Marked and prolonged serotonin toxicity in a tramadol-poisoned patient with a pharmacokinetic study

被引:2
作者
Bianconi, Guillaume [1 ]
Malissin, Isabelle [2 ,3 ]
Labat, Laurence [3 ,4 ]
Khoudour, Nihel [1 ]
Houze, Pascal [4 ]
Pallet, Nicolas [5 ,6 ]
Megarbane, Bruno [2 ,3 ]
Decleves, Xavier [1 ,3 ]
机构
[1] Hop Cochin, AP HP, Biol Medicament, Paris, France
[2] Hop Lariboisiere, Federat Toxicol AP HP, Reanimat Med & Toxicol, Paris, France
[3] Univ Paris, INSERM, UMRS 1144, Paris, France
[4] Hop Lariboisiere, AP HP, Lab Toxicol, Paris, France
[5] Hop Europeen Georges Pompidou, AP HP, Serv Biochim, Paris, France
[6] Univ Paris, INSERM, U1138, Ctr Rech Cordeliers, Paris, France
关键词
Tramadol; serotonin syndrome; poisoning; drug-drug interaction; pharmacokinetics;
D O I
10.1080/15563650.2021.1955912
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Background Tramadol poisoning rarely causes serotonin toxicity, which mechanisms remain poorly understood. We investigated alterations in tramadol pharmacokinetics in a tramadol-poisoned patient who presented with marked and prolonged serotonin toxicity. Case report A 21-year-old male self-ingested 750 mg-tramadol, 200 mg-sotalol, 400 mg-propranolol and 6 mg-lorazepam. He was a kidney transplant patient treated with mycophenolate, tacrolimus, prednisone, and paroxetine. He developed transitory cardiovascular failure and prolonged serotonin toxicity requiring sedation, muscle paralysis, and cyproheptadine, with a favorable outcome. Methods We measured plasma concentrations of tramadol, M1, M2, and M5 using liquid-chromatography-tandem mass spectrometry, calculated elimination half-lives and metabolic ratios of the compounds, and genotyped cytochromes involved in tramadol metabolism. Results Elimination half-lives of tramadol (6.1 h) and M1 (7.1 h) were normal while those of M2 (26.5 h) and M5 (16.7 h) prolonged. M1 metabolic ratio (0.12) was 2-fold reduced, M2 metabolic ratio (197) 1000-fold increased and M5 metabolic ratio (0.12) normal. This metabolic profile in a patient with normal CYP2D6-metabolizer status based on genotyping supports CYP2D6 inhibition by paroxetine and propranolol, two strong mechanism-based inhibitors. Only M2 present in sufficient concentrations up to 48 h could explain the prolonged serotonin toxicity. Conclusion Marked and prolonged serotonin toxicity was attributed to increased M2 production due to paroxetine- and propranolol-related CYP2D6 inhibition of tramadol metabolism.
引用
收藏
页码:382 / 385
页数:4
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