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XIX Internationa! Congress on Occupational Health
XIX Congres 1 International de Medecine du Travail
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TOXICOLOGY AND APPLIED PHARMACOLOGY 49, 505-315 (1979)
Formation and Inactivation of a Chemically Reactive Metabolite of Vinyl Chloride1
D. Pessayre,2 J. C. Wandscheer, V. Descatoire, J. Y. Artigou, AND J. P. BENHAMOU
Vniti de Recherches de Physiopathoiogie Hipatique (INSERM), Hopital Beaujon, 92118 Clichy, France
Received December 18,1978; accepted March 17,1979
Formation and Inactivation of a Chemically Reactive Metabolite of Vinyl Chloride. Pessayre, D., Wandscheer, J. C, Descatoire, V., Artigou, J. V., and Benhamou, J. P. (1979). Toxicol. Appl. Pharmacol. 49. 505-515. The mechanisms responsible for, and pro tecting against, metabolic activation of vinyl chloride were investigated in the rat. When [uC]vinyl chloride was incubated with hepatic microsomes, a "C-labeled material became irreversibly bound to microsomal proteins; binding required NADPH, was decreased by CO, SKF 525-A, or glutathione, and was increased by 1,1,1 -trich!oropropene-2,3-o.\ide CTCPO). Inhalation of a 5% vinyl chloride atmosphere decreased hepatic cytochrome P-450 and glutathione. Pretreatment of the animals with DDT or phenobarbital (1) in creased in vitro irreversible binding to microsomal proteins measured in the presence, but not in the absence, of TCP(5 and increased the in vivo loss of cytochrome P-450 during inhala tion of vinyl chloride, but (2) decreased the in vitro irreversible binding to 10,000^ super natant proteins and the In vivo loss of glutathione during inhalation of vinyl chloride. These results are consistent with the views that (1) vinyl chloride is activated by cytochrome P-450 into its chemically reactive epoxide, (2) the epoxide may be inactivated by epoxide hydrase or by binding to glutathione, (3) pretreatment with DDT or phenobarbital in creases both thfr formation rate of the epoxide and its inactivation rate by epoxide hydrase, and (4) cytochrome P-450 destruction is related to the formation rate of the epoxide, whereas glutathione depletion seems related to only that fraction of the formed epoxide which has escaped inactivation by microsomal epoxide hydrase and has diffused in the cytosol.
Vinyl chloride (chloroethylene) is massively observed (Berk et al., 1976). Hepatic
used in the manufacture of plastics: Poly angiosarcomas and liver lesions have been
merization of this monomer leads to polyvinyl reproduced in experimental animals chroni
chloride, the most widely used synthetic cally exposed to vinyl chloride (Torkelson
plastic (Berk el at., 1976). In workers et al., 1961; Lester et al., 1963; Viola et at.,
exposed to vinyl chloride, angiosarcomas of 1971; Maltoni and Lefemine, 1975; Prodan
the liver and/or hepatic fibrosis have been et al, 1975).
Several carcinogenic and/or hepatotoxic
1 This work was supported by Grant 021 R 07 from compounds are transformed by the hepatic
Faculte de Medecine Xavier-Bichat (Univcnild de Paris VII), and ATP 58-78-90 from Institut National dc la Sante et de la Recherche Medicale (INSERM).
1 Recipient of a fellowship front the Fonds d Etudes du Corps Mddical Hospitaller.
microsomal mixed-function oxidase system (MFOS) into chemically reactive metabolites that (1) covalently bind in vitro to micro somal proteins, (2) covalently bind in vivo
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OOSI-008X/79,W050J-tlS02.00/0
Copyright C 1979 by Academic Press; Inc. AH fichu Of reproduction in any form reserved.
Printed in Great Britain
Letters cnnHnucd
Book Review
A situation in which such a family with a latent, inherited disorder has suffered unexpected toxicity from an exposure, and in which the relationship of the af fected individuals has initially escaped notice, remains to be reported. This family demonstrates the potential for such a circumstance.
