首页> 外文期刊>The Journal of toxicological sciences >Neurobehavioral changes in response to alterations in gene expression profiles in the brains of mice exposed to low and high levels of mercury vapor during postnatal development
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Neurobehavioral changes in response to alterations in gene expression profiles in the brains of mice exposed to low and high levels of mercury vapor during postnatal development

机译:出生后发育过程中暴露于低和高水平汞蒸气的小鼠大脑中神经行为的变化,以响应基因表达谱的变化

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This study examined the relationship between neurobehavioral changes and alterations in gene expression profiles in the brains of mice exposed to different levels of Hg0 during postnatal development. Neonatal mice were repeatedly exposed to mercury vapor (Hg0) at a concentration of 0.057 mg/m3 (low level), which was close to the current threshold value (TLV), and 0.197 mg/m3 (high level) for 24 hr until the 20th day postpartum. Behavioral responses were evaluated based on changes in locomotor activity in the open field test (OPF), learning ability in the passive avoidance response test (PA), and spatial learning ability in the Morris water maze (MM) at 12 weeks of age. No significant differences were observed in the three behavioral measurements between mice exposed to the low level of Hg0 and control mice. On the other hand, total locomotive activity in mice exposed to the high level of Hg0 was significantly decreased and central locomotion was reduced in the OPF task. Mercury concentrations were approximately 0.4 μg/g and 1.9 μg/g in the brains of mice exposed to the low and high levels of Hg0, respectively. Genomic analysis revealed that the expression of 2 genes was up-regulated and 18 genes was down-regulated in the low-level exposure group, while the expression of 3 genes was up-regulated and 70 genes was down-regulated in the high-level exposure group. Similar alterations in the expression of seven genes, six down-regulated genes and one up-regulated gene, were observed in both groups. The results indicate that an increase in the number of altered genes in the brain may be involved in the emergence of neurobehavioral effects, which may be associated with the concentration of mercury in the brain. Moreover, some of the commonly altered genes following exposure to both concentrations of Hg0 with and without neurobehavioral effects may be candidates as sensitive biomarker genes for assessing behavioral effects in the early stages of development.
机译:本研究探讨了出生后发育过程中暴露于不同水平的Hg 0 的小鼠大脑中神经行为变化与基因表达谱改变之间的关系。新生小鼠反复暴露于浓度为0.057 mg / m 3 (低水平)的汞蒸气(Hg 0 ),该浓度接近当前阈值(TLV) )和0.197 mg / m 3 (高水平)持续24小时,直到产后第20天。行为反应的评估是基于12周龄时在开放视野测试(OPF)中的运动活动,被动回避反应测试(PA)中的学习能力以及莫里斯水迷宫(MM)中的空间学习能力的变化。暴露于低水平Hg 0 的小鼠与对照组的三种行为测量结果均未见明显差异。另一方面,在OPF任务中,暴露于高水平Hg 0 的小鼠的总机车活动显着降低,并且中枢运动减少。暴露于低水平和高水平Hg 0 的小鼠大脑中的汞浓度分别约为0.4μg/ g和1.9μg/ g。基因组分析表明,低水平接触组中2个基因的表达上调,18个基因下调;而高水平水平中3个基因的表达上调,70个基因下调暴露组。两组均观察到七个基因,六个下调基因和一个上调基因表达的类似变化。结果表明,大脑中基因改变数量的增加可能与神经行为效应的出现有关,这可能与大脑中汞的浓度有关。此外,暴露于两种浓度的Hg 0 且具有和不具有神经行为作用的一些通常改变的基因可能是敏感的生物标记基因,可用于评估发育早期的行为影响。

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