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Mode of action of dieldrin-induced liver tumors: application to human risk assessment
James E Klaunig1, Samuel M Cohen2
1Department of Environmental and Occupational Health, Indiana University School of Public Health, Bloomington, IN, USA.
Abstract:
Dieldrin is an organochlorine insecticide that was widely used until 1970 when its use was banned because of its liver carcinogenicity in mice. Several long-term rodent bioassays have reported dieldrin to induce liver tumors in in several strains of mice, but not in rats. This article reviews the available information on dieldrin liver effects and performs an analysis of mode of action (MOA) and human relevance of these liver findings. Scientific evidence strongly supports a MOA based on CAR activation, leading to alterations in gene expression, which result in increased hepatocellular proliferation, clonal expansion leading to altered hepatic foci, and ultimately the formation of hepatocellular adenomas and carcinomas. Associative events include increased liver weight, centrilobular hypertrophy, increased expression of Cyp2b10 and its resulting increased enzymatic activity. Other associative events include alterations of intercellular gap junction communication and oxidative stress. Alternative MOAs are evaluated and shown not to be related to dieldrin administration. Weight of evidence shows that dieldrin is not DNA reactive, it is not mutagenic, and it is not genotoxic in general. Furthermore, activation of other pertinent nuclear receptors, including PXR, PPARα, AhR, and estrogen are not related to dieldrin-induced liver tumors nor is there liver cytotoxicity. In previous studies, rats, dogs, and non-human primates did not show increased cell proliferation or production of pre-neoplastic or neoplastic lesions following dieldrin treatment. Thus, the evidence strongly indicates that dieldrin-induced mouse liver tumors are due to CAR activation and are specific to the mouse, which are qualitatively not relevant to human hepatocarcinogenesis. Thus, there is no carcinogenic risk to humans. This conclusion is also supported by a lack of positive epidemiologic findings for evidence of liver carcinogenicity. Based on current understanding of the mode of action of dieldrin-induced liver tumors in mice, the appropriate conclusion is that dieldrin is a mouse specific liver carcinogen and it does not pose a cancer risk to humans.
Insights
Dieldrin causes liver tumors in mice through a mechanism not relevant to humans. This mouse-specific carcinogenicity means dieldrin poses no cancer risk to people.
Area of Science:
- Toxicology
- Carcinogenesis
- Molecular Biology
Background:
- Dieldrin, an organochlorine insecticide, was banned due to observed liver carcinogenicity in mice.
- Rodent studies indicate dieldrin induces liver tumors in mice but not rats.
Purpose of the Study:
- Review and analyze the mode of action (MOA) of dieldrin-induced liver effects.
- Assess the human relevance of these findings and determine carcinogenic risk.
Main Methods:
- Literature review of rodent bioassays and mechanistic studies.
- Analysis of dieldrin's MOA, focusing on CAR activation and related events.
- Evaluation of alternative MOAs, genotoxicity, and species-specific responses.
Main Results:
- Dieldrin-induced mouse liver tumors are strongly linked to Constitutive Androstane Receptor (CAR) activation.
- Key associative events include increased hepatocellular proliferation and Cyp2b10 expression.
- Dieldrin is not genotoxic, mutagenic, or DNA reactive; other nuclear receptors are not implicated.
Conclusions:
- Dieldrin's hepatocarcinogenesis in mice is mouse-specific, driven by CAR activation.
- Findings in rats, dogs, and primates show no increased cell proliferation or neoplastic lesions.
- Dieldrin poses no carcinogenic risk to humans due to species-specific MOA and lack of human epidemiological evidence.

