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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vitro M-like cells genesis through a tissue-engineered triple-culture intestinal model
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In vitro M-like cells genesis through a tissue-engineered triple-culture intestinal model

机译:通过组织工程化的三重培养肠模型体外产生M样细胞

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Although fewer in number, M-cells are considered antigen sampling cells, acting as a gateway for antigens from the gut lumen and presenting an impressive aptitude for particle transcytosis. These features make M-cells attractive targets for oral drug delivery studies, but this has been poorly explored. New and reproducible tissue-like in vitro models for studying intestinal sampling and permeability mechanisms are needed. The combination of different cell players in such models offers improved microenvironments with higher physiologic relevance. Here, a tissue-engineered model was established, by co-culturing Caco-2 absorptive cells, HT29-MTX mucus-producing cells and Raji B lymphocytes. After 3 weeks of cell co-culture, the presence of M-like cells was evidenced by the loss of brush-border organization, detected by the lack of microvilli. The triple-culture model showed to be efficient for insulin transport, a process that was influenced by the tightness of junctions between epithelial cells and the presence of mucus and M-like cells. Ultimately, the proposed tissue-engineered model provides a more complete and reliable tool to perform drug permeability tests, as compared to traditional models, and may also find applicability as an in vitro system to study transdifferentiation mechanisms of M cells. (c) 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 104B:782-788, 2016.
机译:尽管数量较少,但M细胞被认为是抗原采样细胞,可充当来自肠腔的抗原的通道,并为颗粒转胞作用提供了令人印象深刻的能力。这些特征使M细胞成为口服药物递送研究的有吸引力的靶标,但是对此进行了很少的探索。需要用于研究肠采样和通透性机制的新的和可复制的类似组织的体外模型。在这种模型中,不同细胞参与者的组合提供了具有更高生理相关性的改善的微环境。在这里,通过共同培养Caco-2吸收细胞,HT29-MTX产生粘液的细胞和Raji B淋巴细胞,建立了组织工程模型。细胞共培养3周后,通过缺乏微绒毛检测到刷状边界组织的丧失,证明了M样细胞的存在。三重培养模型显示出对胰岛素转运有效,该过程受上皮细胞之间连接紧密度以及粘液和M样细胞的存在的影响。最终,与传统模型相比,本文提出的组织工程模型提供了更完整和可靠的工具来进行药物渗透性测试,并且可能还可以作为研究M细胞转分化机制的体外系统而获得应用。 (c)2015 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater 104B:782-788,2016。

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