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Molecular and Cellular Toxicology of Nanomaterials with Related to Aquatic Organisms

机译:纳米材料与水生生物相关的分子和细胞毒理学

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摘要

The increasing application of nanomaterials both in commercial and industrial products has led their accumulation in the aquatic ecosystem. The rapid development and large scale production of nanomaterials in the last few decades have stimulated concerns regarding their potential environmental health risks on aquatic biota. Inorganic nanoparticles, due to their unique properties and associated material characteristics resulted in toxicity of these nanomaterials in aquatic organisms. Understanding their novel properties at nanoscale has established to be a significant aspect of their toxicity. Unique properties such as size, surface area, surface coating, surface charge, aggregation of particles and dissolution may affect cellular uptake, molecular response, in vivo reactivity and delivery across tissues of living organism. Already lot of research in the past three or four decades within the nano-ecotoxicology field had been carried out. However, there is not any standard technique yet to assess toxicity of nanoparticles (NPs) on different biological systems such as reproductive, respiratory, nervous, gastrointestinal systems, and development stages of aquatic organisms. Specific toxicological techniques and quantification of nanoparticles are vital to establish regulations to control their impact on the aquatic organism and their release in the aquatic environment. The main aim of this chapter is to critically evaluate the current literature on the toxicity of nanomaterials on aquatic organism.
机译:纳米材料在商业和工业产品中的应用越来越多地导致了它们在水生生态系统中的积累。在过去的几十年里,纳米材料的快速发展和大规模产量促使对水生生物群潜在环境健康风险的担忧。无机纳米颗粒,由于它们独特的性质和相关材料特性导致这些纳米材料在水生生物中的毒性。了解纳米尺度的新颖性质已经建立为毒性的重要方面。独特的性质,如尺寸,表面积,表面涂层,表面电荷,颗粒聚集和溶解可能会影响细胞摄取,分子反应,体内反应性和在生物体组织中递送。已经进行了纳米生态毒理学领域过去三十年或四十年的已经进行了很多研究。然而,没有任何标准技术尚未评估纳米颗粒(NPS)对不同生物系统的毒性,例如生殖,呼吸道,神经,胃肠系统和水生生物的发展阶段。纳米颗粒的特异性毒理学和定量是建立规定,以控制其对水生环境影响的影响及其在水生环境中的释放。本章的主要目的是批判性地评估当前文献对水生生物纳米材料的毒性。

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