首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >New insights into the toxicity of mineral fibres: A combined in situ synchrotron mu-XRD and HR-TEM study of chrysotile, crocidolite, and erionite fibres found in the tissues of Sprague-Dawley rats
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New insights into the toxicity of mineral fibres: A combined in situ synchrotron mu-XRD and HR-TEM study of chrysotile, crocidolite, and erionite fibres found in the tissues of Sprague-Dawley rats

机译:新的见解矿物纤维的毒性:一种在Sprague-Dawley大鼠组织中发现的菊粉,番荔枝纤维纤维的原位同步和HR-TEM研究

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Along the line of the recent research topic aimed at understanding the in vivo activity of mineral fibres and their mechanisms of toxicity, this work describes the morpho-chemical characteristics of the mineral fibres found in the tissues of Sprague-Dawley rats subjected to intraperitoneal/intrapleural injection of UICC chrysotile, UICC crocidolite and erionite-Na from Nevada (USA). The fibres are studied with in situ synchrotron powder diffraction and high resolution transmission electron microscopy to improve our understanding of the mechanisms of toxicity of these mineral fibres. In contact with the tissues of the rats, chrysotile fibres are prone to dissolve, with leaching of Mg and production of a silica rich relict. On the other hand, crocidolite and erionite-Na fibres are stable even for very long contact times within the tissues of the rats, showing just a thin dissolution amorphous halo. These findings support the model of a lower biopersistence of chrysotile with respect to crocidolite and erionite-Na but the formation of a silica-rich fibrous residue after the pseudo-amorphization of chrysotile may justify a higher cytotoxic potential and intense inflammatory activity of chrysotile in the short term in contact with the lung tissues.
机译:沿着最近的研究课题旨在了解矿物纤维的体内活动及其毒性机制,这项工作描述了在腹膜内/闭塞术中的Sprague-Dawley大鼠组织中发现的矿物纤维的矿物纤维的态化特征注射UICC Chrysotile,UICC Crocidolite和来自内华达州(美国)的纤维岩。使用原位同步粉末衍射和高分辨率透射电子显微镜研究纤维,以改善我们对这些矿物纤维的毒性机制的理解。在与大鼠组织接触的情况下,菊花纤维易于溶解,浸出Mg和富含二氧化硅的浓度。另一方面,即使在大鼠组织内的非常长的接触时间,番茄和二极管 - 纳米纤维也是稳定的,仅显示薄溶解无定形卤素。这些发现支持克罗西岩和Erionite-Na的菊花和Erionite-Na的较低生物骨骼的模型,但在菊花的伪杂体化后形成二氧化硅的纤维残基可以证明在菊花的较高的细胞毒性潜力和强烈的炎症活性。与肺组织接触的短期。

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