Pycke Benny F G, Benn Troy M, Herckes Pierre, Westerhoff Paul, Halden Rolf U
Center for Environmental Biotechnology, The Biodesign Institute at Arizona State University, Tempe, AZ 85287, USA.
Trends Analyt Chem. 2011 Jan 1;30(1):44-57. doi: 10.1016/j.trac.2010.08.005.
Fullerenes are sphere-like molecules with unique physico-chemical properties, which render them of particular interest in biomedical research, consumer products and industrial applications. Human and environmental exposure to fullerenes is not a new phenomenon, due to a long history of hydrocarbon-combustion sources, and will only increase in the future, as incorporation of fullerenes into consumer products becomes more widespread for use as anti-aging, anti-bacterial or anti-apoptotic agents.An essential step in the determination of biological effects of fullerenes (and their surface-functionalized derivatives) is establishment of exposure-assessment techniques. However, in ecotoxicological studies, quantification of fullerenes is performed infrequently because robust, uniformly applicable analytical approaches have yet to be identified, due to the wide variety of sample types. Moreover, the unique physico-chemistry of fullerenes in aqueous matrices requires reassessment of conventional analytical approaches, especially in more complex biological matrices (e.g., urine, blood, plasma, milk, and tissue).Here, we present a review of current analytical approaches for the quantification of fullerenes and propose a consensus approach for determination of these nanomaterials in a variety of environmental and biological matrices.
富勒烯是具有独特物理化学性质的球状分子,这使得它们在生物医学研究、消费品和工业应用中备受关注。由于碳氢化合物燃烧源的历史悠久,人类和环境接触富勒烯并非新现象,而且随着富勒烯作为抗衰老、抗菌或抗凋亡剂在消费品中的应用越来越广泛,未来这种接触还会增加。确定富勒烯(及其表面功能化衍生物)生物效应的一个关键步骤是建立暴露评估技术。然而,在生态毒理学研究中,由于样品类型繁多,尚未找到稳健、普遍适用的分析方法,因此对富勒烯的定量分析并不常见。此外,富勒烯在水性基质中的独特物理化学性质需要重新评估传统分析方法,尤其是在更复杂的生物基质(如尿液、血液、血浆、乳汁和组织)中。在此,我们综述了当前富勒烯定量分析的方法,并提出了一种在各种环境和生物基质中测定这些纳米材料的共识方法。