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纳米颗粒被人肠道屏障体外模型摄取及穿越:一项范围综述

Nanoparticle Uptake and Crossing by Human In Vitro Models of Intestinal Barriers: A Scoping Review.

作者信息

Ritarossi Chiara, Prota Valentina, De Battistis Francesca, Battistelli Chiara Laura, De Angelis Isabella, Andreoli Cristina, Vincentini Olimpia

机构信息

Environment and Health Department, Istituto Superiore di Sanità, 00161 Rome, Italy.

Food Safety, Nutrition and Veterinary Public Health Department, Istituto Superiore di Sanità, 00161 Rome, Italy.

出版信息

Nanomaterials (Basel). 2025 Aug 5;15(15):1195. doi: 10.3390/nano15151195.

Abstract

The Caco-2 in vitro model of the intestinal barrier is a well-established system for the investigation of the intestinal fate of orally ingested chemicals and drugs, and it has been used for over ten years by pharmaceutical industries as a model for absorption in preclinical studies. The Caco-2 model shows a fair correlation with in vivo drug absorption, though some inherent biases remain unresolved. Its main limitation lies in the lack of structural complexity, as it does not replicate the diverse cell types and mucus layer present in the human intestinal epithelium. Consequently, the development of advanced in vitro models of the intestinal barrier, that more structurally resemble the human intestinal epithelium physiology, has increased the potential applications of these models. Recently, Caco-2-based advanced intestinal models have proven effective in predicting nanomaterial uptake and transport across the intestinal barrier. The aim of this review is to provide a state-of-the-art of human in vitro intestinal barrier models for the study of translocation/uptake of nanoparticles relevant for oral exposure, including inorganic nanomaterials, micro/nano plastic, and fiber nanomaterials. The main effects of the above-mentioned nanomaterials on the intestinal barrier are also reported.

摘要

肠道屏障的Caco-2体外模型是一个成熟的系统,用于研究口服化学物质和药物在肠道中的命运,并且在临床前研究中,制药行业已将其作为吸收模型使用了十多年。尽管一些内在偏差仍未得到解决,但Caco-2模型与体内药物吸收具有一定的相关性。其主要局限性在于缺乏结构复杂性,因为它不能复制人类肠道上皮中存在的多种细胞类型和黏液层。因此,开发在结构上更类似于人类肠道上皮生理学的先进肠道屏障体外模型,增加了这些模型的潜在应用。最近,基于Caco-2的先进肠道模型已被证明在预测纳米材料通过肠道屏障的摄取和转运方面是有效的。这篇综述的目的是提供用于研究与口服暴露相关的纳米颗粒(包括无机纳米材料、微/纳米塑料和纤维纳米材料)的转运/摄取的人体体外肠道屏障模型的最新情况。还报道了上述纳米材料对肠道屏障的主要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17d0/12348799/6d800cf7ed9a/nanomaterials-15-01195-g001.jpg

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