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镍纳米线在肺部和腹腔中的长度依赖性致病效应。

Length-dependent pathogenic effects of nickel nanowires in the lungs and the peritoneal cavity.

机构信息

Safenano, Institute of Occupational Medicine, Riccarton, Edinburgh, UK.

出版信息

Nanotoxicology. 2012 Dec;6:899-911. doi: 10.3109/17435390.2011.626535. Epub 2011 Oct 24.

Abstract

The use of fibre-shaped nanomaterials in commercial applications has met with concern that they could cause health effects similar to those seen with pathogenic fibres such as certain forms of asbestos. Of the attributes which form the fibre pathogenicity paradigm, fibre length is thought to be a critical factor in determining fibre toxicity. We have previously shown that carbon nanotubes display such length-dependent pathogenicity but it remains unclear if other forms of fibrous nanomaterials conform to the fibre pathogenicity paradigm. As such, our aim is to determine the generality of this hypothesis by asking whether a radically different form of fibrous nanomaterial, nickel nanowires, show length-dependent pathogenicity. Our results indicate that nickel nanowires synthesised to be predominantly long (>20 μm) show the ability to elicit strong inflammation in the mouse peritoneal model in a dose-dependent manner; inflammation or fibrosis was not seen with the short (<5 μm) nanowires. This length-dependent response was also seen after lung aspiration and within a macrophage in vitro model adding further weight to the contention that fibre length is an important driver of hazard potential. This may have important implications when considering the hazard posed by fibrous nanomaterials and their regulation in workplaces.

摘要

纤维状纳米材料在商业应用中的使用引起了人们的关注,因为它们可能会引起类似于某些形式的石棉等致病纤维所引起的健康影响。在构成纤维致病性范例的属性中,纤维长度被认为是确定纤维毒性的关键因素。我们之前已经表明,碳纳米管表现出这种长度依赖性的致病性,但其他形式的纤维状纳米材料是否符合纤维致病性范例尚不清楚。因此,我们的目的是通过询问一种截然不同的纤维状纳米材料,镍纳米线,是否表现出长度依赖性的致病性,来确定这一假设的普遍性。我们的结果表明,主要为长 (>20 μm) 的镍纳米线具有在小鼠腹膜模型中以剂量依赖方式引发强烈炎症的能力;而短 (<5 μm) 的纳米线则没有引起炎症或纤维化。这种长度依赖性反应也在肺吸入和体外巨噬细胞模型中观察到,这进一步证明了纤维长度是危害潜力的重要驱动因素。当考虑纤维状纳米材料在工作场所所带来的危害及其监管时,这可能具有重要意义。

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