首页> 外文期刊>Journal of Agricultural and Food Chemistry >Increased Bioavailability of Ubiquinol Compared to That of Ubiquinone Is Due to More Efficient Micellarization during Digestion and Greater GSH-Dependent Uptake and Basolateral Secretion by Caco-2 Cells
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Increased Bioavailability of Ubiquinol Compared to That of Ubiquinone Is Due to More Efficient Micellarization during Digestion and Greater GSH-Dependent Uptake and Basolateral Secretion by Caco-2 Cells

机译:与泛醌相比,泛醇的生物利用度提高是由于在消化过程中胶束更有效以及Caco-2细胞的GSH依赖性摄取和基底外侧分泌增加

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The oral bioavailability of ubiquinol recently has been reported to be greater than that of ubiquinone in healthy adults. The basis for this influence of redox state of coenzyme Q^ (CoQ) on bioavailability has been investigated using the coupled in vitro digestion/Caco-2 cell model. Solubilized ubiquinol and ubiquinone were added to yogurt and subjected to simulated gastric and small intestinal digestion. Partitioning of CoQ_ in mixed micelles during small intestinal digestion was significantly greater during digestion of yogurt enriched with ubiquinol. Similarly, apical uptake from mixed micelles and transepithelial transport of CoQ_by Caco-2 cells were significantly greater after digestion of the ubiquinol-rich yogurt compared to digested ubiquinone-rich yogurt. Reduction of cellular GSH significantly decreased cell uptake and basolateral secretion of both ubiquinol and ubiquinone, although the adverse impact was much greater for ubiquinol. These data suggest that the enhanced bioaccessibility and bioavailability of ubiquinol compared to ubiquinone results from reduced coenzyme being more efficiently incorporated into mixed micelles during digestion and its greater uptake and basolateral secretion in a glutathionc-dependent mechanism.
机译:据报道,在健康成年人中,泛醇的口服生物利用度高于泛醌。使用偶联的体外消化/ Caco-2细胞模型已经研究了辅酶Q ^(CoQ)的氧化还原状态对生物利用度的影响的基础。将溶解的泛醇和泛醌添加到酸奶中,并进行模拟的胃和小肠消化。在小肠消化过程中,辅酶Q在混合小胶束中的分配在富含酸奶的酸奶消化过程中明显更大。同样,消化富含泛醌的酸奶后,与消化后的富含泛醌的酸奶相比,混合胶束的根吸收和CoQ_by Caco-2细胞的上皮运输显着增加。减少细胞内谷胱甘肽的含量会显着降低泛醇和泛醌的细胞摄取和基底外侧分泌,尽管对泛醇的不利影响要大得多。这些数据表明,与泛醌相比,泛醌的生物利用度和生物利用度提高是由于辅酶的减少在消化过程中更有效地掺入了混合胶束中,以及谷胱甘肽依赖性机制中其吸收和基底外侧分泌的增加。

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