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隐丹参酮羟丙基-β-环糊精包合物的药代动力学特征,隐丹参酮是一种从丹参(Salvia miltiorrhiza)中提纯的心血管研究用药。

Pharmacokinetic characterization of hydroxylpropyl-beta-cyclodextrin-included complex of cryptotanshinone, an investigational cardiovascular drug purified from Danshen (Salvia miltiorrhiza).

作者信息

Pan Y, Bi H-C, Zhong G-P, Chen X, Zuo Z, Zhao L-Z, Gu L-Q, Liu P-Q, Huang Z-Y, Zhou S-F, Huang M

机构信息

School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, China.

出版信息

Xenobiotica. 2008 Apr;38(4):382-98. doi: 10.1080/00498250701827685.

DOI:10.1080/00498250701827685
PMID:18340563
Abstract
  1. The study aimed to investigate the pharmacokinetics of cryptotanshinone in a hydroxylpropyl-beta-cyclodextrin-included complex in dogs and rats. 2. Animals were administrated the inclusion complex of cryptotanshinone and the concentrations of cryptotanshinone and its major metabolite tanshinone IIA were determined by a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method. 3. Cryptotanshinone in inclusion complex was absorbed slowly after an oral dose, and the C(max) and AUC(0-)(t) were dose-proportional. The bioavailability of cryptotanshinone in rats was (6.9% +/- 1.9%) at 60 mg kg(-1) and (11.1% +/- 1.8%) in dogs at 53.4 mg kg(-1). The t(1/2) of the compound in rats and dogs was 5.3-7.4 and 6.0-10.0 h, respectively. Cryptotanshinone showed a high accumulation in the intestine, lung and liver after oral administration, while the lung, liver and heart had the highest level following intravenous dose. Excretion data in rats showed that cryptotanshinone and its metabolites were mainly eliminated from faeces and bile, and the dose recovery rate was 0.02, 2.2, and 14.9% in urine, bile, and faeces, respectively. 4. The disposition of cryptotanshinone in an inclusion complex was dose-independent and the bioavailability was increased compared with that without cyclodextrin used to formulate the drug. Cryptotanshinone was distributed extensively into different organs. Excretion of cryptotanshinone and its metabolites into urine was extremely low, and they were mainly excreted into faeces and bile.
摘要
  1. 本研究旨在考察隐丹参酮羟丙基-β-环糊精包合物在犬和大鼠体内的药代动力学。2. 给动物灌胃隐丹参酮包合物,采用液相色谱-串联质谱(LC-MS/MS)法测定隐丹参酮及其主要代谢产物丹参酮ⅡA的浓度。3. 口服给药后,隐丹参酮包合物吸收缓慢,C(max)和AUC(0-)(t)与剂量呈正比。隐丹参酮在大鼠体内60 mg kg(-1)剂量下的生物利用度为(6.9%±1.9%),在犬体内53.4 mg kg(-1)剂量下为(11.1%±1.8%)。该化合物在大鼠和犬体内的t(1/2)分别为5.3 - 7.4小时和6.0 - 10.0小时。口服给药后,隐丹参酮在肠道、肺和肝脏中蓄积较高,而静脉给药后肺、肝脏和心脏中的水平最高。大鼠排泄数据显示,隐丹参酮及其代谢产物主要从粪便和胆汁中排出,尿、胆汁和粪便中的剂量回收率分别为0.02%、2.2%和14.9%。4. 隐丹参酮包合物的处置与剂量无关,与未使用环糊精制剂的药物相比,生物利用度有所提高。隐丹参酮广泛分布于不同器官。隐丹参酮及其代谢产物经尿液排泄极低,主要经粪便和胆汁排泄。

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