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Absorption and Metabolism of Piceatannol in Rats

机译:皮卡替诺醇在大鼠中的吸收和代谢

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Piceatannol (trans-3,3',4,5'-tetrahydroxystilbene), a natural analogue of resveratrol, has multiple biological functions. Nevertheless, piceatannol's biological fate is yet to be determined. In this study, we evaluated the absorption and metabolism of piceatannol in rats. Furthermore, the area under the plasma concentration curves (AUC) and metabolic pathway of piceatannol were compared with those of resveratrol. We determined the plasma concentrations of piceatannol, resveratrol, and their respective metabolites following their intragastric administration. Resveratrol metabolites were only conjugates, whereas piceatannol metabolites were piceatannol conjugates, o-methyl piceatannol, and its conjugates. The AUC for piceatannol, resveratrol, and their metabolites increased in a dose-dependent manner (90-360 μmol/kg). The AUC for total piceatannol was less than that for total resveratrol, whereas the AUC for piceatannol (8.6 μmol·h/L) after piceatannol and resveratrol coadministration was 2.1 times greater than that for resveratrol (4.1 μmol·h/L). The greater AUC for piceatannol was a result of its higher metabolic stability.
机译:Piceatannol(反式3,3',4,5'-四羟基sti),白藜芦醇的天然类似物,具有多种生物学功能。尽管如此,皮卡季诺醇的生物命运尚未确定。在这项研究中,我们评估了皮卡替诺醇在大鼠中的吸收和代谢。此外,比较了皮卡替诺醇的血浆浓度曲线(AUC)和代谢途径下的面积与白藜芦醇的面积。在胃内给药后,我们测定了皮卡替诺醇,白藜芦醇及其各自代谢产物的血浆浓度。白藜芦醇代谢物仅是缀合物,而皮卡汀醇代谢物是皮卡汀醇缀合物,邻甲基皮卡汀醇及其缀合物。 Piceatannol,白藜芦醇及其代谢物的AUC呈剂量依赖性(90-360μmol/ kg)增加。总皮卡汀醇的AUC小于总白藜芦醇的AUC,而皮卡汀醇和白藜芦醇共同给药后的皮卡替诺醇的AUC(8.6μmol·h / L)是白藜芦醇(4.1μmol·h / L)的AUC的2.1倍。 Piceatannol的更大的AUC是其更高的代谢稳定性的结果。

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