Kovacic Peter, Somanathan Ratnasamy
Department of Chemistry, San Diego State University, San Diego CA 92182, USA.
J Nanosci Nanotechnol. 2010 Dec;10(12):7919-30. doi: 10.1166/jnn.2010.3028.
In recent years, nanoparticles have received increasing attention in research and technology, including a variety of practical applications. The bioactivity appears to be related to the small particle size, in addition to inherent chemical activity as electron transfer (ET) agents, generators of reactive oxygen species (ROS) with subsequent oxidative stress (OS) and as antioxidants (AOs). The mechanism of toxicity, therapeutic action and AO property is addressed based on the ET-ROS-OS approach. There are several main classes of ET functionalities, namely, quinones (or phenolic precursors), metal compounds, aromatic nitro compounds (or reduction products) and imine or iminium species. Most of the nanospecies fall within the metal category. Cell signaling is also discussed. This review is apparently the first to address the various bioactivities based on the ET-ROS-OS-AO framework.
近年来,纳米颗粒在研究和技术领域受到越来越多的关注,包括各种实际应用。除了作为电子转移(ET)剂、活性氧(ROS)生成剂并随后引发氧化应激(OS)以及作为抗氧化剂(AO)所具有的固有化学活性外,其生物活性似乎还与小颗粒尺寸有关。基于ET-ROS-OS方法探讨了毒性、治疗作用和AO特性的机制。ET功能主要有几大类,即醌类(或酚类前体)、金属化合物、芳香族硝基化合物(或还原产物)以及亚胺或亚胺鎓类。大多数纳米物种属于金属类别。还讨论了细胞信号传导。本综述显然是首次基于ET-ROS-OS-AO框架探讨各种生物活性。