Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression
In vivo, after administration by gavage to mice and rats, okadaic acid has been reported to produce lesions in liver, small intestine and forestomach. Because several reports differ in the damage detected in different organs, and on okadaic acid distribution after consumption, we determined the toxi...
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2013-11-01
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doaj-fd47f731943e4d149f63b71570782aca2020-11-24T22:44:25ZengMDPI AGToxins2072-66512013-11-015112093210810.3390/toxins5112093Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene ExpressionLuis M. BotanaFélix V. VegaMercedes R. VieytesPaz OteroJosé Manuel CifuentesRoberto BermúdezAmparo AlfonsoHenar López-AlonsoAndres C. VieiraJuan A. RubioloIn vivo, after administration by gavage to mice and rats, okadaic acid has been reported to produce lesions in liver, small intestine and forestomach. Because several reports differ in the damage detected in different organs, and on okadaic acid distribution after consumption, we determined the toxicity of this compound after oral administration to mice. After 24 hours, histopathological examination showed necrotic foci and lipid vacuoles in the livers of intoxicated animals. By immunohistochemical analysis, we detected this toxin in the liver and kidneys of intoxicated animals. Okadaic acid induces oxidative stress and can be activated in vitro into reactive compounds by the post-mitochondrial S9 fraction, so we studied the okadaic effect on the gene expression of antioxidant and phase II detoxifying enzymes in liver. We observed a downregulation in the expression of these enzymes and a reduction of protein expression of catalase and superoxide dismutase 1 in intoxicated animals.http://www.mdpi.com/2072-6651/5/11/2093okadaic acidhistopathologydiarrheaimmunohistochemistryliversuperoxide dismutase 1catalasequantitative PCRmice |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Luis M. Botana Félix V. Vega Mercedes R. Vieytes Paz Otero José Manuel Cifuentes Roberto Bermúdez Amparo Alfonso Henar López-Alonso Andres C. Vieira Juan A. Rubiolo |
spellingShingle |
Luis M. Botana Félix V. Vega Mercedes R. Vieytes Paz Otero José Manuel Cifuentes Roberto Bermúdez Amparo Alfonso Henar López-Alonso Andres C. Vieira Juan A. Rubiolo Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression Toxins okadaic acid histopathology diarrhea immunohistochemistry liver superoxide dismutase 1 catalase quantitative PCR mice |
author_facet |
Luis M. Botana Félix V. Vega Mercedes R. Vieytes Paz Otero José Manuel Cifuentes Roberto Bermúdez Amparo Alfonso Henar López-Alonso Andres C. Vieira Juan A. Rubiolo |
author_sort |
Luis M. Botana |
title |
Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression |
title_short |
Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression |
title_full |
Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression |
title_fullStr |
Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression |
title_full_unstemmed |
Oral Toxicity of Okadaic Acid in Mice: Study of Lethality, Organ Damage, Distribution and Effects on Detoxifying Gene Expression |
title_sort |
oral toxicity of okadaic acid in mice: study of lethality, organ damage, distribution and effects on detoxifying gene expression |
publisher |
MDPI AG |
series |
Toxins |
issn |
2072-6651 |
publishDate |
2013-11-01 |
description |
In vivo, after administration by gavage to mice and rats, okadaic acid has been reported to produce lesions in liver, small intestine and forestomach. Because several reports differ in the damage detected in different organs, and on okadaic acid distribution after consumption, we determined the toxicity of this compound after oral administration to mice. After 24 hours, histopathological examination showed necrotic foci and lipid vacuoles in the livers of intoxicated animals. By immunohistochemical analysis, we detected this toxin in the liver and kidneys of intoxicated animals. Okadaic acid induces oxidative stress and can be activated in vitro into reactive compounds by the post-mitochondrial S9 fraction, so we studied the okadaic effect on the gene expression of antioxidant and phase II detoxifying enzymes in liver. We observed a downregulation in the expression of these enzymes and a reduction of protein expression of catalase and superoxide dismutase 1 in intoxicated animals. |
topic |
okadaic acid histopathology diarrhea immunohistochemistry liver superoxide dismutase 1 catalase quantitative PCR mice |
url |
http://www.mdpi.com/2072-6651/5/11/2093 |
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