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Transport Mechanisms of Polymannuronic Acid and Polyguluronic Acid Across Caco-2 Cell Monolayers

机译:聚甘露糖醛酸和聚古洛糖醛酸跨Caco-2细胞单层的转运机制

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摘要

Detailed knowledge of the intestinal transport of polymannuronic acid (PM) and polyguluronic acid (PG) is critical for understanding their biological activities. To investigate the transport in the gastrointestinal tract, PM and PG were chemically modified with tyramine and conjugated with fluorescein isothiocyanate (FITC) to synthesize FITC-PM (F-PM) and FITC-PG (F-PG) successfully. The transport mechanisms of F-PM and F-PG across the intestinal epithelial cell monolayers (Caco-2 cell monolayers) were then investigated. The results demonstrated that the transport of F-PM and F-PG into epithelial cells was time- and energy-dependent, which was mediated by the macropinocytosis pathway and the clathrin- and caveolae (or lipid raft)-mediated endocytic pathway. The transport process of F-PM and F-PG in Caco-2 cells depended on the acidification of endosomes and involved lysosomes. Tubulin mediated the transport of F-PM, but not of F-PG. Moreover, the absorption enhancer chitosan (CS) promoted the transport of F-PM and F-PG, increasing the apparent permeability coefficient (Papp) by 1.9-fold and 2.6-fold, respectively, by reversibly opening the tight junction (TJ). In summary, this study provided a comprehensive understanding of the transport of PM and PG in the small intestinal epithelial cells, which will provide a theoretical basis for the development of PM and PG with good intestinal absorption.
机译:对多甘露糖醛酸(PM)和聚古洛糖醛酸(PG)在肠道中运输的详细了解对于了解其生物活性至关重要。为了研究在胃肠道中的运输,将PM和PG用酪胺化学修饰并与异硫氰酸荧光素(FITC)偶联,成功合成了FITC-PM(F-PM)和FITC-PG(F-PG)。然后研究了F-PM和F-PG跨肠上皮细胞单层(Caco-2细胞单层)的转运机制。结果表明,F-PM和F-PG进入上皮细胞的运输具有时间和能量依赖性,这是由巨胞饮途径和网格蛋白和小窝(或脂质筏)介导的内吞途径介导的。 F-PM和F-PG在Caco-2细胞中的运输过程取决于内体和涉及的溶酶体的酸化。微管蛋白介导F-PM的转运,但不介导F-PG的转运。此外,吸收促进剂壳聚糖(CS)促进了F-PM和F-PG的运输,通过可逆打开紧密连接(TJ)分别将表观渗透系数(Papp)分别提高了1.9倍和2.6倍。总之,本研究对小肠上皮细胞中PM和PG的运输提供了全面的了解,这将为具有良好肠道吸收的PM和PG的发展提供理论依据。

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