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斑马鱼早期生活阶段中铁元素的神经生理学效应。

The neurophysiological effects of iron in early life stages of zebrafish.

机构信息

Department of Biology, York University, Toronto, Ontario, Canada.

Department of Biology, York University, Toronto, Ontario, Canada.

出版信息

Environ Pollut. 2020 Dec;267:115625. doi: 10.1016/j.envpol.2020.115625. Epub 2020 Sep 18.

Abstract

Trace metal/ion homeostasis, neurophysiological performance, and molecular responses to iron (Fe) exposure were investigated in the model organism zebrafish (Danio rerio). The findings demonstrated that exposure to a sublethal concentration of ferric iron (Fe) increased Fe contents in both the whole body and head region of developing zebrafish. Among the various trace metals and major ion examined, a dysregulation in manganese, zinc, nickel, and calcium balance was also observed in Fe-exposed larvae. Further biochemical assay and in-vivo imaging revealed that Fe exposure resulted in possible oxidative stress-induced damage, and an increased generation of reactive oxygen species in specific regions of the larvae. Using a droplet digital PCR (ddPCR) technology, it was found that the expression levels of various oxidative stress-responsive genes were temporally modulated by Fe exposure. Additionally, Fe-exposed larvae exhibited an impairment in escape response and a decrease in swimming activity. These larvae also appeared to exhibit a reduced anxiety-like behaviour. Together, our research suggested that larvae experiencing an increased Fe loading exhibited a dysregulation in metal homeostasis and a decrease in neurophysiological performance. These results suggested that neurophysiological assessments are sensitive methods to evaluate Fe toxicity in developing fish.

摘要

研究了模式生物斑马鱼(Danio rerio)中的痕量金属/离子稳态、神经生理表现以及对铁(Fe)暴露的分子反应。研究结果表明,亚致死浓度的三价铁(Fe)暴露会增加发育中的斑马鱼全身和头部区域的 Fe 含量。在所检查的各种痕量金属和主要离子中,还观察到 Fe 暴露的幼虫中锰、锌、镍和钙平衡失调。进一步的生化分析和体内成像显示,Fe 暴露导致可能的氧化应激诱导损伤,以及幼虫特定区域中活性氧的产生增加。使用液滴数字 PCR(ddPCR)技术,发现 Fe 暴露会随时间调节各种氧化应激反应基因的表达水平。此外,暴露于 Fe 的幼虫表现出逃避反应受损和游泳活动减少。这些幼虫似乎也表现出焦虑样行为减少。总之,我们的研究表明,经历 Fe 负荷增加的幼虫表现出金属稳态失调和神经生理表现下降。这些结果表明,神经生理评估是评估发育期鱼类 Fe 毒性的敏感方法。

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