Literature DB >> 8988065

The hypoalgesic effect of tramadol in relation to CYP2D6.

L Poulsen1, L Arendt-Nielsen, K Brøsen, S H Sindrup.   

Abstract

Tramadol inhibits norepinephrine reuptake, stimulates serotonin release, and acts with mu-opioid receptors by way of its metabolite (+)-M1. Formation of M1 seems to depend on the genetic polymorphic CYP2D6. The analgesic effect of 2 mg/kg tramadol was evaluated in 15 extensive and 12 poor metabolizers of sparteine in two parallel, randomized, double-blind, placebo-controlled crossover studies that used experimental pain models. In extensive metabolizers, tramadol increased pressure pain detection (p = 0.03) and tolerance (p = 0.06) thresholds, as well as thresholds for eliciting nociceptive reflexes, after single (p = 0.0002) and repeated (p = 0.06) stimulation of the sural nerve. Peak pain and pain area in the cold pressor test were reduced (p = 0.0006 and 0.0009). In poor metabolizers, only thresholds to pressure pain tolerance (p = 0.02) and nociceptive reflexes after single stimulation (p = 0.04) were increased and the reflex threshold was less increased in poor metabolizers than in extensive metabolizers (p = 0.02). The serum concentration of (+)-M1 2 to 10 hours after tramadol ranged from 10 to 100 ng/L in extensive metabolizers, whereas in poor metabolizers serum concentrations of (+)-M1 were below or around the detection limit of 3 ng/ml. It is concluded that formation of (+)-M1 by way of CYP2D6 is important for the effect of tramadol on experimental pain.

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Year:  1996        PMID: 8988065     DOI: 10.1016/S0009-9236(96)90211-8

Source DB:  PubMed          Journal:  Clin Pharmacol Ther        ISSN: 0009-9236            Impact factor:   6.875


  74 in total

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Review 2.  [Genetics, pain and analgesia].

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3.  Pharmacokinetics of tramadol is affected by MDR1 polymorphism C3435T.

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Review 4.  Clinical pharmacology of analgesic medicines in older people: impact of frailty and cognitive impairment.

Authors:  Andrew J McLachlan; Sally Bath; Vasi Naganathan; Sarah N Hilmer; David G Le Couteur; Stephen J Gibson; Fiona M Blyth
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5.  Ticlopidine inhibits both O-demethylation and renal clearance of tramadol, increasing the exposure to it, but itraconazole has no marked effect on the ticlopidine-tramadol interaction.

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6.  Abuse liability and reinforcing efficacy of oral tramadol in humans.

Authors:  Shanna Babalonis; Michelle R Lofwall; Paul A Nuzzo; Anthony J Siegel; Sharon L Walsh
Journal:  Drug Alcohol Depend       Date:  2012-10-23       Impact factor: 4.492

Review 7.  The Pharmacogenetics of Tramadol.

Authors:  Dorte Lassen; Per Damkier; Kim Brøsen
Journal:  Clin Pharmacokinet       Date:  2015-08       Impact factor: 6.447

8.  Pharmacokinetics of tramadol following intravenous and oral administration in male rhesus macaques (Macaca mulatta).

Authors:  K R Kelly; B H Pypendop; K L Christe
Journal:  J Vet Pharmacol Ther       Date:  2014-12-09       Impact factor: 1.786

9.  Polymorphism of human cytochrome P450 2D6 and its clinical significance: part II.

Authors:  Shu-Feng Zhou
Journal:  Clin Pharmacokinet       Date:  2009       Impact factor: 6.447

10.  Rifampicin markedly decreases the exposure to oral and intravenous tramadol.

Authors:  Tuukka Saarikoski; Teijo I Saari; Nora M Hagelberg; Mikko Neuvonen; Pertti J Neuvonen; Mika Scheinin; Klaus T Olkkola; Kari Laine
Journal:  Eur J Clin Pharmacol       Date:  2012-12-15       Impact factor: 2.953

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