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Determination of osthol and its metabolites in a phase I reaction system and the Caco-2 cell model by HPLC-UV and LC-MS/MS

机译:通过HPLC-UV和LC-MS / MS测定I期反应系统和Caco-2细胞模型中的甾醇及其代谢物

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摘要

A straightforward and sensitive reversed-phase high-performance liquid chromatography (HPLC) assay was developed and validated for the analysis of osthol and its phase I metabolites (internal standard: umbelliferone). The method was validated for the determination of osthol with respect to selectivity, precision, linearity, limit of detection, recovery, and stability. The linear response range was 0.47 ~ 60 μM, and the average recoveries ranged from 98 to 101%. The inter-day and intra-day relative standard deviations were both less than 5%. Using this method, we showed that more than 80% of osthol was metabolized in 20 min in a phase I metabolic reaction system. Transport experiments in the Caco-2 cell culture model indicated that osthol was easily absorbed with high absorptive permeability (>10×10-6 cm/sec). The permeability did not display concentration-dependence or vectorial-dependence and is mildly temperature sensitive (activation energy less than 10 Kcal/mole), indicating passive mechanism of transport. When analyzed by LC-MS/MS, five metabolites were detected in a phase I reaction system and in the receiver side of a modified Caco-2 cell model, which was supplemented with the phase I reaction system. The major metabolites appeared to be desmethyl-osthol and multiple isomers of dehydro-osthol. In conclusion, a likely cause of poor osthol bioavailability is rapid phase I metabolism via the cytochrome P-450 pathways.
机译:开发了一种简单,灵敏的反相高效液相色谱(HPLC)测定法,并经过验证,可用于分析甾醇及其I相代谢物(内标:伞形酮)。相对于选择性,精密度,线性,检测限,回收率和稳定性,该方法可用于测定薄荷醇。线性响应范围为0.47〜60μM,平均回收率在98%至101%之间。日间和日内相对标准偏差均小于5%。使用这种方法,我们显示在I期代谢反应系统中,在20分钟内代谢了80%以上的甾醇。在Caco-2细胞培养模型中的转运实验表明,甾烷醇易于吸收,并具有高吸收渗透率(> 10×10 -6 cm / sec)。渗透率不表现出浓度依赖性或矢量依赖性,并且对温度敏感(活化能小于10 Kcal / mole),表明其是被动的运输机制。通过LC-MS / MS分析时,在I期反应系统中和改进的Caco-2细胞模型的接收器侧检测到5种代谢物,该模型已添加了I期反应系统。主要代谢产物似乎是去甲基甾烷醇和脱氢甾烷醇的多种异构体。综上所述,可能的不良胆固醇生物利用度的原因是通过细胞色素P-450途径的快速I期代谢。

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