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饮食尼莫地平可延缓甲基汞神经毒性的发生。

Dietary nimodipine delays the onset of methylmercury neurotoxicity in mice.

机构信息

Auburn University, Auburn, AL 36849, USA.

出版信息

Neurotoxicology. 2013 Jul;37:108-17. doi: 10.1016/j.neuro.2013.03.011. Epub 2013 Apr 9.

Abstract

Adult-onset methylmercury (MeHg) exposure is thought to result primarily in sensory and motor deficits but effects on learning are poorly understood. One mechanism by which chronic MeHg may exert its neurotoxicity is via sustained disruption of intracellular calcium homeostasis, with a consequent increase of intracellular Ca(2+) ions in vulnerable neurons. A biochemically heterogeneous group of compounds, calcium channel blockers, have been shown in vitro to attenuate MeHg's toxicity. To evaluate the role of calcium antagonism in MeHg toxicity in vivo, adult BALB/c mice were exposed chronically to 0 or 15 ppm of Hg (as MeHg) via drinking water and to nimodipine, a dihydropryidine, L-type Ca(2+) channel blocker with action in the CNS. Nimodipine was administered orally in diets (0, 20, or 200 ppm, producing approximately 0, 2, or 20 mg/kg/day of nimodipine). An incremental repeated acquisition (IRA) of response chains procedure was used to detect MeHg-induced deficits in learning or motoric function and to evaluate possible neuroprotection by nimodipine. MeHg impaired performance on the IRA task, and this was partially or completely blocked by dietary nimodipine, depending on dose. Measures of learning co-varied with measures of motoric function as indicated by overall response rate. Nimodipine delayed or prevented the behavioral toxicity of MeHg exposure as evidenced by IRA performance; effects on learning seemed secondary to response rate decreases.

摘要

成人甲基汞(MeHg)暴露被认为主要导致感觉和运动缺陷,但对学习的影响知之甚少。慢性 MeHg 发挥其神经毒性的一种机制是通过持续破坏细胞内钙稳态,导致易受影响的神经元内 Ca(2+)离子增加。一组生化异质的化合物,钙通道阻滞剂,已在体外显示出可减轻 MeHg 的毒性。为了评估钙拮抗在体内 MeHg 毒性中的作用,成年 BALB/c 小鼠通过饮用水暴露于 0 或 15 ppm 的 Hg(以 MeHg 形式),并暴露于尼莫地平,一种二氢吡啶,L 型 Ca(2+)通道阻滞剂,在 CNS 中起作用。尼莫地平通过饮食(0、20 或 200 ppm,产生约 0、2 或 20 mg/kg/天的尼莫地平)口服给药。使用递增重复获取(IRA)反应链程序来检测 MeHg 引起的学习或运动功能缺陷,并评估尼莫地平的可能神经保护作用。MeHg 损害 IRA 任务的表现,尼莫地平通过饮食给药部分或完全阻断,这取决于剂量。学习的衡量标准与运动功能的衡量标准相关,如总反应率所示。尼莫地平延迟或预防 MeHg 暴露的行为毒性,如 IRA 表现所示;对学习的影响似乎次于反应率下降。

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