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基于生态学的方法促进环境应用中更安全的纳米银。

Ecologically based methods for promoting safer nanosilver for environmental applications.

机构信息

Department of Physical, Earth and Environmental Sciences, University of Siena, Via Mattioli 4, 53100 Siena, Italy; Department of Sciences, Roma Tre University of Rome, Via della Vasca Navale 79, 00146 Rome, Italy.

Department of Physical, Earth and Environmental Sciences, University of Siena, Via Mattioli 4, 53100 Siena, Italy.

出版信息

J Hazard Mater. 2022 Sep 15;438:129523. doi: 10.1016/j.jhazmat.2022.129523. Epub 2022 Jul 2.

DOI:10.1016/j.jhazmat.2022.129523
PMID:35820334
Abstract

Nanosilver, widely employed in consumer products as biocide, has been recently proposed as sensor, adsorbent and photocatalyst for water pollution monitoring and remediation. Since nanosilver ecotoxicity still pose limitations to its environmental application, a more ecological exposure testing strategy should be coupled to the development of safer formulations. Here, we tested the environmental safety of novel bifunctionalized nanosilver capped with citrate and L-cysteine (AgNPcitLcys) as sensor/sorbent of Hg in terms of behaviour and ecotoxicity on microalgae (1-1000 µg/L) and microcrustaceans (0.001-100 mg/L), from the freshwater and marine environment, in acute and chronic scenarios. Acute toxicity resulted poorly descriptive of nanosilver safety while chronic exposure revealed stronger effects up to lethality. Low dissolution of silver ions from AgNPcitLcys was observed, however a nano-related ecotoxicity is hypothesized. Double coating of AgNPcitLcys succeeded in mitigating ecotoxicity to tested organisms, hence encouraging further research on safer nanosilver formulations. Environmentally safe applications of nanosilver should focus on ecologically relevant exposure scenarios rather than relying only on acute exposure data.

摘要

纳米银作为一种生物杀灭剂,广泛应用于消费品中,最近被提议作为传感器、吸附剂和光催化剂,用于水污染监测和修复。由于纳米银的生态毒性仍然对其环境应用构成限制,因此应该将更生态的暴露测试策略与更安全的配方开发结合起来。在这里,我们以淡水和海洋环境中的微藻(1-1000μg/L)和微型甲壳类动物(0.001-100mg/L)为对象,测试了新型双官能化纳米银(用柠檬酸盐和 L-半胱氨酸包覆的 AgNPcitLcys)作为汞传感器/吸附剂的环境安全性,评估了其在急性和慢性暴露场景下的行为和生态毒性。急性毒性测试结果对纳米银的安全性描述较差,而慢性暴露则显示出更强的效应,甚至达到致死水平。AgNPcitLcys 中的银离子溶解率较低,但据推测存在与纳米颗粒相关的生态毒性。AgNPcitLcys 的双层包覆成功减轻了对测试生物的生态毒性,因此鼓励对更安全的纳米银配方进行进一步研究。纳米银的环境安全应用应侧重于与生态相关的暴露场景,而不仅仅依赖于急性暴露数据。

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1
Ecologically based methods for promoting safer nanosilver for environmental applications.基于生态学的方法促进环境应用中更安全的纳米银。
J Hazard Mater. 2022 Sep 15;438:129523. doi: 10.1016/j.jhazmat.2022.129523. Epub 2022 Jul 2.
2
Sensitivity of to Nanosilver for Environmental Applications.纳米银在环境应用中的敏感性。
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Comparative toxicity assessment of nanosilver on three Daphnia species in acute, chronic and multi-generation experiments.纳米银对三种水蚤属物种在急性、慢性和多代实验中的毒性比较评估。
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Adverse effects of nanosilver on human health and the environment.纳米银对人类健康和环境的有害影响。
Acta Biomater. 2019 Aug;94:145-159. doi: 10.1016/j.actbio.2019.05.042. Epub 2019 May 22.
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Exposure to a nanosilver-enabled consumer product results in similar accumulation and toxicity of silver nanoparticles in the marine mussel Mytilus galloprovincialis.暴露于含纳米银的消费产品会导致海洋贻贝贻贝中银纳米颗粒的积累和毒性相似。
Aquat Toxicol. 2019 Jun;211:46-56. doi: 10.1016/j.aquatox.2019.03.018. Epub 2019 Mar 28.
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Comparative cytotoxicity of nanosilver in human liver HepG2 and colon Caco2 cells in culture.纳米银对培养的人肝癌HepG2细胞和结肠Caco2细胞的细胞毒性比较
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Combined effects of silver nanoparticles and 17α-ethinylestradiol on the freshwater mudsnail Potamopyrgus antipodarum.银纳米颗粒与17α-乙炔雌二醇对淡水螺类新西兰泥蜗的联合效应。
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State of the art in human risk assessment of silver compounds in consumer products: a conference report on silver and nanosilver held at the BfR in 2012.消费产品中银化合物人体风险评估的最新进展:2012 年在德国联邦风险评估研究所召开的关于银和纳米银的会议报告。
Arch Toxicol. 2013 Dec;87(12):2249-62. doi: 10.1007/s00204-013-1083-8. Epub 2013 Jun 19.

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