Toxicology of Engineered Metal Nanoparticles

G. Bernardini, A. Cattaneo, E. Sabbioni, M. Gioacchino, M. Chiriva-Internati, R. Gornati
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引用次数: 9

Abstract

The wide interest in nanoscience and nanotechnology leads to an ever-increasing presence of nanomaterials in the environment that in turn may be associated with potentially new and largely undefined risks for the human health and for the environment. We reviewed the experimental data on the ecotoxicology of engineered nanometals following their intentional, unavoidable or accidental dispersion in the environment, together with the benefits of their use for bioremediation. Two potential threats for the human health, the carcinogenic and allergenic risks, have been subsequently evaluated in in vitro and in vivo systems. Lung and skin inflammation and possibly mutagenesis are the mainly documented effects, but the available data remain scarce and fragmentary, and toxicity is shared by both metallic and non-metallic nanomaterials. The conclusive paragraph discusses the use of nanometals in traditional medicine and the development of metal based nanodrugs. A careful evaluation of risks and benefits is mandatory even in this case. Keywords: allergy; cancer; ecotoxicology; magnetic nanoparticles; nanomedicine; nanotoxicology
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工程金属纳米颗粒毒理学
对纳米科学和纳米技术的广泛兴趣导致纳米材料在环境中的存在不断增加,这反过来又可能与人类健康和环境的潜在新风险有关,这些风险在很大程度上是未确定的。我们回顾了工程纳米金属在环境中有意、不可避免或意外分散后的生态毒理学实验数据,以及它们用于生物修复的好处。对人类健康的两种潜在威胁,致癌和致敏风险,随后在体外和体内系统中进行了评估。肺和皮肤炎症以及可能的突变是主要记录的影响,但可用的数据仍然稀缺和不完整,并且金属和非金属纳米材料具有相同的毒性。最后一段讨论了纳米金属在传统医学中的应用以及金属基纳米药物的发展。即使在这种情况下,也必须仔细评估风险和收益。关键词:过敏;癌症;生态毒理学;磁性纳米颗粒
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