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Nanomaterials in the Environment: From Materials to High-Throughput Screening to Organisms

机译:环境中的纳米材料:从材料到高通量筛选再到生物

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摘要

One of the challenges in the field of nanotechnology is environmental health and safety (EHS), including consideration of the properties of engineered nanomaterials (ENMs) that could pose dangers to the environment. Progress in the field of nanomaterial development and nanotoxicology was presented at the International Conference on the Environmental Implications of Nanotechnology at the California NanoSystems Institute (CNSI) on the UCLA campus on May 11?14, 2010. This event was cohosted by the University of California Center for the Environmental Implications of Nanotechnology (UC CEIN) and the Center for the Environmental Implications of NanoTechnology (CEINT) based at Duke University. Participants included scientists and scholars from various backgrounds, including chemistry, biology, engineering, nanomaterial science, toxicology, ecology, mathematics, sociology, and policy makers. The topics of discussion included safety evaluation of ENMs from an environmental perspective, nanotoxicology, ecotoxicology, safe design of ENMs, environmental risk assessment, public perception of nanotechnology, application of ENMs in consumer products, and many more. The UC CEIN presented data on their predictive toxicological approach to the assessment of ENM libraries, which were designed and synthesized to develop an understanding of the material properties that could lead to hazard generation at the cellular and organismal levels in the environment. This article will focus on the first metal oxide ENM library that was introduced to harmonize research activities in the UC CEIN, with particular emphasis on the safety assessment of ZnO on cells and organisms. Methods of decreasing the observed toxic effects will also be discussed as an integral component of the UC CEIN’s activity in developing safer nanomaterials to lessen their environmental impacts.
机译:纳米技术领域的挑战之一是环境健康与安全(EHS),包括考虑可能对环境构成危害的工程纳米材料(ENM)的特性。纳米材料开发和纳米毒理学领域的进展已于2010年5月11日至14日在加州大学洛杉矶分校校园内的加利福尼亚纳米系统研究所(CNSI)举行的纳米技术对环境的影响国际会议上进行了介绍。设在杜克大学的纳米技术的环境影响中心(UC CEIN)和纳米技术的环境影响中心(CEINT)。参与者包括来自不同背景的科学家和学者,包括化学,生物学,工程学,纳米材料科学,毒理学,生态学,数学,社会学和政策制定者。讨论的主题包括从环境角度对ENM进行安全性评估,纳米毒理学,生态毒理学,ENM的安全设计,环境风险评估,公众对纳米技术的认识,ENM在消费产品中的应用等。 UC CEIN提供了有关评估ENM文库的预测毒理学方法的数据,这些数据的设计和合成旨在加深对可能导致环境中细胞和有机体产生危害的物质特性的理解。本文将重点介绍为协调UC CEIN中的研究活动而引入的第一个金属氧化物ENM库,尤其着重于ZnO对细胞和生物体的安全性评估。 UC CEIN在开发更安全的纳米材料以减轻其环境影响方面的活动的组成部分,还将讨论减少观察到的毒性作用的方法。

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