The effects of prenatal methylmercury exposure on trace element and antioxidant levels in rats following 6-hydroxydopamine-induced neuronal insult

被引:0
作者
Zulfiah Mohamed Moosa
Willie M. U. Daniels
Musa V. Mabandla
机构
[1] University of KwaZulu-Natal,Discipline of Human Physiology, School of Laboratory Medicine and Medical Sciences, College of Health Sciences
来源
Metabolic Brain Disease | 2014年 / 29卷
关键词
Methylmercury; Prenatal; Neurodevelopment; Trace elements; Antioxidants;
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摘要
Methylmercury (MeHg) is a metal toxin found commonly in the environment. Studies have shown severe neurotoxic effects of MeHg poisoning especially during pregnancy where it crosses the foetoplacental and the blood brain barrier of the foetus leading to neurodevelopmental deficits in the offspring. These deficits may predispose offspring to neurodegenerative diseases later in life. In this study we investigated the effects of prenatal methylmercury exposure (2.5 mg/L in drinking water from GND 1-GND 21) on the trace element status in the brain of adolescent offspring (PND 28). Total antioxidant capacity (TAC) was measured in their blood plasma. In a separate group of animals that was also exposed prenatally to MeHg, 6-hydroydopamine (6-OHDA) was administered at PND 60 as a model of neuronal insult. Trace element and TAC levels were compared before and after 6-OHDA exposure. Prenatal MeHg treatment alone resulted in significantly higher concentrations of zinc, copper, manganese and selenium in the brain of offspring at PND 28 (p < 0.05), when compared to controls. In contrast, brain iron levels in MeHg-exposed adolescent offspring were significantly lower than their controls (p < 0.05). Following 6-OHDA exposure, the levels of iron, zinc, copper and manganese were increased compared to sham-lesioned offspring (p < 0.05). Prenatal MeHg exposure further increased these trace element levels thereby promoting toxicity (p < 0.05). Total antioxidant capacity was not significantly different in MeHg and control groups prior to lesion. However, following 6-OHDA administration, MeHg-exposed animals had a significantly lower TAC than that of controls (p < 0.05). Brain TAC levels were higher in adult male rats than in female rats during adolescence however male rats that had been exposed to MeHg in utero failed to show this increase at PND 74. Prenatal MeHg exposure results in trace element dyshomeostasis in the brain of offspring and reduces total antioxidant capacity. This may reflect a mechanism by which methylmercury exerts its neurotoxicity and/or predispose offspring to further neurological insults during adulthood.
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页码:459 / 469
页数:10
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[1]  
Aliaga ME(2010)Redox-active complexes formed during the interaction between glutathione and mercury and/or copper ions J Inorg Biochem 104 1084-1090
[2]  
López-Alarcón C(2007)Involvement of glutamate and reactive oxygen species in methylmercury neurotoxicity Braz J Med Biol Res 40 285-291
[3]  
Barriga G(2008)Metals in Alzheimer’s and Parkinson’s diseases Curr Opin Chem Biol 12 222-228
[4]  
Olea-Azar C(2008)The 6-hydroxydopamine model: news from the past. Parkinsonism and related disorders 14 Supplement 2 S124-S129
[5]  
Speisky H(2000)Metals and neuroscience Curr Opinin Chem Biol 4 184-191
[6]  
Aschner M(2008)Prenatal methylmercury exposure: effects on stress response during active learning Bull Environ Contam Toxicol 81 539-542
[7]  
Syversen T(2003)Neurotrophic and neurotoxic effects of zinc on neonatal cortical neurons Neurochem Int 42 471-479
[8]  
Souza DO(2008)Metal based neurodegenerative diseases—from molecular mechanisms to therapeutic strategies Coord Chem Rev 252 1189-1199
[9]  
Rocha JBT(2003)Effects of prenatal exposure to methylmercury on dopamine-mediated locomotor activity and dopamine D2 receptor binding Naunyn-Schmiedeberg’s Arch Pharmacol 367 500-508
[10]  
Farina M(2009)New insights into nutrition and cognitive neuroscience Proc Nutr Soc 68 408-415