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首页> 外文期刊>Critical Reviews in Food Science and Nutrition >Mucus and microbiota as emerging players in gut nanotoxicology: The example of dietary silver and titanium dioxide nanoparticles
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Mucus and microbiota as emerging players in gut nanotoxicology: The example of dietary silver and titanium dioxide nanoparticles

机译:粘液和微生物群作为肠道纳米毒理学的新兴球员:膳食银和二氧化钛纳米粒子的例子

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摘要

Given the growing use of nanotechnology in many common consumer products, including foods, evaluation of the consequences of chronic exposure to nanoparticles in humans has become a major public health issue. The oral route of exposure has been poorly explored, despite the presence of a fraction of nanosized particles in certain food additives/supplements and the incorporation of such particles into packaging in contact with foods. After their ingestion, these nanoparticles pass through the digestive tract, where they may undergo physicochemical transformations, with consequences for the luminal environment, before crossing the epithelial barrier to reach the systemic compartment. In this review, we consider two examples, nanosilver and nanotitanium dioxide. Despite the specific features of these particles and the differences between them, both display a close relationship between physicochemical reactivity and bioavailability/biopersistence in the gastrointestinal tract. Few studies have focused on the interactions of nanoparticles of silver or titanium dioxide with the microbiota and mucus. However, the microbiota and mucus play key roles in intestinal homeostasis and host health and are undoubtedly involved in controlling the distribution of nanoparticles in the systemic compartment.
机译:鉴于许多常见消费产品中越来越多的纳米技术,包括食物,对人类纳米颗粒的慢性暴露后果的评估已成为一个主要的公共卫生问题。尽管某些食品添加剂/补充剂中存在纳米化颗粒,并且将这种颗粒掺入与食品接触的包装中存在少数纳米粒子颗粒,但探索的口腔探索较差。在摄入后,这些纳米颗粒通过消化道,在那里它们可以经历物理化学转化,并且在将上皮屏障交叉以到达全身隔室之前,对腔环境产生后果。在本次综述中,我们考虑了两个实例,纳米玻璃和二氧钛钛。尽管这些颗粒的具体特征和它们之间的差异,但两者都显示出在胃肠道中的物理化学反应性和生物利用度/生物缺陷之间的密切关系。很少有研究专注于银或二氧化钛与微生物酵母和粘液的相互作用。然而,微生物群和粘液在肠道稳态和宿主健康中发挥关键作用,无疑是控制全身舱室中纳米颗粒的分布。

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