首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Nanoparticles in foods? A multiscale physiopathological investigation of iron oxide nanoparticle effects on rats after an acute oral exposure: Trace element biodistribution and cognitive capacities
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Nanoparticles in foods? A multiscale physiopathological investigation of iron oxide nanoparticle effects on rats after an acute oral exposure: Trace element biodistribution and cognitive capacities

机译:纳米粒子在食物中? 急性口腔暴露后大鼠氧化铁纳米粒子效应的多尺度的物理病理学研究:微量元素生物分布和认知能力

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摘要

Iron Oxide Nanoparticles (IONPs) are used in several fields of application, mainly in the biomedical field for their magnetic properties and in food additive known as "E172" for their colour. In the present investigation, we focused on IONP effects on Wistar rat following acute oral exposure. We performed a multiscale physiopathological investigation in order to elucidate potential toxic effects linked to IONP ingestion, especially on cognitive capacities, trace element distribution, blood constituents, organ functions, organ structure and iron deposit. We demonstrated that oral exposure to IONPs induces disturbances of certain parameters depending on the dose. Interestingly, the histopathological examination evidenced inflammatory effects of IONPs in the liver with iron deposits in hepatocytes and Kuppfer cells. Neurobehavioral examination showed that oral exposure to IONPs did not affect nor rat emotions, exploration and locomotion capacities, nor spatial reference memory status. Furthermore, oral administration of IONPs did not disrupt the trace element homeostasis nor in the liver neither in the stomach. Altogether, our study evidenced low signs of toxicity, but some effects lead us to a careful use of these NPs. Thereby, their use in foods should be further studied to better evaluate the potential toxic risks of the oral exposure to IONPs.
机译:氧化铁纳米颗粒(IONP)用于若干应用领域,主要是在其磁性的生物医学领域和被称为“E172”的食物添加剂。在本研究中,我们专注于急性口服暴露后对Wistar大鼠的IONP效应。我们进行了多尺度的物理病理学调查,以阐明与IONP摄取相关的潜在毒性效应,特别是对认知能力,微量元素分布,血液成分,器官功能,器官结构和铁沉积物。我们证明了口服暴露于IONP,根据剂量诱导某些参数的扰动。有趣的是,组织病理学检查证明了肝细胞中铁沉积物和kuppfer细胞的肝脏中IONP的炎症作用。神经兽性检查表明,口腔暴露于IONP不会影响,也不会影响大鼠情绪,探索和运动能力,也不是空间参考记忆状态。此外,口服施用IONP不会破坏痕量元素稳态,也不会在胃中损害肝脏。完全是,我们的研究证明了毒性的低迹象,但有些效果导致我们仔细使用这些NPS。由此,应进一步研究它们在食品中的用途,以更好地评估口腔暴露于IONP的潜在有毒风险。

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