Dent L A, Orrock M W
Talbert Medical Group, Salt Lake City, UT 84115, USA.
Pharmacotherapy. 1997 Jan-Feb;17(1):170-2.
Fluoxetine and its metabolite norfluoxetine are eliminated by oxidative metabolism via the CYP450 system and may inhibit the oxidative metabolism of other drugs to various degrees. A fluoxetine-warfarin interaction has been postulated, but is not well documented in the literature. The elimination of diazepam may also be inhibited by fluoxetine. An elderly man was prescribed these three drugs in combination and experienced such an interaction. He developed an elevated international normalized ratio (INR) and died from a cerebral hemorrhage. He also manifested drug delirium secondary to inhibited diazepam metabolism. In elderly patients receiving fluoxetine, lorazepam or oxazepam would be safer alternatives to diazepam since they are conjugated in the liver. Patients stabilized on warfarin should be monitored closely for changes in INR if fluoxetine is added or deleted.
氟西汀及其代谢产物去甲氟西汀通过细胞色素P450系统经氧化代谢消除,可能不同程度地抑制其他药物的氧化代谢。曾推测存在氟西汀 - 华法林相互作用,但文献中对此记载并不充分。氟西汀也可能抑制地西泮的消除。一名老年男性同时服用了这三种药物,发生了此类相互作用。他的国际标准化比值(INR)升高,死于脑出血。他还出现了因地西泮代谢受抑制继发的药物性谵妄。在接受氟西汀治疗的老年患者中,劳拉西泮或奥沙西泮作为地西泮的替代药物会更安全,因为它们在肝脏中进行结合代谢。正在使用华法林且病情稳定的患者,若加用或停用氟西汀,应密切监测INR的变化。