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首页> 外文期刊>Analytical and bioanalytical chemistry >Iron topochemistry and surface reactivity of amphibole asbestos: Relations with in vitro toxicity
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Iron topochemistry and surface reactivity of amphibole asbestos: Relations with in vitro toxicity

机译:闪石石棉的铁拓扑化学和表面反应性:与体外毒性的关系

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摘要

Chemical reactivity of asbestos tremolite from Italy and USA localities and Union Internationale Contre le Cancer (UICC) crocidolite was studied in relation to Fe content, oxidation state, and structural coordination. Direct correlation between amount of Fe ~(2+) at the exposed M(1) and M(2) sites of the amphibole structure and fiber chemical reactivity was established. The in vitro toxicity of the same samples was investigated on human alveolar A549 cell line. Relationship between crystal-chemical features and cell toxicity is not straightforward. UICC crocidolite has Fe content and chemical reactivity largely higher than that of tremolite samples, but all show comparable in vitro toxic potential. Results obtained evidenced that Fe topochemistry is not a primary factor for induced cell toxicity, though it accounts for asbestos chemical reactivity (and possibly genotoxicity).
机译:研究了来自意大利和美国的石棉透闪石和国际抗癌联盟(UICC)的青石棉的化学反应性与铁含量,氧化态和结构配位的关系。建立了在闪石结构的暴露M(1)和M(2)处的Fe〜(2+)量与纤维化学反应性之间的直接关系。研究了相同样品在人肺泡A549细胞系上的体外毒性。晶体化学特征与细胞毒性之间的关系并不直接。 UICC青石棉的Fe含量和化学反应性大大高于透闪石样品,但均显示出可比的体外毒性潜力。获得的结果证明,铁拓扑化学不是引起细胞毒性的主要因素,尽管它解释了石棉的化学反应性(可能还有基因毒性)。

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