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Updated: May 26, 2026

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Published on: April 26, 2018
Genotoxicity of furan in Big Blue rats
L Patrice McDaniel1, Wei Ding, Vasily N Dobrovolsky
1National Center for Toxicological Research, Jefferson, AR 72079, USA.
Abstract:
Furan is a multispecies liver carcinogen whose cancer mode of action (MOA) is unclear. A major metabolite of furan is a direct acting mutagen; however, it is not known if genotoxicity is a key step in the tumors that result from exposure to furan. In order to address this question, transgenic Big Blue rats were treated by gavage five times a week for 8 weeks with two concentrations of furan used in cancer bioassays (2 and 8mg/kg), and with two higher concentrations (16 and 30mg/kg). Peripheral blood samples taken 24h after the 5th dose (1 week of dosing) were used to assay for micronucleus (MN) frequency in normochromatic erythrocytes (NCEs) and reticulocytes (RETs), and Pig-a gene mutation in total red blood cells (RBCs). 24h after the last dose of the 8-week treatment schedule, the rats were euthanized, and their tissues were used to perform NCE and RET MN assays, the Pig-a RBC assay, Pig-a and Hprt lymphocyte gene mutation assays, the liver cII transgene mutation assay, and the liver Comet assay. The responses in the MN assays conducted at both sampling times, and all the gene mutation assays, were uniformly negative; however, the Comet assay was positive for the induction of liver DNA damage. As the positive responses in the Comet assay were seen only with doses in excess of the cancer bioassay doses, and at least one of these doses (30mg/kg) produced toxicity in the liver, the overall findings from the study are consistent with furan having a predominantly nongenotoxic MOA for cancer.
Insights
This study investigated furan's cancer-causing mechanism in rats. Furan exposure did not cause genetic mutations but did induce liver DNA damage at high doses, suggesting a non-genotoxic mode of action for furan-induced cancer.
Area of Science:
- Toxicology
- Carcinogenesis
- Molecular Biology
Background:
- Furan is a known liver carcinogen, but its precise mode of action (MOA) remains unclear.
- While a furan metabolite is mutagenic, its role in furan-induced tumors is not established.
Purpose of the Study:
- To investigate whether genotoxicity is a key step in furan's carcinogenic MOA.
- To assess DNA damage and gene mutations in rats exposed to furan.
Main Methods:
- Transgenic Big Blue rats were gavaged with furan (2-30 mg/kg) for 8 weeks.
- Assays included micronucleus frequency, Pig-a and Hprt gene mutation, liver cII transgene mutation, and liver Comet assay.
- Blood and tissue samples were analyzed at different time points.
Main Results:
- Micronucleus and gene mutation assays were negative across all tested furan concentrations.
- The Comet assay showed positive results for liver DNA damage, but only at doses exceeding those used in cancer bioassays.
- High-dose furan exposure (≥30 mg/kg) induced liver toxicity.
Conclusions:
- The study's findings support a predominantly non-genotoxic MOA for furan-induced liver cancer.
- Genotoxicity does not appear to be a critical factor in furan's carcinogenicity at typical exposure levels.
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