纳米材料
化学
活性氧
背景(考古学)
激进的
活性氮物种
超氧化物歧化酶
氧化铈
纳米毒理学
超氧化物
氧化还原
羟基自由基
生物物理学
纳米技术
抗氧化剂
生物化学
氧化物
毒性
材料科学
有机化学
生物
酶
古生物学
作者
Ajay Karakoti,Ajayan Vinu,Janet M. Dowding,Sudipta Seal,William T. Self
摘要
Reactive oxygen and nitrogen species play a critical role in many degenerative diseases and in aging. Nanomaterials, especially modified fullerenes and cerium oxide nanoparticles, have been shown to effectively protect mammalian cells against damage caused by increased reactive oxygen or nitrogen species, likely through their direct reaction with superoxide radical, since each of these materials has been shown to act as effective superoxide dismutase mimetics in vitro. This critical review discusses the chemistry of these nanomaterials and the context in which their radical scavenging activities have been studied in biological model systems. Current studies are focused on determining the uptake, metabolism, distribution, toxicity and fate of these nanomaterials in cell and animal model systems. Ultimately if shown to be safe, these nanomaterials have the potential to be used to reduce the damaging effects of radicals in biological systems (101 references).
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