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Surface reactivity of amphibole asbestos: a comparison between crocidolite and tremolite

机译:闪石石棉的表面反应性:青石棉和透闪石的比较

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摘要

Among asbestos minerals, fibrous riebeckite (crocidolite) and tremolite share the amphibole structure but largely differ in terms of their iron content and oxidation state. In asbestos toxicology, iron-generated free radicals are largely held as one of the causes of asbestos malignant effect. With the aim of clarifying i) the relationship between Fe occurrence and asbestos surface reactivity, and ii) how free-radical generation is modulated by surface modifications of the minerals, UICC crocidolite and fibrous tremolite from Maryland were leached from 1 day to 1 month in an oxidative medium buffered at pH 7.4 to induce redox alterations and surface rearrangements that may occur in body fluids. Structural and chemical modifications and free radical generation were monitored by HR-TEM/EDS and spin trapping/EPR spectroscopy, respectively. Free radical yield resulted to be dependent on few specific Fe2+ and Fe3+ surface sites rather than total Fe content. The evolution of reactivity with time highlighted that low-coordinated Fe ions primarily contribute to the overall reactivity of the fibre. Current findings contribute to explain the causes of the severe asbestos-induced oxidative stress at molecular level also for iron-poor amphiboles, and demonstrate that asbestos have a sustained surface radical activity even when highly altered by oxidative leaching.
机译:在石棉矿物中,纤维状的里贝石(crocidolite)和透闪石具有闪石结构,但在铁含量和氧化态方面存在很大差异。在石棉毒理学中,铁生成的自由基在很大程度上被视为石棉恶性作用的原因之一。为了澄清i)铁的出现与石棉表面反应性之间的关系,以及ii)矿物的表面改性如何调节自由基的产生,从马里兰州的UICC青石棉和纤维透闪石浸出了1天至1个月。缓冲在pH 7.4的氧化介质,以引起体液中可能发生的氧化还原变化和表面重排。通过HR-TEM / EDS和自旋阱/ EPR光谱仪分别监测结构和化学修饰以及自由基的产生。自由基的产量取决于很少的特定Fe 2 + 和Fe 3 + 表面部位,而不是总Fe含量。反应性随时间的演变突出表明,低配位的Fe离子主要有助于纤维的总体反应性。目前的发现有助于在贫铁的安非他命在分子水平上解释石棉引起的严重氧化应激的原因,并证明石棉即使在被氧化浸出高度改变的情况下仍具有持续的表面自由基活性。

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