Wynder7 has used the term "metabolic epidemiology" in propos ing integrated, interdisciplinary studies to define the extremes of risk for disease! The identification of sub populations within the community at elevated risk for exposure related illness is one aspect of this approach.
Tee t. Guidotti. M.D. National Institute of Arthritis.
Metabolism and Digestive Disease* |oel M. Lamon
National Cancer Institute Bcthesda, MD 20014
References
1. Clayton DC: A model for association in bivariate life tables and its application in epidemiological studies of family tendency in chronic disease incidence. ffiometrifca 65:141. 1978.
2. Calabrese E|: Will elevated levels df lead ex posure precipitate clinical symptoms of por phyria in individuals with the latent condition! Med Hypotheses 4:282. 1978.
3. Magnussen CR, levine |B. Doherty |M, et al: A red cell enzyme method for the diagnosis of acute Intermittent porphyria. Blood 44:857, 1974.
4. Faglus | and Cr'dnqvist B: Function of peripheral nerves and signs of polyneuropathy in solvent-exposed workers at a Swedish steelworks. Actj Neurol Scmd 57:305, 1978.
5. Tsehudy DP. Valsamis M, and Magnussen CR: Acute Intermittent porphyria: Clinical and selected research aspects. Ann Intern Med 83.851, 1975.
6. Anderson DE: Familial susceptibility. In Per sons at High Risk of Cancer. |. F. Fraumeni, |f. lEd). New York: Academic Press, 1975. pp 3954.
7. Wynder EL: Metabolic epidemiology. Lancet 1:260, 1978.
Log Normal Distribution of the In
cubation Period of Liver * Angio
sarcoma in Vinyl Chloride Poly
merization Workers
^
To-the-fditor. -- In the Jube 1978 issue of the journal of Occupational Mvdicino (9:427-429), NIO$H pre sented data on 64 cases of livfr angio sarcoma among vinyl chloride polymerization workers. '
Fig 1 is a log-probit representation of the cumulative percent of the in
incubation period (log)
Fig 1. -- Log normal distribution of In cubation period of 63 liver angiosarcoma cases in vinyl chloride exposed workers. Estimated median (19.3 years) and dispersion factor (1.40) closely resemble those (or occupational bladder tumors in the dyestuff Industry.
cubation periods of the vinyl chloride induced liver angiosarcomas. The in cubation period is defined as the num ber of years from first exposure to diagnosis. A straight line was fitted to the data. The median of the incubation period for occupational angiosarcoma is 19.3 years with a dispersion factor of 1.40. The dispersion factor is de fined as the anti-logarithm of the logarithmic standard deviation.
Thus, Sartwell's model1 of the distribution of incubation periods of infectious diseases applies equally to the distribution of incubation periods in occupational liver angiosarcoma. Armenian and Lilienfeld2 demon strated earlier that this was also true for the incubation periods of other neoplasms in humans. The median of the incubation period and the disper sion factor for vinyl chloride induced angiosarcoma of the liver strikingly resemble those calculated by these authors for occupational bladder tumors in the dyestuff industry.
Joan P. Tassignon. M D Head. Department of Occupational
Health and Toxicology Sovay & Cie, 5A 33 Rue du Prince Albert B-1050 Brussels, Belgium
References 1 Sartwell PE. The distribution of incubation
period- of infectious disease. Am / Hyg 51.310318. 1950
2 Armenian IIK and Lilienfeld AM: The distribution of incubation periods of neoplastic diseases. Am / tpidcmial 99.92-110, 1074,
Patricia Yarvote, M.D. .
Department Editor
Chloroform, Carbon Tetrachloride, and Other Halomelhanes: An Environmental Assessment. Prepared by the Environ mental Studies Board, Commission on Natural Resources of the National Research Council, 294 pp>; $8.95 1978. Report avail able in paperback from the Printing and Publishing Office, National Academy of Science, 2101 Constitution Avenue, Washington, DC 20418.
