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采用 HPLC 法评价 α-细辛脑及其主要代谢物在大鼠体内的药代动力学和组织分布。

Pharmacokinetics and tissue distribution evaluation of α-asaronol and its main metabolite in rats by HPLC method.

机构信息

Northwest University, Xi'an, 710069, China.

Northwest University, Xi'an, 710069, China; Honghui Hospital, Xi'an Jiaotong University, Xi'an, 710054, China.

出版信息

J Pharm Biomed Anal. 2019 Aug 5;172:349-356. doi: 10.1016/j.jpba.2019.05.004. Epub 2019 May 3.

Abstract

α-Asaronol is one of trace metabolites of α-asarone formed in vivo and in vitro and exhibits good anticonvulsant activities with low neurotoxicity. The present study was mainly to describe the pharmacokinetics and tissue distribution of α-asaronol and its metabolite E-2,4,5-trimethoxy cinnamic acid (E-2,4,5-TMCA), in rat after oral and intravenous administration of α-asaronol. The results indicate that α-asaronol can be absorbed (t = 5-10 min) and transformed to E-2,4,5-TMCA (t = 10-15 min) rapidly after oral administration. Presumably due to hepatic first-pass effect, α-asaronol shows a low bioavailability (about 25.9%). Furthermore, α-asaronol is distributed rapidly and widely in various tissues with the order of brain > heart > kidney > spleen > liver > lung, and eliminated quickly following the intravenous administration. The maximal concentration of α-asaronol in the brain is about 1.603 ± 0.221 μg/g at 5 min. In comparison, the concentrations of E-2,4,5-TMCA, except brain, are all higher than that of α-asaronol in the tested tissues with the order of kidney > liver > lung > heart ≈ spleen > brain. Current study results will contribute to interpretation and understanding preclinical PK properties of α-asaronol and its antiepileptic effects in animals.

摘要

α-细辛脑是α-细辛醚在体内和体外形成的一种痕量代谢物,具有良好的抗惊厥活性和低神经毒性。本研究主要描述了 α-细辛脑及其代谢物 E-2,4,5-三甲氧基肉桂酸(E-2,4,5-TMCA)在大鼠口服和静脉给予 α-细辛脑后的药代动力学和组织分布。结果表明,α-细辛脑口服后能迅速(t=5-10min)吸收并转化为 E-2,4,5-TMCA(t=10-15min)。推测由于肝脏首过效应,α-细辛脑的生物利用度较低(约 25.9%)。此外,α-细辛脑在各组织中分布迅速广泛,其顺序为脑>心>肾>脾>肝>肺,静脉给药后迅速消除。α-细辛脑在脑内的最大浓度约为 5min 时的 1.603±0.221μg/g。相比之下,除脑外,E-2,4,5-TMCA 在各组织中的浓度均高于α-细辛脑,其顺序为肾>肝>肺>心≈脾>脑。本研究结果将有助于解释和理解α-细辛脑在动物体内的药代动力学特性及其抗癫痫作用。

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