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首页> 外文期刊>Aquatic Toxicology >Effects of multi-walled carbon nanotube materials on Ruditapes philippinarum under climate change: The case of salinity shifts
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Effects of multi-walled carbon nanotube materials on Ruditapes philippinarum under climate change: The case of salinity shifts

机译:多壁碳纳米管材料对气候变化下菲律宾菲律宾的影响:盐度变化的情况

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摘要

The toxicity of carbon nanotubes (CNTs) is closely related to their physico-chemical characteristics as well as the physico-chemical parameters of the media where CNTs are dispersed. In a climate change scenario, changes in seawater salinity are becoming a topic of concern particularly in estuarine and coastal areas. Nevertheless, to our knowledge no information is available on how salinity shifts may alter the sensitivity (in terms of biochemical responses) of bivalves when exposed to different CNTs. For this reason, a laboratory experiment was performed exposing the Manila clam Ruditapes philippinarum, one of the most dominant bivalves of the estuarine and coastal lagoon environments, for 28 days to unfunctionalized multi-walled carbon nanotube MWCNTs (Nf-MWCNTs) and carboxylated MWCNTs (f-MWCNTs), maintained at control salinity (28) and low salinity 21. Concentration dependent toxicity was demonstrated in individuals exposed to both MWCNT materials and under both salinities, generating alterations of energy reserves and metabolism, oxidative status and neurotoxicity compared to non-contaminated clams. Moreover, our results showed greater toxic impacts induced in clams exposed to f-MWCNTs compared to Nf-MWCNTs. In the present study it was also demonstrated how salinity shifts altered the toxicity of both MWCNT materials as well as the sensitivity of R. philippinarum exposed to these contaminates in terms of clam metabolism, oxidative status and neurotoxicity.
机译:碳纳米管(CNT)的毒性与它们的物理化学特性密切相关,以及CNT分散的介质的物理化学参数。在气候变化情景中,海水盐度的变化正在成为河口和沿海地区特别令人担忧的话题。尽管如此,对于我们所知,没有任何信息可以在暴露于不同CNT时改变盐度变化可能会改变双抗体的敏感性(在生化响应)。因此,进行了实验室实验,将Manila Clam Ruditapes Philippinarum暴露于河口和沿海泻湖环境中最大的偏向性,28天到未互通的多壁碳纳米管MWCNT(NF-MWCNT)和羧化MWCNTs(在控制盐度(28)和低盐度21中维持的F-MWCNTs。在暴露于MWCNT材料的个体和盐度下的个体中证明了浓度依赖性毒性,与非 - 非受污染的蛤蜊。此外,我们的结果表明,与NF-MWCNTS相比,暴露于F-MWCNT的蛤蜊中诱导的含有更大的毒性冲击。在本研究中,还证明了盐度变化如何改变MWCNT材料的毒性以及在蛤糖代谢,氧化地位和神经毒性方面暴露于这些污染物的R.菲律宾的敏感性。

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