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Gene Expression Profiling in Liver and Testis of Rats to Characterize the Toxicity of Triazole Fungicides

Contact
DAVID J DIX
phone: 9195412701
fax: 919-541-5138
email: dix.david@epa.gov

Citation:

TULLY, D. B., W. BAO, A. GOETZ, H. REN, J. E. SCHMID, C. R. BLYSTONE, L. F. STRADER, C. R. WOOD, D. S. BEST, M. G. NAROTSKY, S. BARONE, D. C. WOLF, J. C. ROCKETT, AND D. J. DIX. Gene Expression Profiling in Liver and Testis of Rats to Characterize the Toxicity of Triazole Fungicides. ScienceDirect Elsevier (ed.), TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, 215(3):260-273, (2006).

Description:

Four triazole fungicides were studied using toxicogenomic techniques to identify potential mechanisms of action. Adult male Sprague-Dawley rats were dosed for 14 days by gavage with fluconazole, myclobutanil, propiconazole, or triadimefon. Following exposure, serum was collected for hormone measurements, and liver and testes were collected for histology, enzyme biochemistry, or gene expression profiling. Body and testis weights were unaffected, but liver weights were significantly increased by all four triazoles, and hepatocytes exhibited centrilobular hypertrophy. Myclobutanil exposure increased serum testosterone and decreased sperm motility, but no treatment-related testis histopathology was observed. We hypothesized that gene expression profiles would identify potential mechanisms of toxicity and used DNA microarrays and quantitative real-time PCR (qPCR) to generate profiles. Triazole fungicides are designed to inhibit fungal cytochrome P450 (CYP) 51 enzyme but can also modulate the expression and function of mammalian CYP genes and enzymes. Triazoles affected the expression of numerous CYP genes in rat liver and testis, including multiple Cyp2c and Cyp3a isoforms as well as other xenobiotic metabolizing enzyme (XME) and transporter genes. For some genes, such as Ces2 and Udpgtr2, all four triazoles had similar effects on expression, suggesting possible common mechanisms of action. Many of these CYP, XME and transporter genes are regulated by xeno-sensing nuclear receptors, and hierarchical clustering of CAR/PXR-regulated genes demonstrated the similarities of toxicogenomic responses in liver between all four triazoles and in testis between myclobutanil and triadimefon. Triazoles also affected expression of multiple genes involved in steroid hormone metabolism in the two tissues. Thus, gene expression profiles helped identify possible toxicological mechanisms of the triazole fungicides.

Purpose/Objective:

Four triazole fungicides were studied using toxicogenomic techniques to identify potential mechanisms of action.

URLs/Downloads:

Gene Expression Profiling in Liver and Testis of Rats to Characterize the Toxicity of Triazole Fungicides  Exit EPA's Web Site

Record Details:

Record Type: DOCUMENT (JOURNAL/PEER REVIEWED JOURNAL)
Start Date: 09/15/2006
Completion Date: 09/15/2006
Record Last Revised: 12/10/2008
Record Created: 07/24/2006
Record Released: 07/24/2006
OMB Category: Other
Record ID: 156418

Organization:

U.S. ENVIRONMENTAL PROTECTION AGENCY
OFFICE OF RESEARCH AND DEVELOPMENT
NATIONAL CENTER FOR COMPUTATIONAL TOXICOLOGY
IMMEDIATE OFFICE
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