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Analysis of the Characteristics and Cytotoxicity of Titanium Dioxide Nanomaterials Following Simulated In Vitro Digestion

机译:模拟体外消化模拟后二氧化钛纳米材料特性和细胞毒性分析

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摘要

Several metallic nanomaterials (NMs), such as titanium dioxide nanomaterials (TiO ), present beneficial properties with a broad range of innovative applications. The human population is exposed to TiO , particularly by ingestion, due to its increasing use as a food additive and inclusion in dietary supplements and food packaging materials. Whether this oral exposure may lead to adverse local or systemic outcomes has been the subject of research, but studies have generated contradictory results, reflecting differences in the physicochemical properties of the TiO studied, effects of the surrounding matrix, and modifications during digestion. This work aimed to investigate the toxic effects of three different TiO NMs (NM-103, NM-103 and NM-105) on the gastrointestinal tract cells, Caco-2 and HT29-MTX-E12, after the use of the standardized static INFOGEST 2.0 in vitro digestion method to mimic human digestion of TiO , contributing to hazard assessment. The results show that, for one of the digested TiO NMs studied (NM-105), a more pronounced toxicity occurs after exposure of HT29-MTX-E12 intestinal cells, as compared to undigested NM, concomitantly with subtle changes in characteristics of the NM. Thus, the inclusion of the digestion simulation in the safety evaluation of ingested NMs through in vitro bioassays can better integrate the modifications that NMs suffer in the organism. It is expected that such an approach will reduce uncertainties in the hazard assessment of ingested NMs for human health.
机译:几种金属纳米材料(NMS),如二氧化钛纳米材料(TIO),具有广泛的创新应用的有益特性。由于其随着食品添加剂和饮食补充剂和食品包装材料含有含量,人群将人口暴露于TIO,特别是通过摄取。这种口腔接触是否可能导致局部或全身成果是研究的主题,但研究产生了矛盾的结果,反映了在消化期间研究的TIO的物理化学特性的差异,以及在消化期间修饰。该工作旨在探讨在使用标准化静态inegest之后,探讨三种不同TiOn(NM-103,NM-103和NM-105)对胃肠道细胞,Caco-2和HT29-MTX-E12的毒性效应2.0体外消化方法模仿人类消化的TiO,有助于危害评估。结果表明,对于所研究的消化的TiO NMS(NM-105)中的一种,与未消化的NM相比,在HT29-MTX-E12肠细胞暴露后发生更明显的毒性,同时伴随着NM特征的细微变化。因此,在体外生物测定中,在摄入的NMS的安全性评估中包含消化模拟可以更好地整合NMS在生物体中遭受的修饰。预计这种方法将减少对人类健康摄入NMS的危害评估的不确定性。

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