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  2. College of Bioresources and Agriculture / 生物資源暨農學院
  3. Agricultural Chemistry / 農業化學系
  4. Early life exposure to a rodent carcinogen propiconazole fungicide induces oxidative stress and hepatocarcinogenesis in medaka fish
 
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Early life exposure to a rodent carcinogen propiconazole fungicide induces oxidative stress and hepatocarcinogenesis in medaka fish

Journal
Aquatic Toxicology
Journal Volume
170
Pages
52-61
Date Issued
2016
Author(s)
Tu, T.-Y.
CHWAN-YANG HONG  
Sasado, T.
Kashiwada, S.
PEI-JEN CHEN  
DOI
10.1016/j.aquatox.2015.11.014
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-84947996113&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/395982
Abstract
Conazole pollution is an emerging concern to human health and environmental safety because of the broad use of conazole fungicides in agriculture and medicine and their frequent occurrence in aquifers. The agricultural pesticide propiconazole has received much regulatory interest because it is a known rodent carcinogen with evidence of multiple adverse effects in mammals and non-targeted organisms. However, the carcinogenic effect and associated mechanism of propiconazole in fish under microgram-per-liter levels of environmental-relevant exposure remains unclear. To explore whether early life of propiconzaole exposure would induce oxidative stress and latent carcinogenic effects in fish, we continuously exposed larvae of wild type or p53-/- mutant of medaka fish (Oryzias latipes) to propiconazole (2.5-250. μg/L) for 3, 7, 14 or 28 days and assessed liver histopathology and/or the oxidative stress response and gene expression during exposure and throughout adulthood. Propiconazole dose-dependently induced reactive oxygen species (ROS) level, altered homeostasis of antioxidant superoxide dismutase, catalase and glutathione S-transferase and caused lipid and protein peroxidation during early life exposure in wild type medaka. Such exposure also significantly upregulated gene expression of the cytochrome P450 CYP1A, but marginally suppressed that of tumor suppressor p53 in adults. Furthermore, histopathology revealed that p53-/- mutant medaka with early life exposure to propiconazole showed increased incidence of hepatocarcionogensis, as compared to the p53-/- control group and wild type strain. We demonstrated that propiconazole can initiate ROS-mediated oxidative stress and induce hepatic tumorigenesis associated with CYP1A- and/or p53 -mediated pathways with the use of wild type and p53-/- mutant of medaka fish. The toxic response of medaka to propiconazole is compatible with that observed in rodents. ? 2015 Elsevier B.V.
Subjects
Carcinogenesis; Medaka (Oryzias latipes); Oxidative stress; p53; Propiconazole
SDGs

[SDGs]SDG3

Other Subjects
catalase; cytochrome P450 1A1; glutathione transferase; lipid; propiconazole; protein; reactive oxygen metabolite; superoxide dismutase; antioxidant; biological marker; carcinogen; catalase; cytochrome P450; fungicide; glutathione transferase; propiconazole; protein p53; reactive oxygen metabolite; superoxide dismutase; triazole derivative; water pollutant; carcinogen; enzyme activity; fish; fungicide; gene expression; histopathology; homeostasis; rodent; adult; animal cell; animal experiment; animal model; animal tissue; Article; controlled study; CYP1A gene; dose response; environmental exposure; gene expression; gene expression regulation; histopathology; homeostasis; larva; lipid peroxidation; liver; liver carcinogenesis; nonhuman; Oryzias latipes; oxidative stress; priority journal; rodent; tumor suppressor gene; upregulation; analysis; animal; drug effects; genetic transcription; genetics; growth, development and aging; Liver Neoplasms; macrophage; metabolism; Oryzias; oxidative stress; pathology; time factor; toxicity; water pollutant; Mammalia; Oryzias latipes; Oryziinae; Rodentia; Animals; Antioxidants; Biomarkers; Carcinogens; Catalase; Cytochrome P-450 Enzyme System; Environmental Exposure; Fungicides, Industrial; Gene Expression Regulation; Glutathione Transferase; Larva; Lipid Peroxidation; Liver; Liver Neoplasms; Macrophages; Oryzias; Oxidative Stress; Reactive Oxygen Species; Superoxide Dismutase; Time Factors; Transcription, Genetic; Triazoles; Tumor Suppressor Protein p53; Water Pollutants, Chemical
Type
journal article

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