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Labrador 茶(Rhododendron tomentosum ssp. subarcticum)共暴露对甲基汞致大鼠神经发育毒性的影响及其调控机制。

Modulation of the effects of methylmercury on rat neurodevelopment by co-exposure with Labrador Tea (Rhododendron tomentosum ssp. subarcticum).

机构信息

Hazard Identification Division, Environmental Health Science and Research Bureau, Health Canada, Ottawa, ON, Canada.

出版信息

Food Chem Toxicol. 2011 Sep;49(9):2336-42. doi: 10.1016/j.fct.2011.06.035. Epub 2011 Jun 21.

Abstract

Seafood is an important source of nutrients for many populations worldwide. Unfortunately the contamination of seafood with methylmercury (MeHg) has raised health concerns, particularly for developing infants. The modification of MeHg toxicity by nutrients, including antioxidants, has been reported in both epidemiological and animal exposure studies. We used a rat perinatal exposure model to investigate the modulation of developmental MeHg toxicity by an extract of Rhododendron tomentosum ssp. subarcticum, a plant rich in antioxidants traditionally consumed by Inuit. Sprague-Dawley rat dams were exposed daily to 2 mg MeHg/kg bw and 100 mg R. tomemtosum extract/kg bw administered either separately or jointly, from the first day of gestation until weaning. MeHg exposure was associated with impaired pup growth and survival, decreased grip strength, hyperactivity and altered exploratory behaviour, delayed acoustic startle response, elevated brain N-methyl-D-aspartate receptor (NMDA-R) levels, and increased serum lipid peroxidation. R. tomemtosum extract co-exposure modulated MeHg's effects on oxidative stress and brain NMDA-R levels and may have affected MeHg pharmacokinetic. However, modulation of these molecular endpoints did not lead to significant alterations of MeHg's effects on rat neurobehaviour.

摘要

海鲜是世界上许多人群的重要营养来源。不幸的是,海鲜中的甲基汞(MeHg)污染引起了健康关注,特别是对发育中的婴儿。营养物质(包括抗氧化剂)对 MeHg 毒性的修饰作用在流行病学和动物暴露研究中均有报道。我们使用大鼠围产期暴露模型研究了北极地区杜鹃花提取物对发育中 MeHg 毒性的调节作用,这种植物富含抗氧化剂,是因纽特人传统食用的食物。从妊娠的第一天到断奶,给予 Sprague-Dawley 大鼠母体每日 2mg/kg bw 的 MeHg 和 100mg/kg bw 的 R. tomentosum 提取物,单独或联合给药。MeHg 暴露与幼仔生长和存活受损、握力下降、过度活跃和探索行为改变、听觉惊跳反应延迟、大脑 N-甲基-D-天冬氨酸受体(NMDA-R)水平升高以及血清脂质过氧化有关。R. tomentosum 提取物共同暴露调节了 MeHg 对氧化应激和大脑 NMDA-R 水平的影响,可能影响了 MeHg 的药代动力学。然而,这些分子终点的调节并没有导致 MeHg 对大鼠神经行为的影响发生显著变化。

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