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基膜作为肠道对大分子和纳米颗粒吸收的屏障的作用。

Role of the Basement Membrane as an Intestinal Barrier to Absorption of Macromolecules and Nanoparticles.

机构信息

School of Cancer and Pharmaceutical Sciences, Faculty of Life Sciences & Medicine , King's College London , London , SE1 9NH , U.K.

出版信息

Mol Pharm. 2018 Dec 3;15(12):5802-5808. doi: 10.1021/acs.molpharmaceut.8b01053. Epub 2018 Nov 8.

Abstract

Full understanding of the barrier property of mucosal tissues is imperative for development of successful mucosal drug delivery strategies, particularly for biologics and nanomedicines. The contribution of the mucosal basement membrane (BM) to this barrier is currently not fully appreciated. This work examined the role of the BM as a barrier to intestinal absorption of model macromolecules (5 and 10 kDa dextrans) and 100 nm polystyrene nanoparticles. Dextrans and nanoparticles were applied either directly to BM-coated inserts or to an intestinal model, namely, differentiated intestinal epithelial monolayers (Caco-2) cultured on BM-modified inserts. The work shows that the BM per se does not impact the diffusion of dextran macromolecules but severely hinders the movement of nanoparticles. However, importantly, Caco-2 monolayers cultured on BM-coated inserts, which show a remarkably different morphology, display a significantly larger barrier to the translocation of one dextran, as well as nanoparticle systems compared to cells cultured on unmodified inserts. Therefore, this work shows that, in addition to presenting a direct physical barrier to the movement of nanoparticles, the BM also exerts an indirect barrier effect, likely due to its influence on epithelial cell physiology. This work is important as it highlights the currently unmet need to consider and further study the barrier properties of the BM in mucosal delivery of biologics and nanomedicines.

摘要

充分了解黏膜组织的屏障特性对于开发成功的黏膜药物输送策略至关重要,特别是对于生物制剂和纳米药物。目前,人们对黏膜基底膜 (BM) 对这种屏障的贡献还没有充分认识。这项工作研究了 BM 作为肠道吸收模型大分子(5 和 10 kDa 葡聚糖)和 100nm 聚苯乙烯纳米颗粒的屏障的作用。葡聚糖和纳米颗粒要么直接应用于 BM 涂层的插入物上,要么应用于肠道模型,即 BM 修饰的插入物上培养的分化肠上皮单层(Caco-2)。研究表明,BM 本身不会影响葡聚糖大分子的扩散,但严重阻碍了纳米颗粒的运动。然而,重要的是,在 BM 涂层的插入物上培养的 Caco-2 单层显示出明显不同的形态,与在未修饰的插入物上培养的细胞相比,它们对一种葡聚糖以及纳米颗粒系统的迁移表现出显著更大的屏障。因此,这项工作表明,除了对纳米颗粒的运动形成直接的物理屏障外,BM 还发挥了间接的屏障作用,这可能是由于其对上皮细胞生理学的影响。这项工作很重要,因为它强调了在生物制剂和纳米药物的黏膜输送中,需要考虑和进一步研究 BM 的屏障特性,这是目前尚未满足的需求。

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