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Carbon in intimate contact with quartz reduces the biological activity of crystalline silica dusts

机译:与石英紧密接触的碳会降低结晶二氧化硅粉尘的生物活性

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摘要

To evaluate the effect of carbonaceous materials on the pathogenic activity of quartz dusts, mixtures of carbon soot (1 and 10%) and quartz (Min-U-Sil) were prepared and then milled so to attain an intimate association of carbon and the quartz surface. Both cellular and cell-free tests show that carbon associated to quartz completely inhibits the typical free radical generation of quartz dusts (through Fenton activity and homolytic cleavage of a C-H bond) and suppresses the oxidative stress and inflammation induced by quartz alone on MH-S murine macrophage cells (lipid peroxidation, nitric oxide release, and tumor necrosis factor-α synthesis). The cytotoxic response to quartz is also largely reduced. An extremely pure quartz milled with 10% of soot showed inactivating effects on the adverse reactions to quartz similar to Min-U-Sil quartz. None of these effects takes place when the same experiments are carried out with mechanically mixed samples, which suggests that carbon acts not just as a radical quencher but because of its association to the quartz surface.
机译:为了评估含碳物质对石英粉尘致病性的影响,制备了碳黑(1%和10%)和石英(Min-U-Sil)的混合物,然后进行研磨,以使碳和石英紧密结合。表面。细胞和无细胞试验均表明,与石英相关的碳完全抑制了石英粉尘的典型自由基生成(通过Fenton活性和CH键的均相裂解),并抑制了仅由石英在MH-S上引起的氧化应激和炎症。鼠巨噬细胞(脂质过氧化,一氧化氮释放和肿瘤坏死因子-α合成)。对石英的细胞毒性反应也大大降低。与Min-U-Sil石英相似,用10%烟灰研磨的极纯石英对石英的不良反应表现出失活作用。当对机械混合的样品进行相同的实验时,这些影响都不会发生,这表明碳不仅起自由基淬灭剂的作用,还因为它与石英表面缔合。

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