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Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico

INTRODUCTION: Arsenic is an environmental toxic present worldwide. In men and animals, various organs and tissues are targets of its deleterious effects including those of the immune system. OBJECTIVE: To determine acute arsenic toxicity in tissues and target cells of Balb/c mice using an in vivo me...

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Autores principales: Canalis, Alejandra Mariel, Pérez, Roberto Daniel, Falchini, Gisele Evangelina, Soria, Elio Andrés
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biteca 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8055596/
https://www.ncbi.nlm.nih.gov/pubmed/33761193
http://dx.doi.org/10.7705/biomedica.5485
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author Canalis, Alejandra Mariel
Pérez, Roberto Daniel
Falchini, Gisele Evangelina
Soria, Elio Andrés
author_facet Canalis, Alejandra Mariel
Pérez, Roberto Daniel
Falchini, Gisele Evangelina
Soria, Elio Andrés
author_sort Canalis, Alejandra Mariel
collection PubMed
description INTRODUCTION: Arsenic is an environmental toxic present worldwide. In men and animals, various organs and tissues are targets of its deleterious effects including those of the immune system. OBJECTIVE: To determine acute arsenic toxicity in tissues and target cells of Balb/c mice using an in vivo methodology. MATERIALS AND METHODS: We injected Balb/c mice intraperitoneally with 9.5 or 19 mg/ kg of sodium arsenite (NaAsO(2)), or an equivalent volume of physiological solution as a control (with 3 per experimental group). After 30 minutes, the animals were sacrificed to obtain spleen, thymus, liver, kidneys, and blood. We determined arsenic, polyphenols, and iron concentrations in each sample and we evaluated the oxidative markers (peroxides, advanced products of protein oxidation, and free sulfhydryl groups). In splenocytes from the spleen, cell viability and mitochondrial potential were also determined. RESULTS: The exposure to an acute dose of NaAsO(2) reduced the mitochondrial function of splenocytes, which resulted in cell death. Simultaneously, the confirmed presence of arsenic in spleen samples and the resulting cytotoxicity occurred with a decrease in polyphenols, free sulfhydryl groups, and an alteration in the content and distribution of iron, but did not increase the production of peroxides. CONCLUSION: These findings provide scientific evidence about changes occurring in biomarkers involved in the immunotoxicity of arsenic and offer a methodology for testing possible treatments against the deleterious action of this compound on the immune system.
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spelling pubmed-80555962021-04-20 Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico Canalis, Alejandra Mariel Pérez, Roberto Daniel Falchini, Gisele Evangelina Soria, Elio Andrés Biomedica Article INTRODUCTION: Arsenic is an environmental toxic present worldwide. In men and animals, various organs and tissues are targets of its deleterious effects including those of the immune system. OBJECTIVE: To determine acute arsenic toxicity in tissues and target cells of Balb/c mice using an in vivo methodology. MATERIALS AND METHODS: We injected Balb/c mice intraperitoneally with 9.5 or 19 mg/ kg of sodium arsenite (NaAsO(2)), or an equivalent volume of physiological solution as a control (with 3 per experimental group). After 30 minutes, the animals were sacrificed to obtain spleen, thymus, liver, kidneys, and blood. We determined arsenic, polyphenols, and iron concentrations in each sample and we evaluated the oxidative markers (peroxides, advanced products of protein oxidation, and free sulfhydryl groups). In splenocytes from the spleen, cell viability and mitochondrial potential were also determined. RESULTS: The exposure to an acute dose of NaAsO(2) reduced the mitochondrial function of splenocytes, which resulted in cell death. Simultaneously, the confirmed presence of arsenic in spleen samples and the resulting cytotoxicity occurred with a decrease in polyphenols, free sulfhydryl groups, and an alteration in the content and distribution of iron, but did not increase the production of peroxides. CONCLUSION: These findings provide scientific evidence about changes occurring in biomarkers involved in the immunotoxicity of arsenic and offer a methodology for testing possible treatments against the deleterious action of this compound on the immune system. Biteca 2020-10-01 /pmc/articles/PMC8055596/ /pubmed/33761193 http://dx.doi.org/10.7705/biomedica.5485 Text en https://creativecommons.org/licenses/by/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY) 3.0 License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Canalis, Alejandra Mariel
Pérez, Roberto Daniel
Falchini, Gisele Evangelina
Soria, Elio Andrés
Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title_full Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title_fullStr Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title_full_unstemmed Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title_short Arsenotoxicidad aguda experimental en ratones Balb/c: marcadores orgánicos y compromiso esplénico
title_sort arsenotoxicidad aguda experimental en ratones balb/c: marcadores orgánicos y compromiso esplénico
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8055596/
https://www.ncbi.nlm.nih.gov/pubmed/33761193
http://dx.doi.org/10.7705/biomedica.5485
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