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首页> 外文期刊>Archives of pharmacal research >Pharmacokinetics, tissue distribution, metabolism, and excretion of ginsenoside Rg1 in rats.
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Pharmacokinetics, tissue distribution, metabolism, and excretion of ginsenoside Rg1 in rats.

机译:人参皂甙Rg1在大鼠中的药代动力学,组织分布,代谢和排泄。

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The pharmacokinetics, tissue distribution, metabolism, and excretion of ginsenosides Rg(1) were studied in Wistar rats, by measuring the concentrations of Rg(1) and its metabolites in the blood, tissues, bile, urine, and feces after dosing. After intravenous (i.v.) administration, the elimination half-lives of Rg(1) and its metabolites were 1.82, 5.87, and 6.87 h, and the area under the curves were 1595.7, 597.5, and 805.6 ng.h/mL, respectively. After oral administration, the elimination half-lives of Rg(1) and its metabolites were 2.25, 6.73, 5.44, and 5.06 h, and the area under the curves were 2363.5, 4185.5, 3774.3, and 396.2 ng.h/mL, respectively. After i.v. administration, Rg(1) and its metabolites were well distributed to the tissues analyzed except for the brain. The maximum concentration of Rg(1) was reached in all tissues at 5 min post dose, and it was eliminated from most of the tissues except for the kidney faster than it was eliminated from the blood. The maximum concentration of the metabolites was reached in all tissues between 4 and 6 h post dose. After i.v. administration, the recovery of the Rg(1) prototype in the urine and bile was 27.96% and 60.77%, respectively. The metabolism of Rg(1) in the intestine was via a hydrolization pathway, with the 6- and 20-glucoside bond hydrolyzed gradually under the catalysis of beta-glucosaccharase, and then the metabolites were reabsorbed into the blood. Finally, the total recovery of the Rg(1) prototype and its metabolites in the urine and feces were 51.31% and 47.46%, respectively.
机译:在Wistar大鼠中,通过测量给药后血液,组织,胆汁,尿液和粪便中Rg(1)及其代谢产物的浓度,研究了人参皂苷Rg(1)的药代动力学,组织分布,代谢和排泄。静脉内(i.v.)给药后,Rg(1)及其代谢产物的消除半衰期分别为1.82、5.87和6.87 h,曲线下面积分别为1595.7、597.5和805.6 ng.h / mL。口服后,Rg(1)及其代谢产物的消除半衰期分别为2.25、6.73、5.44和5.06 h,曲线下面积分别为2363.5、4185.5、3774.3和396.2 ng.h / mL。 。在i.v.之后给药后,Rg(1)及其代谢产物分布到除脑外的所有组织中。在给药后5分钟内,所有组织中Rg(1)的最大浓度都达到了最大值,并且除肾脏外,它从大多数组织中消除的速度快于从血液中消除的速度。在给药后4至6小时之间,所有组织中的代谢物达到最大浓度。在i.v.之后给药后,尿和胆汁中Rg(1)原型的回收率分别为27.96%和60.77%。 Rg(1)在肠道中的代谢是通过水解途径进行的,其中6-和20-葡萄糖苷键在β-葡萄糖酶的催化下逐渐水解,然后代谢物被重新吸收到血液中。最后,尿和粪便中Rg(1)原型及其代谢产物的总回收率分别为51.31%和47.46%。

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