An Example with Perchloroethylene. Critical Reviews in Toxicology 35:5, pages 413-433.
Read now
Andrea Trevisan, Isabella Maccà, Francesca Rui, Mariella Carrieri, Giovanni Battista Bartolucci, Maurizio Manno. (2000) Kidney and liver biomarkers in female dry-cleaning workers exposed to perchloroethylene. Biomarkers 5:6, pages 399-409.
Read now
Shinji Kumagai, Ichiro Matsunaga. (2000) A LUNG MODEL DESCRIBING UPTAKE OF ORGANIC SOLVENTS AND ROLES OF MUCOSAL BLOOD FLOW AND METABOLISM IN THE BRONCHIOLES. Inhalation Toxicology 12:6, pages 491-510.
Read now
Andrew Gelman, Frederic Bois & Jiming Jiang. (1996) Physiological Pharmacokinetic Analysis Using Population Modeling and Informative Prior Distributions. Journal of the American Statistical Association 91:436, pages 1400-1412.
Read now
GehadA.Abo El Ata, Mohsen Awad Allah, Maha Rakha, Fatma Sherif, Moustafa Gaber & Magda Yassin. (1996) Environmental and health monitoring study in dry cleaning departments. International Journal of Environmental Health Research 6:3, pages 221-231.
Read now
Robert Garnier, Jacques Bédouin, Gilbert Pépin & Yvan Gaillard. (1996) Coin-Operated Dry Cleaning Machines May Be Responsible for Acute Tetrachloroethylene Poisoning: Report of 26 Cases Including One Death. Journal of Toxicology: Clinical Toxicology 34:2, pages 191-197.
Read now
L.J. Skender, V. Karačić & D. Prpić-Majić. (1991) A Comparative Study of Human Levels of Trichloroethylene and Tetrachloroethylene after Occupational Exposure. Archives of Environmental Health: An International Journal 46:3, pages 174-178.
Read now
Marcello Imbriani, Sergio Ghittori, Giulio Pezzagno & Emanuele Capodaglio. (1988) Urinary Excretion of Tetrachloroethylene (Perchloroethylene) in Experimental and Occupational Exposure. Archives of Environmental Health: An International Journal 43:4, pages 292-298.
Read now
Shinichi Kobayashi, DuncanE. Hutcheon & John Regan. (1982) Cardiopulmonary toxicity of tetrachloroethylene. Journal of Toxicology and Environmental Health 10:1, pages 23-30.
Read now

Articles from other publishers (45)

Sa Liu, Eileen Ziyao Yan, Mary Ellen Turyk, Sankalp Srisai Katta, Arteen Fazl Rasti, Jung Hyun Lee, Marwan Alajlouni, Thomas Edward Wallace, Wade Catt & Elizabeth Ann Aikins. (2022) A pilot study characterizing tetrachloroethylene exposure with exhaled breath in an impacted community. Environmental Pollution 297, pages 118756.
Crossref
. 2019. Handbook of Solvents. Handbook of Solvents 1125 1172 .
. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 1 32 .
. 2014. Handbook of Solvents. Handbook of Solvents 263 330 .
. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 272 297 .
. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 1 30 .
. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 1 2 .
H. M. Bolt. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 140 151 .
H. M. Bolt. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 1 16 .
Weihsueh A. Chiu & Gary L. Ginsberg. (2011) Development and evaluation of a harmonized physiologically based pharmacokinetic (PBPK) model for perchloroethylene toxicokinetics in mice, rats, and humans. Toxicology and Applied Pharmacology 253:3, pages 203-234.
Crossref
M. Valcke & K. Krishnan. (2011) Evaluation of the impact of the exposure route on the human kinetic adjustment factor. Regulatory Toxicology and Pharmacology 59:2, pages 258-269.
Crossref
Marek Jakubowski & Sławomir Czerczak. (2009) Calculating the retention of volatile organic compounds in the lung on the basis of their physicochemical properties. Environmental Toxicology and Pharmacology 28:2, pages 311-315.
