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开发一种先进的肠道体外三重培养通透性模型以研究纳米颗粒的转运。

Development of an advanced intestinal in vitro triple culture permeability model to study transport of nanoparticles.

作者信息

Schimpel Christa, Teubl Birgit, Absenger Markus, Meindl Claudia, Fröhlich Eleonore, Leitinger Gerd, Zimmer Andreas, Roblegg Eva

机构信息

Institute of Pharmaceutical Sciences, University of Graz , Graz, Austria.

出版信息

Mol Pharm. 2014 Mar 3;11(3):808-18. doi: 10.1021/mp400507g. Epub 2014 Feb 6.

Abstract

Intestinal epithelial cell culture models, such as Caco-2 cells, are commonly used to assess absorption of drug molecules and transcytosis of nanoparticles across the intestinal mucosa. However, it is known that mucus strongly impacts nanoparticle mobility and that specialized M cells are involved in particulate uptake. Thus, to get a clear understanding of how nanoparticles interact with the intestinal mucosa, in vitro models are necessary that integrate the main cell types. This work aimed at developing an alternative in vitro permeability model based on a triple culture: Caco-2 cells, mucus-secreting goblet cells and M cells. Therefore, Caco-2 cells and mucus-secreting goblet cells were cocultured on Transwells and Raji B cells were added to stimulate differentiation of M cells. The in vitro triple culture model was characterized regarding confluence, integrity, differentiation/expression of M cells and cell surface architecture. Permeability of model drugs and of 50 and 200 nm polystyrene nanoparticles was studied. Data from the in vitro model were compared with ex vivo permeability results (Ussing chambers and porcine intestine) and correlated well. Nanoparticle uptake was size-dependent and strongly impacted by the mucus layer. Moreover, nanoparticle permeability studies clearly demonstrated that particles were capable of penetrating the intestinal barrier mainly via specialized M cells. It can be concluded that goblet cells and M cells strongly impact nanoparticle uptake in the intestine and should thus be integrated in an in vitro permeability model. The presented model will be an efficient tool to study intestinal transcellular uptake of particulate systems.

摘要

肠道上皮细胞培养模型,如Caco-2细胞,常用于评估药物分子的吸收以及纳米颗粒跨肠黏膜的转胞吞作用。然而,众所周知,黏液会强烈影响纳米颗粒的移动性,且特殊的M细胞参与颗粒摄取。因此,为了清楚了解纳米颗粒如何与肠黏膜相互作用,需要构建整合主要细胞类型的体外模型。这项工作旨在开发一种基于三重培养的体外通透性模型:Caco-2细胞、分泌黏液的杯状细胞和M细胞。因此,将Caco-2细胞和分泌黏液的杯状细胞在Transwell小室中共培养,并添加Raji B细胞以刺激M细胞分化。对体外三重培养模型的汇合度、完整性、M细胞的分化/表达以及细胞表面结构进行了表征。研究了模型药物以及50和200 nm聚苯乙烯纳米颗粒的通透性。将体外模型的数据与离体通透性结果(尤斯灌流小室和猪肠)进行比较,两者相关性良好。纳米颗粒摄取具有尺寸依赖性,且受到黏液层的强烈影响。此外,纳米颗粒通透性研究清楚地表明,颗粒主要通过特殊的M细胞穿透肠道屏障。可以得出结论,杯状细胞和M细胞强烈影响纳米颗粒在肠道中的摄取,因此应将其整合到体外通透性模型中。所提出的模型将是研究颗粒系统肠道跨细胞摄取的有效工具。

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