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Intestinal toxicity evaluation of TiO2 degraded surface-treatednanoparticles: a combined physico-chemical and toxicogenomics approach in caco-2cells

机译:TiO2降解表面处理的肠道毒性评价纳米颗粒:caco-2中的物理化学和毒理基因组学相结合的方法细胞

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摘要

BackgroundTitanium dioxide (TiO2) nanoparticles (NPs) are widely used due to their specific properties, like UV filters in sunscreen. In that particular case TiO2 NPs are surface modified to avoid photocatalytic effects. These surface-treated nanoparticles (STNPs) spread in the environment and might release NPs as degradation residues. Indeed, degradation by the environment (exposure to UV, water and air contact …) will occur and could profoundly alter the physicochemical properties of STNPs such as chemistry, size, shape, surface structure and dispersion that are important parameters for toxicity. Although the toxicity of surface unmodified TiO2 NPs has been documented, nothing was done about degraded TiO2 STNPs which are the most likely to be encountered in environment. The superoxide production by aged STNPs suspensions was tested and compared to surface unmodified TiO2 NPs. We investigated the possible toxicity of commercialized STNPs, degraded by environmental conditions, on human intestinal epithelial cells. STNPs sizes and shape were characterized and viability tests were performed on Caco-2 cells exposed to STNPs. The exposed cells were imaged with SEM and STNPs internalization was researched by TEM. Gene expression microarray analyses were performed to look for potentialchanges in cellular functions.
机译:背景技术二氧化钛(TiO2)纳米粒子(NPs)由于其特殊的特性而被广泛使用,例如防晒霜中的UV滤光片。在那种特定情况下,对TiO2 NP进行表面改性,以避免光催化作用。这些经过表面处理的纳米粒子(STNP)在环境中扩散,并可能释放NPs作为降解残留物。实际上,将发生环境降解(暴露在紫外线,水和空气中……),并可能深刻改变STNP的理化特性,例如化学,尺寸,形状,表面结构和分散性,这些都是毒性的重要参数。尽管已记录了未经修饰的表面TiO2 NPs的毒性,但未对降解的TiO2 STNP进行任何处理,而降解的TiO2 STNP最可能在环境中遇到。测试了老化的STNPs悬浮液产生的超氧化物,并将其与未改性的TiO2 NPs表面进行了比较。我们调查了环境条件降解的商品化STNP对人肠上皮细胞的可能毒性。表征了STNP的大小和形状,并对暴露于STNP的Caco-2细胞进行了活力测试。用SEM对暴露的细胞成像,并通过TEM研究STNP的内在化。进行基因表达微阵列分析以寻找潜力细胞功能的变化。

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