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首页> 外文期刊>ACS Omega >Molecular Mechanisms Underlying the Absorption of Aglycone and Glycosidic Flavonoids in a Caco-2 BBe1 Cell Model
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Molecular Mechanisms Underlying the Absorption of Aglycone and Glycosidic Flavonoids in a Caco-2 BBe1 Cell Model

机译:Caco-2 Bbe1细胞模型中糖苷酮和糖苷类黄酮吸收的分子机制

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The mechanisms of cellular absorption and transport underlying the differences between flavonoid aglycones and glycosides and the effect of the structural feature are not well established. In this study, aglycone, mono-, and diglycosides of quercetin and cyanidin were selected to examine the effects of the structural feature on the bioavailability of flavonoids using hexose transporters SGLT1 and GLUT2 in a Caco-2 BBe1 cell model. Cellular uptake and transport of all glycosides were significantly different. The glycosides also significantly inhibited cellular uptake of d-glucose, indicating the involvement of the two hexose transporters SGLT1 and GLUT2 in the absorption, and the potential of the glycosides in lowering the blood glucose level. The in silico prediction model also supported these observations. The absorption of glycosides, especially diglycosides but not the aglycones, was significantly blocked by SGLT1 and GLUT2 inhibitors (phloridzin and phloretin) and further validated in SGLT1 knockdown Caco-2 BBe1 cells.
机译:细胞吸收和转运的机制依然存在于类黄酮糖苷和糖苷与结构特征的效果之间的差异。在该研究中,选择甘氨酸,单甘油,单甘氨酸和乙二醇的二甘油,用于使用己糖转运蛋白SGLT1和Glut2在Caco-2 BBE1细胞模型中检查结构特征对黄酮类化合物的生物利用度的影响。所有糖苷的细胞吸收和运输显着不同。糖苷也显着抑制D-葡萄糖的细胞吸收,表明两种己糖转运蛋白SGLT1和GLUT2在吸收中的诱导,以及糖苷在降低血糖水平时的潜力。 Silico预测模型中的也支持这些观察结果。通过SGLT1和Glut2抑制剂(phloridzin和Phloretin)显着阻断糖苷,尤其是二甘油,尤其是二甘油,糖苷,尤其是糖苷,并在SGLT1敲低Caco-2 BBE1细胞中进一步验证。

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