Crossref
Tammie R. Covington, P. Robinan Gentry, Cynthia B. Van Landingham, Melvin E. Andersen, Janet E. Kester & Harvey J. Clewell. (2007) The use of Markov chain Monte Carlo uncertainty analysis to support a Public Health Goal for perchloroethylene. Regulatory Toxicology and Pharmacology 47:1, pages 1-18.
Crossref
Ivo Iavicoli, Giovanni Carelli & Alessandro Marinaccio. (2006) Dose-Response Relationships in Human Experimental Exposure to Solvents. Dose-Response 4:2, pages dose-response.0.
Crossref
Luigi Perbellini, Nello Veronese & Andrea Princivalle. (2002) Mercapturic acids in the biological monitoring of occupational exposure to chemicals. Journal of Chromatography B 781:1-2, pages 269-290.
Crossref
George D Loizou. (2001) The application of physiologically based pharmacokinetic modelling in the analysis of occupational exposure to perchloroethylene. Toxicology Letters 124:1-3, pages 59-69.
Crossref
Anton J.W. Verplanke, Micha H.L. Leummens & Robert F.M. Herber. (1999) Occupational Exposure to Tetrachloroethene and Its Effects on the Kidneys. Journal of Occupational & Environmental Medicine 41:1, pages 11-16.
Crossref
A. Kappas, V. J. Cogliano, K. Watanabe & G. A. Zapponi. 1999. Perspectives on Biologically Based Cancer Risk Assessment. Perspectives on Biologically Based Cancer Risk Assessment 49 80 .
Maria de Fatima M. Pedrozo & Maria Elisa P. B. Siqueira. (1996) Determinação espectrofotométrica e cromatográfica em fase gasosa de ácido tricloracético em urina. Revista de Saúde Pública 30:3, pages 261-266.
Crossref
Janusz Z. Byczkowski. (2016) A Linked Pharmacokinetic Model and Cancer Risk Assessment for Breast-Fed Infants. Drug Information Journal 30:2, pages 401-412.
Crossref
Janusz Z. Byczkowski & Jeffrey W. Fisher. (1995) A computer program linking physiologically based pharmacokinetic model with cancer risk assessment for breast-fed infants. Computer Methods and Programs in Biomedicine 46:2, pages 155-163.
Crossref
Janusz Z. Byczkowski & Jeffrey W. Fisher. (2006) Lactational Transfer of Tetrachloroethylene in Rats. Risk Analysis 14:3, pages 339-349.
Crossref
J.F. Periago, C. Prado, I. Ibarra & J. Tortosa. (1993) Application of thermal desorption to the biological monitoring of organic compounds in exhaled breath. Journal of Chromatography A 657:1, pages 147-153.
Crossref
J.M. Gearhart, D.A. Mahle, R.J. Greene, C.S. Seckel, C.D. Flemming, J.W. Fisher & H.J. ClewellIIIIII. (1993) Variability of physiologically based pharmacokinetic (PBPK) model parameters and their effects on PBPK model predictions in a risk assessment for perchloroethylene (PCE). Toxicology Letters 68:1-2, pages 131-144.
Crossref
Hari V. Rao & David R. Brown. (2006) A Physiologically Based Pharmacokinetic Assessment of Tetrachloroethylene in Groundwater for a Bathing and Showering Determination. Risk Analysis 13:1, pages 37-49.
Crossref
J. Francisco Periago, Aurelio Luna, Antonio Morente & Alfonso Zambudio. (2006) Design and evaluation of an exhaled breath sampler for biological monitoring of organic solvents. Journal of Applied Toxicology 12:2, pages 91-96.
Crossref
J. G. Filser. (1992) The closed chamber technique — uptake, endogenous production, excretion, steady-state kinetics and rates of metabolism of gases and vapors. Archives of Toxicology 66:1, pages 1-10.
Crossref
D. Krewski, J. R. Withey, L. F. Ku & C. C. Travis. 1992. New Trends in Pharmacokinetics. New Trends in Pharmacokinetics 355 390 .
