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Oral uptake of nanoparticles: human relevance and the role of in vitro systems

机译:纳米颗粒的口服吸收:与人类相关性和体外系统的作用

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Nanoparticles (NPs) present in environment, consumer and health products, food and medical applications lead to a high degree of human exposure and concerns about potential adverse effects on human health. For the general population, the exposure through contact with the skin, inhalation and oral uptake are most relevant. Since in vivo testing is only partly able to study the effects of human oral exposure, physiologically relevant in vitro systems are being developed. This review compared the three routes taking into account the estimated concentration, size of the exposed area, morphology of the involved barrier and translocation rate. The high amounts of NPs in food, the large absorption area and the relatively high translocation rate identified oral uptake as most important portal of entry for NPs into the body. Changes of NP properties in the physiological fluids, mechanisms to cross mucus and epithelial barrier, and important issues in the use of laboratory animals for oral exposure are mentioned. The ability of in vitro models to address the varying conditions along the oro-gastrointestinal tract is discussed, and requirements for physiologically relevant in vitro testing of orally ingested NPs are listed.
机译:环境,消费和保健产品,食品和医疗应用中存在的纳米颗粒(NPs)导致人体高度暴露,并担心对人体健康的潜在不利影响。对于一般人群,与皮肤接触,吸入和口服摄入量最为相关。由于体内测试仅部分能够研究人类口腔暴露的影响,因此正在开发生理相关的体外系统。这篇综述比较了三种途径,其中考虑了估计的浓度,暴露区域的大小,所涉及屏障的形态和易位率。食物中大量的NP,较大的吸收面积和相对较高的转运速率将口服吸收确定为NP进入人体的最重要入口。提到了生理液中NP特性的变化,穿越粘液和上皮屏障的机制,以及使用实验动物进行口腔暴露的重要问题。讨论了体外模型应对口-胃肠道变化条件的能力,并列出了对经口摄入的NP进行生理相关的体外测试的要求。

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