Università degli Studi di Firenze, Dipartimento di Chimica Ugo Schiff, Via della Lastruccia 3, 50019, Sesto Fiorentino, Fi, Italy.
Università degli Studi di Firenze, Dipartimento di Chimica Ugo Schiff, Via della Lastruccia 3, 50019, Sesto Fiorentino, Fi, Italy.
Anal Chim Acta. 2019 Sep 23;1072:61-74. doi: 10.1016/j.aca.2019.04.035. Epub 2019 May 2.
In the recent years, the number of commercial products containing engineered nanomaterials (ENMs) has increased exponentially. Consequently, the toxicological profile of ENMs on the ecosystems as well as on human health has to be carefully evaluated. Nanotoxicology, an interdisciplinary research area devoted to assessing the hazards associated with ENMs, is expanding rapidly. Many physicochemical techniques and biochemical methodologies have been proposed and are currently used to characterize nanomaterials from a toxicological point of view. Electroanalytical and bioelectrochemical methods can be useful in expanding the repertoire of accessible nanotoxicity-assessment technologies and to accelerate the testing and screening of the toxicological effects of ENMs. These methods can be used for elucidating the toxicological behavior of ENMs at single cell, cell population and whole-organism levels, for in vitro and in vivo measurements, respectively. The aim of this review is to provide an overview on the bioelectrochemical approaches that have been proposed for ENMs toxicity assessment. Furthermore, an overview on cutting-edge electroanalytical devices with a potential impact to this peculiar application is provided.
近年来,含有工程纳米材料 (ENMs) 的商业产品数量呈指数级增长。因此,必须仔细评估 ENMs 对生态系统以及人类健康的毒理学特征。纳米毒理学是一个致力于评估与 ENMs 相关危害的跨学科研究领域,正在迅速发展。许多物理化学技术和生化方法已经被提出并正在用于从毒理学角度来表征纳米材料。电化学和生物电化学方法可以用于扩展可用于纳米毒性评估技术的范围,并加速对 ENMs 毒性的测试和筛选。这些方法可用于阐明 ENMs 在单细胞、细胞群体和整个生物体水平上的毒理学行为,分别用于体外和体内测量。本文的目的是概述已经提出的用于 ENMs 毒性评估的生物电化学方法。此外,还提供了对这一特殊应用具有潜在影响的尖端电分析仪器的概述。