Dale Hattis, Paul White, Laura Marmorstein & Paul Koch. (2006) Uncertainties in Pharmacokinetic Modeling for Perchloroethylene. I. Comparison of Model Structure, Parameters, and Predictions for Low‐Dose Metabolism Rates for Models Derived by Different Authors. Risk Analysis 10:3, pages 449-458.
Crossref
Kenneth T. Bogen & Thomas E. McKone. 1989. Risk Assessment in Setting National Priorities. Risk Assessment in Setting National Priorities 593 608 .
Kenneth T. Bogen & Thomas E. McKone. (2006) Linking Indoor Air and Pharmacokinetic Models to Assess Tetrachloroethylene Risk. Risk Analysis 8:4, pages 509-520.
Crossref
J. Odum, T. Green, J.R. Foster & P.M. Hext. (1988) The role of trichloroacetic acid and peroxisome proliferation in the differences in carcinogenicity of perchloroethylene in the mouse and rat. Toxicology and Applied Pharmacology 92:1, pages 103-112.
Crossref
Curtis C. Travis. 1988. Carcinogen Risk Assessment. Carcinogen Risk Assessment 87 102 .
George W. Ware. 1988. Reviews of Environmental Contamination and Toxicology. Reviews of Environmental Contamination and Toxicology 175 188 .
Curtis C. Travis. (1987) Interspecies extrapolations in risk analysis. Toxicology 47:1-2, pages 3-13.
Crossref
J J Opdam & J F Smolders. (1986) Alveolar sampling and fast kinetics of tetrachloroethene in man. I. Alveolar sampling.. Occupational and Environmental Medicine 43:12, pages 814-824.
Crossref
D. Reichert. (1983) Biological actions and interactions of tetrachloroethylene. Mutation Research/Reviews in Genetic Toxicology 123:3, pages 411-429.
Crossref
Tatsuhiro Ohtsuki, Kunihiko Sato, Akio Koizumi, Miho Kumai & Masayuki Ikeda. (1983) Limited capacity of humans to metabolize tetrachloroethylene. International Archives of Occupational and Environmental Health 51:4, pages 381-390.
Crossref
S.W. Frantz & P.G. Watanabe. (1983) Tetrachloroethylene: Balance and tissue distribution in male Sprague-Dawley rats by drinking-water administration. Toxicology and Applied Pharmacology 69:1, pages 66-72.
Crossref
R. Lauwerys, J. Herbrand, J. P. Buchet, A. Bernard & J. Gaussin. (1983) Health surveillance of workers exposed to tetrachloroethylene in dry-cleaning shops. International Archives of Occupational and Environmental Health 52:1, pages 69-77.
Crossref
A.M. Schumann, J.F. Quast & P.G. Watanabe. (1980) The pharmacokinetics and macromolecular interactions of perchloroethylene in mice and rats as related to oncogenicity. Toxicology and Applied Pharmacology 55:2, pages 207-219.
Crossref
M.M. Verberk & T.M.L. Scheffers. (1980) Tetrachloroethylene in exhaled air of residents near dry-cleaning shops. Environmental Research 21:2, pages 432-437.
Crossref
A. C. Monster, G. Boersma & H. Steenweg. (1979) Kinetics of tetrachloroethylene in volunteers; influence of exposure concentration and work load. International Archives of Occupational and Environmental Health 42:3-4, pages 303-309.
Crossref
J. R. Caperos, B. Humbert & P. O. Droz. (1979) Exposition au styr�neStyrene exposure. II. Percentage studies of absorption, excretion, and metabolism by human subjects. International Archives of Occupational and Environmental Health 42:3-4, pages 223-230.
Crossref
J. G. Fern�ndez & J. R. Caperos. (1977) Exposition au Styr�ne. I. Etude exp�rimentale de l'absorption et de l'excr�tion pulmonaires sur des sujets humainsStyrene exposure. An experimental study of pulmonary absorption and excretion. International Archives of Occupational and Environmental Health 40:1, pages 1-12.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.