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Pharmacokinetics of ginsenoside Rb1 and its metabolite compound K after oral administration of Korean Red Ginseng extract

机译:人参皂苷Rb1及其代谢物K口服后服用韩国红参提取物的药代动力学

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Compound K is a major metabolite of ginsenoside Rb1, which has various pharmacological activities in vivo and in vitro . However, previous studies have focused on the pharmacokinetics of a single metabolite or the parent compound and have not described the pharmacokinetics of both compounds in humans. To investigate the pharmacokinetics of ginsenoside Rb1 and compound K, we performed an open-label, single-oral dose pharmacokinetic study using Korean Red Ginseng extract. We enrolled 10 healthy Korean male volunteers in this study. Serial blood samples were collected during 36 h after Korean Red Ginseng extract administration to determine plasma concentrations of ginsenoside Rb1 and compound K. The mean maximum plasma concentration of compound K was 8.35±3.19 ng/mL, which was significantly higher than that of ginsenoside Rb1 (3.94±1.97 ng/mL). The half-life of compound K was 7 times shorter than that of ginsenoside Rb1. These results suggest that the pharmacokinetics, especially absorption, of compound K are not influenced by the pharmacokinetics of its parent compound, except the time to reach the maximum plasma concentration The delayed absorption of compound K support the evidence that the intestinal microflora play an important role in the transformation of ginsenoside Rb1 to compound K. Keywords: Panax ginseng , Pharmacokinetics, Ginsenoside Rb1, Compound K.
机译:化合物K是人参皂甙Rb1的主要代谢产物,在体内和体外均具有多种药理活性。但是,先前的研究集中于单一代谢物或母体化合物的药代动力学,而没有描述这两种化合物在人体中的药代动力学。为了研究人参皂苷Rb1和化合物K的药代动力学,我们使用韩国红参提取物进行了开放标签,单口服剂量的药代动力学研究。在这项研究中,我们招募了10名健康的韩国男性志愿者。服用高丽红参提取物后36小时内采集系列血样,测定人参皂苷Rb1和化合物K的血浆浓度。化合物K的平均最大血浆浓度为8.35±3.19 ng / mL,显着高于人参皂甙Rb1 (3.94±1.97 ng / mL)。化合物K的半衰期比人参皂苷Rb1的半衰期短7倍。这些结果表明,除了达到最大血浆浓度的时间外,化合物K的药代动力学,尤其是吸收率不受其母体化合物的药代动力学的影响。化合物K的延迟吸收支持了肠道菌群发挥重要作用的证据。人参皂苷Rb1向化合物K的转化中的作用。关键词:人参,药代动力学,人参皂苷Rb1,化合物K

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