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咖啡因及其主要去甲基代谢产物副黄嘌呤、可可碱和茶碱在人体中的比较药代动力学。

Comparative pharmacokinetics of caffeine and its primary demethylated metabolites paraxanthine, theobromine and theophylline in man.

作者信息

Lelo A, Birkett D J, Robson R A, Miners J O

出版信息

Br J Clin Pharmacol. 1986 Aug;22(2):177-82. doi: 10.1111/j.1365-2125.1986.tb05246.x.

Abstract

The pharmacokinetics of caffeine (CA), paraxanthine (PX), theobromine (TB) and theophylline (TP) were studied in six healthy male volunteers after oral administration of each compound on separate occasions. The total plasma clearances of CA and PX were similar in value (2.07 and 2.20 ml min-1 kg-1, respectively) as were those for TP and TB (0.93 and 1.20 ml min-1 kg-1, respectively). The unbound plasma clearances of CA and PX were also similar in magnitude (3.11 and 4.14 ml min-1 kg-1, respectively) as were those of TP and TB (1.61 and 1.39 ml min-1 kg-1, respectively). The half-lives of TP and TB (6.2 and 7.2 h, respectively) were significantly longer than those of CA and PX (4.1 and 3.1 h, respectively). The volume of distribution at steady state of TP (0.44 l kg-1) was lower than that of the other methylxanthines (0.63-0.72 l kg-1). The unbound volume of distribution of TP (0.77 l kg-1) was however the same as that of TB (0.79 l kg-1) whereas the unbound volume of distribution of PX (1.18 l kg-1) was similar to that of CA (1.06 l kg-1).

摘要

在六名健康男性志愿者身上,分别于不同时间口服咖啡因(CA)、副黄嘌呤(PX)、可可碱(TB)和茶碱(TP)后,研究了它们的药代动力学。CA和PX的总血浆清除率数值相似(分别为2.07和2.20毫升/分钟·千克-1),TP和TB的总血浆清除率也相似(分别为0.93和1.20毫升/分钟·千克-1)。CA和PX的非结合血浆清除率大小也相似(分别为3.11和4.14毫升/分钟·千克-1),TP和TB的非结合血浆清除率同样相似(分别为1.61和1.39毫升/分钟·千克-1)。TP和TB的半衰期(分别为6.2和7.2小时)明显长于CA和PX的半衰期(分别为4.1和3.1小时)。TP稳态分布容积(0.44升/千克-1)低于其他甲基黄嘌呤(0.63 - 0.72升/千克-1)。然而,TP的非结合分布容积(0.77升/千克-1)与TB的相同(0.79升/千克-1),而PX的非结合分布容积(1.18升/千克-1)与CA的相似(1.06升/千克-1)。

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本文引用的文献

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Caffeine disposition after oral doses.口服剂量后的咖啡因处置情况。
Clin Pharmacol Ther. 1982 Jul;32(1):98-106. doi: 10.1038/clpt.1982.132.
2
Drug metabolite kinetics.药物代谢动力学。
Pharmacol Ther. 1981;15(3):521-52. doi: 10.1016/0163-7258(81)90056-5.
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Theobromine kinetics and metabolic disposition.可可碱动力学与代谢分布。
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Theobromine metabolism in man.人体内可可碱的代谢
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