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首页> 外文期刊>Environmental toxicology and pharmacology >Pre-treatment with mild metal exposure suppresses the neurotoxicity on locomotion behavior induced by the subsequent severe metal exposure in Caenorhabditis elegans
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Pre-treatment with mild metal exposure suppresses the neurotoxicity on locomotion behavior induced by the subsequent severe metal exposure in Caenorhabditis elegans

机译:轻度金属暴露的预处理抑制了秀丽隐杆线虫随后的严重金属暴露对运动行为的神经毒性。

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摘要

Adaptive response to neurotoxicity on locomotion behavior by severe metal exposure was investigated in Caenorhabditis elegans. Exposure to 2.5 μM of metais induced a moderate but significant reduction of locomotion behavior and induction of hsp-16.2::gfp expression. After pre-exposure to 2.5 μM of metals, the reduced locomotion behavior induced by subsequent 50 and 100 μM of metal exposure were significantly prevented, and the induction of hsp-16.2::gfp expression caused by subsequent 50 and 100μM of metal exposure were significantly suppressed. In contrast, after pre-exposure to 50μM examined metals, the reduced locomotion behavior induced by subsequent 50 and 100 μM metal exposure were further decreased, and the noticeable induction of hsp-16.2::gfp expression caused by subsequent severe metal exposure were further enhanced. Therefore, pre-treatment with mild metal exposure can activate the adaptive response to neurotoxicity on locomotion behavior induced by subsequent severe metal exposure in nematodes.
机译:在秀丽隐杆线虫中研究了严重的金属暴露对神经毒性对运动行为的适应性反应。暴露于2.5μM的metais会导致运动行为适度但显着降低,并诱导hsp-16.2 :: gfp表达。在预先暴露于2.5μM金属后,显着防止了随后50和100μM金属暴露引起的运动行为降低,并且显着诱导了随后50和100μM金属暴露引起的hsp-16.2 :: gfp表达的诱导压抑。相比之下,在预先暴露于50μM的检测到的金属后,随后的50和100μM的金属暴露所引起的运动行为降低进一步降低,并且随后的严重金属暴露所引起的hsp-16.2 :: gfp表达的显着诱导进一步增强。 。因此,用轻度金属暴露进行预处理可以激活对线虫行为的神经毒性的适应性反应,该行为由随后在线虫中严重暴露于金属引起。

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