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金属纳米颗粒在体外对内皮细胞的氧化应激和促炎反应表现出矛盾的影响。

Metallic nanoparticles exhibit paradoxical effects on oxidative stress and pro-inflammatory response in endothelial cells in vitro.

作者信息

Peters K, Unger R E, Gatti A M, Sabbioni E, Tsaryk R, Kirkpatrick C J

机构信息

Institute of Pathology, Johannes Gutenberg University, Mainz, Germany.

出版信息

Int J Immunopathol Pharmacol. 2007 Oct-Dec;20(4):685-95. doi: 10.1177/039463200702000404.

Abstract

Particulate matter is associated with different human diseases affecting organs such as the respiratory and cardiovascular systems. Very small particles (nanoparticles) have been shown to be rapidly internalized into the body. Since the sites of internalization and the location of the detected particles are often far apart, a distribution via the blood stream must have occurred. Thus, endothelial cells, which line the inner surface of blood vessels, must have had direct contact with the particles. In this study we tested the effects of metallic nanoparticles (Co and Ni) on oxidative stress and pro-inflammatory response in human endothelial cells in vitro. Exposure to both nanoparticle types led to a concentration-dependent cytotoxic effect. However, the effects on oxidative stress and pro-inflammatory response differed dramatically. Due to the nanoparticle-induced effects, a comparison between metallic nanoparticle- and metal ion-treatment with the corresponding ions was made. Again, divergent effects of nanoparticles compared with the ions were observed, thus indicating differences in the signaling pathways induced by these compounds. These paradoxical responses to different metallic nanoparticles and ions demonstrate the complexity of nanoparticle-induced effects and suggest the need to design new strategies for nanoparticle toxicology.

摘要

颗粒物与影响诸如呼吸系统和心血管系统等器官的不同人类疾病相关。已表明非常小的颗粒(纳米颗粒)会迅速被人体吸收。由于吸收部位和检测到颗粒的位置通常相距甚远,必定发生了通过血流的分布。因此,排列在血管内表面的内皮细胞必定与颗粒有直接接触。在本研究中,我们在体外测试了金属纳米颗粒(钴和镍)对人内皮细胞氧化应激和促炎反应的影响。暴露于这两种类型的纳米颗粒均导致浓度依赖性细胞毒性作用。然而,对氧化应激和促炎反应的影响差异极大。由于纳米颗粒诱导的效应,对金属纳米颗粒处理和用相应离子进行的金属离子处理进行了比较。同样,观察到纳米颗粒与离子相比有不同的效应,从而表明这些化合物诱导的信号通路存在差异。对不同金属纳米颗粒和离子的这些矛盾反应证明了纳米颗粒诱导效应的复杂性,并表明需要设计新的纳米颗粒毒理学策略。

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