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Exploring the Toxicology of Depleted Uranium with Caenorhabditis elegans

机译:用Caenorhabditis elegans探索贫铀毒理学

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Depleted uranium (DU) is an emerging heavy metal pollutant with considerable environmental and occupational concerns. Its radiotoxicity is known to be low. However, its chemical toxicity should not be ignored. In order to explore the chemical toxicity of DU, the effects of uranyl nitrate, prepared from DU, on the model organism Caenorhabditis elegans were investigated. Chronic exposure to DU did not affect the lifespan or reproduction of the worm. DU had little effect on the physiological processes of C. elegans . Additionally, DU treatment did not make C. elegans more susceptible to UV, heat, or oxidative stress. Interestingly, chronic exposure of DU decreased the in vivo reactive oxygen species-scavenging ability through inhibiting the expression of antioxidant genes ctl -1, ctl -2, ctl -3, gst -7, and gst -10. Chronic but not acute exposure of DU induced a statistically significant degeneration of the dopaminergic (DAergic) neurons of treated worms and promoted the increase of α-synuclein aggregation and DAergic neurotoxicity. These findings may raise the public concerns regarding DU as an etiologic agent of Parkinson’s disease and underline its potential neurotoxicity.
机译:枯竭的铀(DU)是一种新兴重金属污染物,具有相当大的环境和职业问题。已知其放射毒性低。但是,不应忽视其化学毒性。为了探讨杜的化学毒性,研究了从模型生物中制备的硝酸铀酰硝酸铀的影响 Caenorhabditis秀丽隐塞。杜尼暴露于DU不影响蠕虫的寿命或再现。 du对 c的生理过程几乎没有影响。 elegans。此外,Du治疗没有使 c。 elegans更容易受紫外线,热或氧化应激。有趣的是,DU的慢性暴露通过抑制抗氧化基因的表达,杜氏活性氧物种 - 清除能力抑制抗氧化基因 CTL -2, CTL -3, GST -7和 GST -10。慢性但不是急性暴露于杜氏菌对处理蠕虫的多巴胺能(Danergic)神经元的统计显着退化,并促进了α-突触核蛋白聚集和晚期神经毒性的增加。这些调查结果可能会使公众关注杜作为帕金森病的病因患者,并强调其潜在的神经毒性。

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