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铜纳米颗粒对虹鳟鱼嗅黏膜毒性的作用机制。

Mechanism of copper nanoparticle toxicity in rainbow trout olfactory mucosa.

机构信息

Department of Biological Sciences, University of Lethbridge, Lethbridge, Alberta, Canada.

Department of Biochemistry and Microbiology, University of Victoria, Victoria, British Columbia, Canada.

出版信息

Environ Pollut. 2021 Sep 1;284:117141. doi: 10.1016/j.envpol.2021.117141. Epub 2021 Apr 16.

Abstract

Chemosensory perception is crucial for fish reproduction and survival. Direct contact of olfactory neuroepithelium to the surrounding environment makes it vulnerable to contaminants in aquatic ecosystems. Copper nanoparticles (CuNPs), which are increasingly used in commercial and domestic applications due their exceptional properties, can impair fish olfactory function. However, the molecular events underlying olfactory toxicity of CuNPs are largely unexplored. Our results suggested that CuNPs were bioavailable to olfactory mucosal cells. Using RNA-seq, we compared the effect of CuNPs and copper ions (Cu) on gene transcript profiles of rainbow trout (Oncorhynchus mykiss) olfactory mucosa. The narrow overlap in differential gene expression between the CuNP- and Cu-exposed fish revealed that these two contaminants exert their effects through distinct mechanisms. We propose a transcript-based conceptual model that shows that olfactory signal transduction, calcium homeostasis, and synaptic vesicular signaling were affected by CuNPs in the olfactory sensory neurons (OSNs). Neuroregenerative pathways were also impaired by CuNPs. In contrast, Cu did not induce toxicity pathways and rather upregulated regeneration pathways. Both Cu treatments reduced immune system pathway transcripts. However, suppression of transcripts that were associated with inflammatory signaling was only observed with CuNPs. Neither oxidative stress nor apoptosis were triggered by Cu or CuNPs in mucosal cells. Dysregulation of transcripts that regulate function, maintenance, and reestablishment of damaged olfactory mucosa represents critical mechanisms of toxicity of CuNPs. The loss of olfaction by CuNPs may impact survival of rainbow trout and impose an ecological risk to fish populations in contaminated environments.

摘要

化学感觉感知对鱼类的繁殖和生存至关重要。嗅觉神经上皮直接接触周围环境,使其容易受到水生生态系统中污染物的影响。由于具有特殊的性质,铜纳米颗粒(CuNPs)在商业和家庭应用中越来越广泛,但它们可能会损害鱼类的嗅觉功能。然而,CuNPs 嗅觉毒性的分子事件在很大程度上尚未得到探索。我们的研究结果表明,CuNPs 对嗅觉黏膜细胞是具有生物利用度的。使用 RNA-seq,我们比较了 CuNPs 和铜离子(Cu)对彩虹鳜(Oncorhynchus mykiss)嗅觉黏膜基因转录谱的影响。CuNP 和 Cu 暴露鱼之间差异表达基因的重叠很小,这表明这两种污染物通过不同的机制发挥作用。我们提出了一个基于转录本的概念模型,表明 CuNPs 会影响嗅觉感觉神经元(OSNs)中的嗅觉信号转导、钙稳态和突触小泡信号传导。神经再生途径也受到 CuNPs 的损害。相比之下,Cu 不会诱导毒性途径,而是上调再生途径。Cu 处理均降低了免疫系统途径的转录本。然而,只有 CuNPs 才会抑制与炎症信号相关的转录本。Cu 或 CuNPs 均未在黏膜细胞中引发氧化应激或细胞凋亡。调节功能、维持和受损嗅觉黏膜重建的转录本的失调代表了 CuNPs 毒性的关键机制。CuNPs 引起的嗅觉丧失可能会影响彩虹鳜的生存,并对受污染环境中的鱼类种群造成生态风险。

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