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富勒烯及其衍生物的毒性研究。

Toxicity studies of fullerenes and derivatives.

作者信息

Kolosnjaj Jelena, Szwarc Henri, Moussa Fathi

机构信息

UMR CNRS 8612, Faculté de Pharmacie, Université Paris-Sud 11, Châtenay-Malabry, France.

出版信息

Adv Exp Med Biol. 2007;620:168-80. doi: 10.1007/978-0-387-76713-0_13.

Abstract

Due to their unique properties, fullerenes, a model of carbon-based nanoparticles, have attracted considerable interest in many fields of research including material science and biomedical applications. The potential and the growing use of fullerenes and their mass production have raised several questions about their safety and environmental impact. Available data clearly shows that pristine C60 has no acute or sub-acute toxicity in a large variety of living organisms, from bacteria and fungal to human leukocytes, and also in drosophila, mice, rats and guinea pigs. In contrast to chemically--either covalently or noncovalently--modified fullerenes, some C60 derivatives can be highly toxic. Furthermore, under light exposure, C60 is an efficient singlet oxygen sensitizer. Therefore, if pristine C60 is absolutely nontoxic under dark conditions, this is not the case under UV-Visible irradiation and in the presence of O2 where ffullerene solutions can be highly toxic through 1O2 formation. This chapter offers a general review of the studies on the toxicity of [60]fullerene or C60, the most abundant fullerene, and its derivatives.

摘要

由于其独特的性质,作为碳基纳米颗粒模型的富勒烯在包括材料科学和生物医学应用在内的许多研究领域引起了相当大的兴趣。富勒烯的潜力、日益广泛的应用及其大规模生产引发了一些关于其安全性和环境影响的问题。现有数据清楚地表明,原始的C60在从细菌、真菌到人类白细胞等多种生物体中,以及在果蝇、小鼠、大鼠和豚鼠中都没有急性或亚急性毒性。与化学修饰(无论是共价修饰还是非共价修饰)的富勒烯不同,一些C60衍生物可能具有高毒性。此外,在光照下,C60是一种高效的单线态氧敏化剂。因此,如果原始的C60在黑暗条件下绝对无毒,那么在紫外可见辐射下且存在O2的情况下就并非如此,此时富勒烯溶液可通过生成1O2而具有高毒性。本章对关于[60]富勒烯或C60(最丰富的富勒烯)及其衍生物毒性的研究进行了综述。

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