Iron Nuclearity in Mineral Fibres: Unravelling the Catalytic Activity for Predictive Modelling of Toxicity

Journal of Hazardous Materials(2024)

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摘要
Chronic inflammation induced in vivo by mineral fibres, such as asbestos, is sustained by the cyclic formation of cytotoxic/genotoxic oxidant species that are catalysed by iron. High catalytic activity is observed when iron atoms are isolated in the crystal lattice (nuclearity=1), whereas the catalytic activity is expected to be reduced or null when iron forms clusters of higher nuclearity.This study presents a novel approach for systematically measuring iron nuclearity across a large range of iron-containing standards and mineral fibres of social and economic importance, and for quantitatively assessing the relation between nuclearity and toxicity. The multivariate curve resolution (MCR) empirical approach and density functional theory (DFT) calculations were applied to the analysis of UV-Vis spectra to obtain information on the nature of iron and nuclearity.This approach led to the determination of the nuclearity of selected mineral fibres which was subsequently used to calculate a toxicity-related index. High nuclearity-related toxicity was estimated for chrysotile samples, fibrous glaucophane, asbestos tremolite, and fibrous wollastonite. Intermediate values of toxicity, corresponding to a mean nuclearity of 2, were assigned to actinolite asbestos, amosite, and crocidolite. Finally, a low nuclearity-related toxicity parameter, corresponding to an iron-cluster with a lower catalytic power to produce oxidants, was assigned to asbestos anthophyllite. Environmental Implications The environmental implications of this work regard the understanding of the role of iron present in mineral fibres in inducing toxic (acute and chronic) and pathogenic effects in vivo via production of oxidant species. The method proposed here is aimed at determining the chemical environment and nuclearity of iron in mineral fibres (asbestos and non-asbestos species) as a factor to predict and classify their toxicity/carcinogenicity potential.
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关键词
Mineral fibres,iron nuclearity,UV-Vis spectroscopy,ab initio calculations,Multivariate Curve Resolution
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