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氧化铁纳米颗粒的细胞与分子毒性。

Cellular and Molecular Toxicity of Iron Oxide Nanoparticles.

机构信息

Department of Psychology, Area of Psychobiology, Universidade da Coruña, DICOMOSA Group, A Coruña, Spain.

Department of Cell and Molecular Biology, Universidade da Coruña, A Coruña, Spain.

出版信息

Adv Exp Med Biol. 2018;1048:199-213. doi: 10.1007/978-3-319-72041-8_12.

Abstract

Iron oxide nanoparticles (ION) have attracted much attention because of their particular physico-chemical properties, including superparamagnetism. These features make them suitable for many purposes and several interesting biomedical applications, such as to increase contrast in magnetic resonance imaging (MRI), as drug delivery systems and as hyperthermia agents. However, they have also shown to be easily accumulated in diverse tissues and induce toxicity at different levels. This chapter reviews the different cellular and molecular effects induced by ION reported from in vitro studies with human and non-human cell lines. Those effects are mainly dependent on ION type and concentration, time of exposure, presence and nature of coating, and cell type evaluated. They include decreases in viability, plasmatic membrane disruption, oxidative damage, mitochondrial alterations, cell cycle impairments, cytoskeleton disruption, cell death, and alterations in cell motility, and in cell integrity. Despite these negative effects, the numerous advantages of ION together with their promising applications in biomedicine, make it necessary to clearly define their toxicity in order to discard potential health risks and to reach optimal benefits of their use.

摘要

氧化铁纳米粒子(ION)因其独特的物理化学性质而备受关注,包括超顺磁性。这些特性使它们适用于许多目的和几种有趣的生物医学应用,例如增加磁共振成像(MRI)的对比度、作为药物输送系统和作为热疗剂。然而,它们也已被证明容易在不同组织中积累,并在不同水平上引起毒性。本章综述了体外用人和非人类细胞系研究报告的 ION 引起的不同细胞和分子效应。这些效应主要取决于 ION 的类型和浓度、暴露时间、存在和性质的涂层以及评估的细胞类型。它们包括活力下降、质膜破裂、氧化损伤、线粒体改变、细胞周期损伤、细胞骨架破坏、细胞死亡以及细胞迁移和完整性的改变。尽管存在这些负面影响,但 ION 的众多优势及其在生物医学中的有前途的应用,使得有必要明确界定其毒性,以排除潜在的健康风险并获得其使用的最佳效益。

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