Literature DB >> 20486922

Complex methylmercury-cysteine alters mercury accumulation in different tissues of mice.

Daniel Henrique Roos1, Robson Luiz Puntel, Thiago Henrique Lugokenski, Rafael Porto Ineu, Denise Bohrer, Marilise E Burger, Jeferson L Franco, Marcelo Farina, Michael Aschner, João Batista T Rocha, Nilda B de Vargas Barbosa.   

Abstract

Methylmercury (MeHg) can cause deleterious effects in vertebrate tissues, particularly in the central nervous system. MeHg interacts with sulfhydryl groups from low and high molecular weight thiols in the blood, which can facilitate MeHg uptake into different tissues. The purpose of this study was to examine the effect of MeHg-Cysteine (MeHg-Cys) complex administration on Hg-uptake in cerebral areas (cortex and cerebellum), liver and kidney of adult mice. Animals were divided into four groups: control (1 mL/kg distilled water), MeHg (2 mg/kg), Cys (2 mg/kg) and MeHg-Cys complex (0.8 molar ratio). Mice received one intraperitoneal injection per day for 60 consecutive days. Treatment with MeHg significantly increased mercury concentrations in all tissues analysed when compared with the control group. The accumulation of mercury in brain and in liver was further increased in animals that received MeHg-Cys complex when compared with the MeHg alone group. However, renal Hg decreased in MeHg-Cys treated mice, when compared with the group treated only with MeHg. In summary, the transport of MeHg-Cys complex was tissue-specific, and we observed an increase in its uptake by liver and brain as well as a decrease in kidney.
© 2010 The Authors. © 2010 Nordic Pharmacological Society.

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Year:  2010        PMID: 20486922     DOI: 10.1111/j.1742-7843.2010.00577.x

Source DB:  PubMed          Journal:  Basic Clin Pharmacol Toxicol        ISSN: 1742-7835            Impact factor:   4.080


  12 in total

1.  Modulation of methylmercury uptake by methionine: prevention of mitochondrial dysfunction in rat liver slices by a mimicry mechanism.

Authors:  Daniel Henrique Roos; Robson Luiz Puntel; Marcelo Farina; Michael Aschner; Denise Bohrer; João Batista T Rocha; Nilda B de Vargas Barbosa
Journal:  Toxicol Appl Pharmacol       Date:  2011-01-27       Impact factor: 4.219

2.  The influence of obesity on blood mercury levels for U.S. non-pregnant adults and children: NHANES 2007-2010.

Authors:  Sarah E Rothenberg; Susan A Korrick; Raja Fayad
Journal:  Environ Res       Date:  2015-02-24       Impact factor: 6.498

3.  Mercury and methylmercury distribution in tissues of sculpins from the Bering Sea.

Authors:  John Harley; Camilla Lieske; Shaina Bhojwani; J Margaret Castellini; J Andrés López; Todd M O'Hara
Journal:  Polar Biol       Date:  2015-05-31       Impact factor: 2.310

4.  Sulfhydryl groups as targets of mercury toxicity.

Authors:  Olga P Ajsuvakova; Alexey A Tinkov; Michael Aschner; João B T Rocha; Bernhard Michalke; Margarita G Skalnaya; Anatoly V Skalny; Monica Butnariu; Maryam Dadar; Ioan Sarac; Jan Aaseth; Geir Bjørklund
Journal:  Coord Chem Rev       Date:  2020-05-07       Impact factor: 22.315

5.  Sulforaphane Prevents Methylmercury-Induced Oxidative Damage and Excitotoxicity Through Activation of the Nrf2-ARE Pathway.

Authors:  Shu Feng; Zhaofa Xu; Fei Wang; Tianyao Yang; Wei Liu; Yu Deng; Bin Xu
Journal:  Mol Neurobiol       Date:  2016-01-07       Impact factor: 5.590

Review 6.  Mechanisms involved in the transport of mercuric ions in target tissues.

Authors:  Christy C Bridges; Rudolfs K Zalups
Journal:  Arch Toxicol       Date:  2016-07-15       Impact factor: 5.153

7.  Comparative study on methyl- and ethylmercury-induced toxicity in C6 glioma cells and the potential role of LAT-1 in mediating mercurial-thiol complexes uptake.

Authors:  Luciana T Zimmermann; Danúbia B Santos; Aline A Naime; Rodrigo B Leal; José G Dórea; Fernando Barbosa; Michael Aschner; João Batista T Rocha; Marcelo Farina
Journal:  Neurotoxicology       Date:  2013-05-30       Impact factor: 4.294

8.  Chronic exposure to methylmercury enhances the anorexigenic effects of leptin in C57BL/6J male mice.

Authors:  Beatriz Ferrer; Lisa M Prince; Alexey A Tinkov; Abel Santamaria; Marcelo Farina; João Batista Rocha; Aaron B Bowman; Michael Aschner
Journal:  Food Chem Toxicol       Date:  2020-12-15       Impact factor: 6.023

9.  Methylmercury-induced cytotoxicity and oxidative biochemistry impairment in dental pulp stem cells: the first toxicological findings.

Authors:  Renata Duarte de Souza-Rodrigues; Bruna Puty; Laís Bonfim; Lygia Sega Nogueira; Priscila Cunha Nascimento; Leonardo Oliveira Bittencourt; Roberta Souza D'Almeida Couto; Carlos Augusto Galvão Barboza; Edivaldo Herculano Corrêa de Oliveira; Marcia Martins Marques; Rafael Rodrigues Lima
Journal:  PeerJ       Date:  2021-06-10       Impact factor: 2.984

10.  Riluzole-triggered GSH synthesis via activation of glutamate transporters to antagonize methylmercury-induced oxidative stress in rat cerebral cortex.

Authors:  Yu Deng; Zhao-Fa Xu; Wei Liu; Bin Xu; Hai-Bo Yang; Yan-Gang Wei
Journal:  Oxid Med Cell Longev       Date:  2012-08-22       Impact factor: 6.543

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