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Biotests and Biosensors for Ecotoxicology of Metal Oxide Nanoparticles: A Minireview

机译:金属氧化物纳米颗粒生态毒理学的生物测试和生物传感器:综述

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摘要

Nanotechnologies have become a significant priority worldwide. Several manufactured nanoparticles - particles with one dimension less than 100 nm - are increasingly used in consumer products. At nanosize range, the properties of materials differ substantially from bulk materials of the same composition, mostly due to the increased specific surface area and reactivity, which may lead to increased bioavailability and toxicity. Thus, for the assessment of sustainability of nanotechnologies, hazards of manufactured nanoparticles have to be studied. Despite all the above mentioned, the data on the potential environmental effects of nanoparticles are rare. This mini-review is summarizing the emerging information on different aspects of ecotoxicological hazard of metal oxide nanoparticles, focusing on TiO2, ZnO and CuO. Various biotests that have been successfully used for evaluation of ecotoxic properties of pollutants to invertebrates, algae and bacteria and now increasingly applied for evaluation of hazard of nanoparticles at different levels of the aquatic food-web are discussed. Knowing the benefits and potential drawbacks of these systems, a suite of tests for evaluation of environmental hazard of nanoparticles is proposed. Special attention is paid to the influence of particle solubility and to recombinant metal-sensing bacteria as powerful tools for quantification of metal bioavailability. Using recombinant metal-specific bacterial biosensors and multitrophic ecotoxicity assays in tandem will create new scientific knowledge on the respective role of ionic species and of particles in toxicity of metal oxide nanoparticles.
机译:纳米技术已成为世界范围内的重要优先事项。几种制造的纳米粒子-一维尺寸小于100 nm的粒子-越来越多地用于消费产品。在纳米尺寸范围内,材料的性能与相同组成的块状材料有很大不同,主要是由于比表面积和反应性增加,这可能导致生物利用度和毒性增加。因此,为了评估纳米技术的可持续性,必须研究人造纳米颗粒的危害。尽管有上述所有内容,但有关纳米颗粒潜在环境影响的数据很少。这份小型综述总结了有关金属氧化物纳米颗粒生态毒理危害不同方面的新兴信息,重点是TiO2,ZnO和CuO。讨论了已成功用于评估污染物对无脊椎动物,藻类和细菌的生态毒性的各种生物测试,现在正越来越多地用于评估水生食物网中不同水平的纳米颗粒的危害性。了解了这些系统的优点和潜在缺点,提出了一套评估纳米颗粒环境危害的测试方法。特别注意颗粒溶解度的影响和作为金属生物利用度定量分析的有力工具的重组金属感测细菌。结合使用重组金属特异性细菌生物传感器和多营养生态毒性试验,将创造有关离子种类和颗粒在金属氧化物纳米颗粒毒性中各自作用的新科学知识。

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