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The High Permeability of Nanocarriers Crossing the Enterocyte Layer by Regulation of the Surface Zonal Pattern

机译:纳米载体的高渗透性通过调节表面区带模式穿过肠细胞层

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摘要

The intestinal epithelium is a major barrier that limits the absorption of oral drugs. The integrity of the epithelial tissue is a very important factor for preventing intestinal diseases. However, destabilization of the epithelium can promote the transportation of nanocarriers and increase the absorption of oral drugs. In our research, three different gold nanoparticles (GNPs) of the same size but with differing negative surface charge were designed and constructed as a model to determine the surface properties crucial for promoting absorptivity and bioavailability of the nanocarriers. The higher the ratio of surface carboxyl groups on GNPs, the higher capacity to induce transepithelial electrical resistance change and cell monolayer tight junction opening with higher permeability. The half carboxyl and half methyl surfaced GNPs displayed unique zonal surface patterns exhibited the greater ability to pass through intestinal epithelial cell layer but had a relatively small influence on tight junction distribution.
机译:肠上皮是限制口服药物吸收的主要障碍。上皮组织的完整性是预防肠道疾病的重要因素。然而,上皮的不稳定会促进纳米载体的运输并增加口服药物的吸收。在我们的研究中,设计并构建了三个相同大小但具有不同负表面电荷的不同金纳米颗粒(GNP),作为确定对促进纳米载体的吸收性和生物利用度至关重要的表面性质的模型。 GNP上表面羧基的比例越高,诱导跨上皮电阻变化和具有更高渗透性的细胞单层紧密连接开口的能力就越高。半羧基和半甲基表面的GNPs表现出独特的带状表面模式,显示出更大的通过肠道上皮细胞层的能力,但对紧密连接分布的影响相对较小。

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