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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Accumulation of (?)-Epicatechin Metabolites in Rat Plasma after Oral Administration and Distribution of Conjugation Enzymes in Rat Tissues
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Accumulation of (?)-Epicatechin Metabolites in Rat Plasma after Oral Administration and Distribution of Conjugation Enzymes in Rat Tissues

机译:口服给药后大鼠血浆中(?)-表儿茶素代谢产物的积累和大鼠组织中结合酶的分布

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Absorption of orally administered (?)-epicatechin (EC) in rats was studied to obtain plasma pharmacokinetic profiles of EC metabolites. Rats were administered 172 μmol/kg body weight of EC, and blood was collected from the tail for 8 h after administration. Seven groups of compounds possessing the basic structure of EC were identified by using a combination of enzymatic hydrolysis, HPLC and electron impact mass spectrometry. Metabolites were quantified with a new, simple and sensitive method using HPLC with electrochemical detection. Ingested EC was absorbed from the alimentary tract and was present in the rat common blood circulation in the form of glucuronide and/or sulfate conjugates. The activity of conjugative enzymes in rat tissues was studied. The highest activity of glucuronosyltransferase was found in the intestinal mucosa of both of the small and large intestine; the highest activity of phenolsulfotransferase occurred in the liver, and that of catechol-O-methyl transferase was found in the liver and kidney. It has been proposed that the first detoxification step of dietary EC, namely, glucuronidation, occurs at the level of the intestinal mucosa in rats, and EC enters the common blood circulation exclusively in the glucuronized form. The compound is then sulfated in the liver and methylated in the liver and kidney. Because ingested EC undergoes extensive conjugation, its biological activities previously demonstrated in vitro may not be occurring in in vivo systems.
机译:研究了大鼠口服口服(β)-表儿茶素(EC)的吸收,以获取EC代谢产物的血浆药代动力学。给大鼠施用172μmol/ kg体重的EC,并在给药后8小时从尾巴中收集血液。通过酶促水解,HPLC和电子冲击质谱的组合,鉴定出具有EC基本结构的七类化合物。代谢物通过一种新的,简单而灵敏的方法使用HPLC和电化学检测进行定量。摄入的EC从消化道吸收,并以葡萄糖醛酸和/或硫酸盐结合物的形式存在于大鼠的普通血液循环中。研究了大鼠组织中结合酶的活性。在小肠和大肠的肠粘膜中发现的葡萄糖醛糖苷转移酶的活性最高。肝脏中苯酚磺基转移酶的活性最高,而在肝脏和肾脏中发现儿茶酚-O-甲基转移酶的活性最高。已经提出饮食EC的第一个解毒步骤,即葡萄糖醛酸化,发生在大鼠肠粘膜的水平,并且EC仅以葡萄糖醛化的形式进入普通的血液循环。然后将化合物在肝脏中硫酸化并在肝脏和肾脏中甲基化。由于摄入的EC经过广泛的结合,因此先前在体外证明的生物学活性可能不会在体内系统中发生。

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