Assessment of the Drug-Drug Interaction Potential Between Theacrine and Caffeine in Humans.

Hui He, Dejian Ma, Laura Brooks Crone, Matthew Butawan, Bernd Meibohm, Richard J Bloomer, Charles R Yates
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引用次数: 15

Abstract

Objective: Theacrine, a methylurate class purine alkaloid, triggers diverse pharmacologic responses, including psychostimulatory activity by modulation of adenosinergic and dopaminergic pathways. In a double-blind, placebo-controlled study, theacrine increased energy, concentration, and mood, while reducing fatigue. Because caffeine, a methylxanthine purine alkaloid, is frequently coadministered with theacrine, we sought to determine if a pharmacokinetic and/or pharmacodynamic interaction existed between theacrine and caffeine. Methods: Eight healthy adults received theacrine, as TeaCrine® (25 or 125 mg), caffeine (150 mg), or a combination of theacrine (125 mg) and caffeine (150 mg) in a randomized, double-blind crossover study. Blood samples were collected over a 24-hour period and analyzed by Liquid chromatrography-mass spectrometry/mass spectrometry (LC-MS/MS) for theacrine, caffeine, and paraxanthine. Pharmacodynamic response markers, heart rate and blood pressure, were recorded. Results: Theacrine pharmacokinetics was similar following administration of theacrine alone. Caffeine coadministration increased maximum plasma concentration and area under the curve of theacrine without altering theacrine half-life. Theacrine had no impact on caffeine or paraxanthine pharmacokinetics. There was no difference between treatment groups with regard to heart rate or systolic/diastolic blood pressure. Conclusions: Coadministration of theacrine and caffeine results in a clinically significant pharmacokinetic interaction, viz., increased theacrine exposure. Enhanced oral bioavailability is the most likely mechanism by which caffeine alters theacrine exposure. However, further studies examining the contribution of presystemic elimination mechanisms, for example, efflux transport and/or gut metabolism, to theacrine bioavailability are needed to confirm the exact mechanism(s). Hemodynamic parameters were unaltered despite the pharmacokinetic interaction, suggesting that coadministration of caffeine and theacrine is safe at the doses administered.

Abstract Image

Abstract Image

人体内茶碱和咖啡因之间药物-药物相互作用潜力的评估。
目的:茶碱是一种甲基尿酸类嘌呤生物碱,可通过调节腺苷能和多巴胺能途径引发多种药理反应,包括精神刺激活性。在一项双盲、安慰剂对照的研究中,茶树碱增加了精力、注意力和情绪,同时减少了疲劳。由于咖啡因是一种甲基黄嘌呤类生物碱,经常与茶碱共同给药,我们试图确定茶碱和咖啡因之间是否存在药代动力学和/或药效学相互作用。方法:在一项随机、双盲交叉研究中,8名健康成人接受了茶acrine,作为TeaCrine®(25或125 mg)、咖啡因(150 mg)或茶acrine (125 mg)和咖啡因(150 mg)的组合。24小时内采集血样,采用液相色谱-质谱联用/质谱联用(LC-MS/MS)对茶碱、咖啡因和副黄嘌呤进行分析。记录药效学反应指标,心率和血压。结果:单独给药后药代动力学相似。咖啡因联合给药增加了最大血浆浓度和茶分泌曲线下面积,但没有改变茶分泌半衰期。茶树碱对咖啡因或副黄嘌呤的药代动力学没有影响。在心率或收缩压/舒张压方面,治疗组之间没有差异。结论:茶碱和咖啡因的联合用药会导致临床显著的药代动力学相互作用,即增加茶碱暴露。提高口服生物利用度是咖啡因改变激素暴露的最有可能的机制。然而,需要进一步研究系统前消除机制的贡献,例如外排运输和/或肠道代谢,以确认确切的机制。尽管药代动力学相互作用,血液动力学参数没有改变,这表明咖啡因和茶碱在一定剂量下是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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