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首页> 外文期刊>The Journal of toxicological sciences >Neurobehavioral changes and alteration of gene expression in the brains of metallothionein-I/II null mice exposed to low levels of mercury vapor during postnatal development.
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Neurobehavioral changes and alteration of gene expression in the brains of metallothionein-I/II null mice exposed to low levels of mercury vapor during postnatal development.

机译:在出生后发育过程中暴露于低水平汞蒸气的金属硫蛋白-I / II空小鼠的大脑中的神经行为变化和基因表达的改变。

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摘要

This study examined the neurobehavioral changes and alteration in gene expression in the brains of metallothionein (MT)-I/II null mice exposed to low-levels of mercury vapor (Hg(0)) during postnatal development. MT-I/II null and wild-type mice were repeatedly exposed to Hg(0) at 0.030 mg/m(3) (range: 0.023-0.043 mg/m(3)), which was similar to the current threshold value (TLV), for 6 hr per day until the 20th day postpartum. The behavioral effects were evaluated with locomotor activity in the open field (OPF), learning ability in the passive avoidance response (PA) and spatial learning ability in the Morris water maze (MM) at 12 weeks of age. Hg(0)-exposed MT-I/II null mice showed a significant decrease in total locomotor activity in females, though learning ability and spatial learning ability were not affected. Immediately after Hg(0) exposure, mercury concentrations in the brain did not exceed 0.5 microg/g in any animals. Hg(0) exposure resulted in significant alterations in gene expression in the brains of both strains using DNA microarray analysis. The number of altered genes in MT-I/II null mice was higher than that in wild-type mice and calcium-calmodulin kinase II (Camk2a) involved in learning and memory in down-regulated genes was detected. These results provide useful information to elucidate the development of behavioral toxicity following low-level exposure to Hg(0).
机译:这项研究检查了在出生后发育过程中暴露于低水平汞蒸气(Hg(0))的金属硫蛋白(MT)-I / II空小鼠大脑中的神经行为变化和基因表达的变化。 MT-I / II空小鼠和野生型小鼠反复暴露于0.030 mg / m(3)(范围:0.023-0.043 mg / m(3))的Hg(0),与当前阈值( TLV),每天持续6个小时,直到产后20天。在12周龄时,通过开放领域的运动活动(OPF),被动回避反应的学习能力(PA)和莫里斯水迷宫(MM)的空间学习能力对行为影响进行了评估。暴露于Hg(0)的MT-I / II空小鼠显示雌性的总运动能力显着下降,尽管学习能力和空间学习能力均未受到影响。暴露于Hg(0)之后,任何动物的大脑中汞浓度立即不超过0.5 microg / g。使用DNA微阵列分析,Hg(0)暴露导致两种菌株的大脑基因表达发生重大变化。 MT-1 / II无效小鼠的基因改变数量比野生型小鼠高,并且检测到参与下调基因学习和记忆的钙钙调蛋白激酶II(Camk2a)。这些结果提供了有用的信息,以阐明低水平暴露于Hg(0)后行为毒性的发展。

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