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PHYSICAL AND BIOCHEMICAL INTERACTIONS OF SOIL FUNGI WITH ASBESTOS FIBERS

机译:土壤真菌与石棉纤维的物理和生物化学相互作用

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Iron, a structural component of most asbestos, is thought to play a crucial role in asbestos toxicity. Surface iron favors fiber uptake by mammalian cells and promotes the generation of free radicals with consequent DNA and lipid damage. In some cases, chemical removal of iron from asbestos fibers has reduced several cellular responses to asbestos. Since iron represents an essential element for soil microorganisms, many of them have developed mechanisms to scavenge this element from poorly soluble forms. We have investigated the ability of some soil fungi to produce iron chelators capable of extracting iron from crocidolite (blue asbestos). Many of the species/isolates investigated could remove significant amounts of iron from crocidolite fibers, Fusarium oxysporim being the most effective. The fungal responses following exposure to asbestos fibers also have been investigated with morphological and biochemical approaches. In liquid cultures, the fibers were visibly cleared from the suspension because they were tightly bound to the fungal hyphae. Modifications in the fungal protein profiles were observed following exposure to asbestos fibers. By binding the fibers and depriving them of iron, selected species/strains of soil fungi might represent interesting tools for the bioremediation of asbestos-contaminated soils.
机译:铁是大多数石棉的结构成分,据认为在石棉毒性中起关键作用。表面铁有利于哺乳动物细胞吸收纤维,并促进自由基的产生,从而破坏DNA和脂质。在某些情况下,化学去除石棉纤维中的铁已减少了对石棉的几种细胞反应。由于铁是土壤微生物的必需元素,因此许多人已经开发出从难溶形式中清除该元素的机制。我们已经研究了一些土壤真菌产生铁螯合剂的能力,该螯合剂能够从青石棉(蓝色石棉)中提取铁。研究的许多物种/分离物可以从青石棉纤维中去除大量铁,其中尖孢镰刀菌最为有效。还已经通过形态学和生化方法研究了接触石棉纤维后的真菌反应。在液体培养物中,由于纤维与真菌菌丝紧密结合,因此可以从悬浮液中清除纤维。接触石棉纤维后,观察到真菌蛋白谱发生了改变。通过结合纤维并剥夺铁,土壤真菌的选定物种/菌株可能代表了对石棉污染土壤进行生物修复的有趣工具。

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