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首页> 外文期刊>ACS nano >Cytotoxic origin of copper(II) oxide nanoparticles: Comparative studies with micron-sized particles, leachate, and metal salts
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Cytotoxic origin of copper(II) oxide nanoparticles: Comparative studies with micron-sized particles, leachate, and metal salts

机译:氧化铜(II)纳米颗粒的细胞毒性来源:与微米级颗粒,浸出液和金属盐的比较研究

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The work investigates the source of toxicity of copper oxide nanoparticles (CuO NPs) with respect to its leaching characteristic and speciation. Complexation-mediated leaching of CuO NPs by amino acids was identified as the source of toxicity toward Escherichia coli, the model microorganism used in the current study. The leached copper-peptide complex induces a multiple-fold increase in intracellular reactive oxygen species generation and reduces the fractions of viable cells, resulting in the overall inhibition of biomass growth. The cytotoxicity of the complex leachate is however different from that of equivalent soluble copper salts (nitrates and sulfates). A pH-dependent copper speciation during the addition of copper salts gives rise to uncoordinated copper ions, which in turn result in greater toxicity and cell lysis, the latter of which was not observed for CuO NPs even at comparable pH. Since leaching did not occur with micrometer-sized CuO, no cytotoxicty effect was observed, thus highlighting the prominence of materials toxicity at the nanoscale.
机译:这项工作研究了氧化铜纳米颗粒(CuO NPs)的浸出特性和形态方面的毒性来源。氨基酸介导的络合介导的CuO NPs的浸出被确定为对大肠杆菌(本研究中使用的模型微生物)的毒性来源。浸出的铜肽复合物诱导细胞内活性氧的生成增加了许多倍,并减少了活细胞的分数,从而导致生物量生长的总体抑制。但是,复合浸出液的细胞毒性与等效的可溶性铜盐(硝酸盐和硫酸盐)不同。在添加铜盐的过程中,pH依赖性的铜形态会导致未配位的铜离子,进而导致更大的毒性和细胞裂解,即使在相当的pH值下,CuO NP也未观察到后者。由于用微米级的CuO不会发生浸出,因此未观察到细胞毒性作用,从而突出了纳米级材料毒性的显着性。

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