The study assesses the scientific and technical information available on a class of potential multimedia environ mental pollutants, the nonffubrinated halomethanes. This class of com pounds includes the chlorinated, brominated and iodinated methanes. Chloroform and carbon tetrachloride have been considered in greatest de tail because there is more extensive data available on these, and they have been demonstrated to be carcinogenic in high doses in test animals.
A quantitative assessment of human and ecosystem exposures and effects is explored in depth as well as sources, concentrations and global mass bal ances. Various control options are out lined such as changes in water dis infection practices which would reduce locally elevated concentrations of chloroform and other halomethanes at waste-water treatment plants. The economic analysis of benefits and costs associated with control practices is reviewed.
The participants conclude that fur ther studies are needed to evaluate carcinogenesis, mutagenesis and teratogenesis dose-response effects from low-level environmental ex posure to halomethanes. Better pri mary and secondary calibration Stan dards are essential to assure valid and reproducible lab results. More in formation is also needed on the world wide distribution of halomethanes in the environment, including the oceans and glaciers.
Although this Is a highly technical document of limited interest, it is an important source of information for those involved with this class of com pounds. -- Patricia M. Yarvote, M.D.
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SL 102154
[. Cancer Re*. Clin. Oncol. 94, 139-147 (1979)
Cancer Research Clinical Oncology
Springer-Verlag 1979
Vinyl Chloride and Trichloroethylene: Comparison of Alkylating Effects of Metabolites and Induction of Preneoplastic Enzyme Deficiencies in Rat Liver
R.J. Laib'.G. Stockle1, H.M. Bolt ',and W. Kunz2
1 InslUut fur Toxikologie der Universitat Tubingen, Wilhdmstr. 74, D-7400 Tubingen, Federal Re public of Germany
1 Deutsche* Krebsforschungszentrum, D-6900 Heidelberg, Federal Republic ofGermany
Summary. [1,2-,4C] Vinyl chloride and [1,2-UC] trichloroethylene were in cubated with rat liver microsomes, NADPH and RNA (from yeast). Whereas trichloroethylene metabolites Were irreversibly bound to proteins in micro somal incubations to a higher extent than vinyl chloride metabolites, irreversible binding to RNA was lower for trichloroethylene metabolites. Hydrolysis of the RNA which was reisolated from microsomal incubations with ,4C-vinyl chloride or 14C-trichloroethyIene and separation of the nucleo sides showed different alkylation products arising from vinyl chloride and from trichloroethylene, characteristic for vinyl chloride being formation of 1 ,N6-ethenoadenosine and 3,N4-ethenocytidine. The different reactivities of metabolites of vinyl chloride and of trichloroethylene prompted a comparison of the oncogenic effects of both compounds against the rat liver cell. Newborn rats were exposed for 10 weeks to 2000 ppm vinyl chloride or trichloro ethylene (8 h/day; 5 days/week). After this period livers of the animals were stained for nucleoside-5-triphoSphatase. Whereas the vinyl chloride exposed rats showed focal hepatocellular deficiencies in this enzyme, which are sup posed to represent an early sign of malignancy, no such changes were induced by trichloroethylene exposure. The data therefore suggest differences between the hepatocarcinogenic activity of vinyl chloride and possible effects of tri chloroethylene on the liver.
Key words: Vinyl chloride - Trichloroethylene - Rat liver - Liver carcinogene sis-Alkylation
Possible carcinogenicity of trichloroethylene is subject of recent discussion. The close structural relation to the proven hepatocarcinogen vinyl chloride prompted the argument that trichloroethylene, via similar routes of metabolic activation as vinyl chloride, might be canccrogenic (Van Duuren, 1975). Mutagenicity of tri chloroethylene metabolites in bacterial test systems (Greim et al., 1975) and cova-
OJIprmt requests to: Hermann M. Bolt (address see above)
0171-5216/79/0094/0139/S 1.80