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Cytotoxicity Induction by the Oxidative Reactivity of Nanoparticles Revealed by a Combinatorial GNP Library with Diverse Redox Properties

机译:由多种氧化还原性能的组合GNP文库显示的纳米颗粒的氧化反应性细胞毒性诱导

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摘要

It is crucial to establish relationship between nanoparticle structures (or properties) and nanotoxicity. Previous investigations have shown that a nanoparticle’s size, shape, surface and core materials all impact its toxicity. However, the relationship between the redox property of nanoparticles and their toxicity has not been established when all other nanoparticle properties are identical. Here, by synthesizing an 80-membered combinatorial gold nanoparticle (GNP) library with diverse redox properties, we systematically explored this causal relationship. The compelling results revealed that the oxidative reactivity of GNPs, rather than their other physicochemical properties, directly caused cytotoxicity via induction of cellular oxidative stress. Our results show that the redox diversity of nanoparticles is regulated by GNPs modified with redox reactive ligands.
机译:在纳米粒子结构(或性质)和纳米毒性之间建立关系至关重要。以前的研究表明,纳米粒子的尺寸,形状,表面和核心材料都影响其毒性。然而,当所有其他纳米颗粒性质相同时,纳米颗粒的氧化铈性质与其毒性之间的关系尚未建立。这里,通过合成具有多样化的氧化还原性能的80元组合金纳米粒子(GNP)文库,我们系统地探讨了这种因果关系。令人信服的结果表明,通过诱导细胞氧化应激直接导致细胞毒性而不是其它物理化学性质的GNPS而不是其它物理化学性质的氧化反应性。我们的研究结果表明,纳米颗粒的氧化还原多样性由用氧化还原反应性配体改性的GNPS调节。

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