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PMID: 11005674 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Comparative toxicity of trivalent and pentavalent inorganic and methylated arsenicals in rat and human cells.

Archives of toxicology ·Vol. 74 ·No. 6 ·2000-08-00 ·Pages 289-99

Styblo M, Del Razo LM, Vega L, Germolec DR, LeCluyse EL, Hamilton GA, Reed W, Wang C, Cullen WR, Thomas DJ

Abstract

Biomethylation is considered a major detoxification pathway for inorganic arsenicals (iAs). According to the postulated metabolic scheme, the methylation of iAs yields methylated metabolites in which arsenic is present in both pentavalent and trivalent forms. Pentavalent mono- and dimethylated arsenicals are less acutely toxic than iAs. However, little is known about the toxicity of trivalent methylated species. In the work reported here the toxicities of iAs and trivalent and pentavalent methylated arsenicals were examined in cultured human cells derived from tissues that are considered a major site for iAs methylation (liver) or targets for carcinogenic effects associated with exposure to iAs (skin, urinary bladder, and lung). To characterize the role of methylation in the protection against toxicity of arsenicals, the capacities of cells to produce methylated metabolites were also examined. In addition to human cells, primary rat hepatocytes were used as methylating controls. Among the arsenicals examined, trivalent monomethylated species were the most cytotoxic in all cell types. Trivalent dimethylated arsenicals were at least as cytotoxic as trivalent iAs (arsenite) for most cell types. Pentavalent arsenicals were significantly less cytotoxic than their trivalent analogs. Among the cell types examined, primary rat hepatocytes exhibited the greatest methylation capacity for iAs followed by primary human hepatocytes, epidermal keratinocytes, and bronchial epithelial cells. Cells derived from human bladder did not methylate iAs. There was no apparent correlation between susceptibility of cells to arsenic toxicity and their capacity to methylate iAs. These results suggest that (1) trivalent methylated arsenicals, intermediary products of arsenic methylation, may significantly contribute to the adverse effects associated with exposure to iAs, and (2) high methylation capacity does not protect cells from the acute toxicity of trivalent arsenicals.

MeSH Terms
Aged Animals Arsenates/metabolism,toxicity Arsenites/metabolism,toxicity Cell Survival/drug effects Cells, Cultured Dose-Response Relationship, Drug Environmental Pollutants/metabolism,toxicity Herbicides/metabolism,toxicity Humans Infant, Newborn Liver/drug effects,metabolism,pathology Male Methylation Rats Rats, Inbred F344 Species Specificity Spectrophotometry, Atomic Toxicity Tests, Acute
Chemicals
Arsenates Arsenites Environmental Pollutants Herbicides arsenic acid
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Styblo M
Department of Pediatrics, School of Medicine, University of North Carolina at Chapel Hill, 27599, USA. styblo@med.unc.edu
Del Razo L M
Vega L
Germolec D R
LeCluyse E L
Hamilton G A
Reed W
Wang C
Cullen W R
Thomas D J
Article Info
Journal
Archives of toxicology
Abbr.
Arch Toxicol
ISSN
0340-5761
Published
2000-08-00
Pages
289-99
Language
English
Region
Germany
NLM ID
0417615
Subset
IM
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