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海洋环境中工程纳米颗粒的毒性效应:模式生物和分子方法。

Toxic effects of engineered nanoparticles in the marine environment: model organisms and molecular approaches.

机构信息

CNR, Institute of Biomedicine and Molecular Immunology "A. Monroy", Palermo, Italy.

出版信息

Mar Environ Res. 2012 May;76:32-40. doi: 10.1016/j.marenvres.2012.01.006. Epub 2012 Feb 19.

DOI:10.1016/j.marenvres.2012.01.006
PMID:22391237
Abstract

Engineered nanoparticles (ENPs) have been produced by nano-biotech companies in recent decades to generate innovative goods in various fields, including agriculture, electronics, biomedicine, manufacturing, pharmaceuticals and cosmetics. The nano-scale size of the particles can confer novel and significantly improved physical, chemical and biological properties to scientific phenomena and processes. As their applications to science and technology expand, the need to understand the putative noxious effects of ENPs on humans and ecosystems is becoming increasingly important. ENPs are emerging as a new class of pollutants with eco-toxicological impacts on marine ecosystems because the particles can end up in waterways and reach the sea. Recent laboratory studies in invertebrates and fishes suggest that exposure to ENPs could have harmful effects. Because there is not much data available for gauging the effects of ENPs on marine wildlife, the ultimate ecotoxicological impacts of chronic exposure to ENPs should be investigated further using laboratory tests and field studies. We propose the use of model organisms to understand the molecular pathways involved in the mechanisms that may be affected by exposure to ENPs. Sensitive and innovative molecular methods will provide information regarding the hazards of ENPs that may exist in the marine environment. Model organisms that have not been conventionally used for risk assessment and the development of eco-toxicogenomic approaches will result in an improved understanding of the mechanistic modes of action of contaminating ENPs in the marine environment.

摘要

近几十年来,纳米生物技术公司已经生产出了工程纳米颗粒(ENPs),以在农业、电子、生物医学、制造、制药和化妆品等各个领域创造创新产品。这些颗粒的纳米级尺寸可以赋予科学现象和过程新颖且显著改善的物理、化学和生物学特性。随着它们在科学和技术中的应用不断扩展,了解 ENPs 对人类和生态系统可能产生的有害影响变得越来越重要。ENPs 作为一种新型污染物,对海洋生态系统具有生态毒理学影响,因为这些颗粒最终可能会进入水道并进入海洋。最近在无脊椎动物和鱼类中的实验室研究表明,暴露于 ENPs 可能会产生有害影响。由于评估 ENPs 对海洋野生动物影响的数据有限,因此应进一步通过实验室测试和现场研究来调查慢性暴露于 ENPs 的最终生态毒理学影响。我们建议使用模式生物来了解可能受到 ENPs 暴露影响的机制中的分子途径。敏感和创新的分子方法将提供有关海洋环境中可能存在的 ENPs 危害的信息。使用传统上未用于风险评估和生态毒基因组学方法开发的模式生物,将有助于更好地了解海洋环境中污染 ENPs 的作用机制模式。

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