Literature DB >> 26302930

Toxicity of organic and inorganic mercury species in differentiated human neurons and human astrocytes.

Hanna Lohren1, Lara Blagojevic2, Romy Fitkau3, Franziska Ebert4, Stefan Schildknecht5, Marcel Leist6, Tanja Schwerdtle7.   

Abstract

Organic mercury (Hg) species exert their toxicity primarily in the central nervous system. The food relevant Hg species methylmercury (MeHg) has been frequently studied regarding its neurotoxic effects in vitro and in vivo. Neurotoxicity of thiomersal, which is used as a preservative in medical preparations, is to date less characterised. Due to dealkylation of organic Hg or oxidation of elemental Hg, inorganic Hg is present in the brain albeit these species are not able to readily cross the blood brain barrier. This study compared for the first time toxic effects of organic MeHg chloride (MeHgCl) and thiomersal as well as inorganic mercury chloride (HgCl2) in differentiated human neurons (LUHMES) and human astrocytes (CCF-STTG1). The three Hg species differ in their degree and mechanism of toxicity in those two types of brain cells. Generally, neurons are more susceptible to Hg species induced cytotoxicity as compared to astrocytes. This might be due to the massive cellular mercury uptake in the differentiated neurons. The organic compounds exerted stronger cytotoxic effects as compared to inorganic HgCl2. In contrast to HgCl2 exposure, organic Hg compounds seem to induce the apoptotic cascade in neurons following low-level exposure. No indicators for apoptosis were identified for both inorganic and organic mercury species in astrocytes. Our studies clearly demonstrate species-specific toxic mechanisms. A mixed exposure towards all Hg species in the brain can be assumed. Thus, prospectively coexposure studies as well as cocultures of neurons and astrocytes could provide additional information in the investigation of Hg induced neurotoxicity.
Copyright © 2015. Published by Elsevier GmbH.

Entities:  

Keywords:  Apoptosis; Cytotoxicity; Human differentiated neurons; Mercuric mercury; Methylmercury; Thiomersal

Mesh:

Substances:

Year:  2015        PMID: 26302930     DOI: 10.1016/j.jtemb.2015.06.008

Source DB:  PubMed          Journal:  J Trace Elem Med Biol        ISSN: 0946-672X            Impact factor:   3.849


  15 in total

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6.  Impaired cross-talk between the thioredoxin and glutathione systems is related to ASK-1 mediated apoptosis in neuronal cells exposed to mercury.

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Journal:  Oxid Med Cell Longev       Date:  2018-04-10       Impact factor: 6.543

8.  Neurobehavioral protective properties of curcumin against the mercury chloride treated mice offspring.

Authors:  Gasem Mohammad Abu-Taweel
Journal:  Saudi J Biol Sci       Date:  2018-10-31       Impact factor: 4.219

9.  Collapsed mitochondrial cristae in goat spermatozoa due to mercury result in lethality and compromised motility along with altered kinematic patterns.

Authors:  Bhawna Kushawaha; Rajkumar Singh Yadav; Dilip Kumar Swain; Priyambada Kumari; Akhilesh Kumar; Brijesh Yadav; Mukul Anand; Sarvajeet Yadav; Dipty Singh; Satish Kumar Garg
Journal:  Sci Rep       Date:  2021-01-12       Impact factor: 4.379

10.  Exposure to Inorganic Mercury Causes Oxidative Stress, Cell Death, and Functional Deficits in the Motor Cortex.

Authors:  Francisco B Teixeira; Ana C A de Oliveira; Luana K R Leão; Nathália C F Fagundes; Rafael M Fernandes; Luanna M P Fernandes; Márcia C F da Silva; Lilian L Amado; Fernanda E S Sagica; Edivaldo H C de Oliveira; Maria E Crespo-Lopez; Cristiane S F Maia; Rafael R Lima
Journal:  Front Mol Neurosci       Date:  2018-05-15       Impact factor: 5.639

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