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Ecotoxicological impact of engineered nanomaterials in bivalve molluscs: An overview

机译:工程纳米材料在双壳贝类软体动物中的生态毒理学影响:概述

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The increasing production and application of engineered nanomaterials (ENMs) in consumer products over the past decade will inevitably lead to their release into aquatic systems and thereby cause the exposure to aquatic organisms, resulting in growing environmental and human health concern. Since bivalves are widely used in the monitoring of aquatic pollution, the aim of this review was to compile and analyse data concerning the ecotoxicity of ENMs using bivalve molluscs. The state of the art regarding the experimental approach, characterization, behaviour, fate, bioaccumulation, tissue and subcellular distribution and mechanisms of toxicity of ENMs in marine and freshwater bivalve molluscs is summarized to achieve a new insight into the mode of action of these nanoparticles in invertebrate organisms. This review shows that the studies about the toxic effects of ENMs in bivalves were conducted mainly with seawater species compared to freshwater ones and that the genus Mytilus is the main taxa used as a model system. There is no standardization of experimental approaches for toxicity testing and reviewed data indicate the need to develop standard protocols for ENMs ecotoxicological testing. In general, the main organ for ENM accumulation is the digestive gland and their cellular fate differs according to nanospecific properties, experimental conditions and bivalve species. Endosomal-lysosomal system and mitochondria are the major cellular targets of ENMs. Metal based ENMs mode of action is related mainly to the dissolution and/or release of the chemical component of the particle inducing immunotoxicity, oxidative stress and cellular injury to proteins, membrane and DNA damage. This review indicates that the aquatic environment is the potential ultimate fate for ENMs and confirms that bivalve molluscs are key model species for monitoring aquatic pollution by ENMs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的十年中,消费类产品中工程纳米材料(ENM)的不断增加的生产和应用将不可避免地导致其释放到水生系统中,从而导致其暴露于水生生物中,从而引起对环境和人类健康的日益关注。由于双壳类动物广泛用于水生污染的监测,因此本综述的目的是收集和分析有关使用双壳类软体动物的ENM的生态毒性的数据。总结了ENM在海洋和淡水双壳贝类软体动物中的实验方法,特征,行为,结局,生物蓄积,组织和亚细胞分布以及毒性机理的最新技术,以期获得对这些纳米颗粒在海洋中的作用方式的新见解。无脊椎动物。这项审查表明,关于双壳类动物中ENM的毒性作用的研究主要是与淡水物种相比,是用海水物种进行的,而Mytilus属是模型系统的主要分类单元。目前尚无用于毒性测试的实验方法的标准化,并且经过审查的数据表明需要为ENM的生态毒理学测试制定标准协议。通常,ENM积累的主要器官是消化腺,其细胞命运根据纳米特性,实验条件和双壳类而有所不同。内体溶酶体系统和线粒体是ENM的主要细胞靶标。金属基ENM的作用方式主要与颗粒的化学成分的溶解和/或释放有关,从而引起免疫毒性,氧化应激和细胞对蛋白质,膜和DNA的损伤。这项审查表明,水生环境是ENMs的潜在最终命运,并确认双壳软体动物是监测ENMs水生污染的关键模式物种。 (C)2015 Elsevier Ltd.保留所有权利。

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