Literature DB >> 9190321

[Pharmacology of tramadol].

P Dayer1, J Desmeules, L Collart.   

Abstract

(+/-)-Tramadol is a synthetic 4-phenyl-piperidine analogue of codeine. It is a central analgesic with a low affinity for opioid receptors. Its selectivity for mu receptors has recently been demonstrated, and the M1 metabolite of tramadol, produced by liver O-demethylation, shows a higher affinity for opioid receptors than the parent drug. The rate of production of this M1 derivative (O-demethyl tramadol), is influenced by a polymorphic isoenzyme of the debrisoquine-type, cytochrome P450 2D6 (CYP2D6). Nevertheless, this affinity for mu receptors of the CNS remains low, being 6000 times lower than that of morphine. Moreover, and in contrast to other opioids, the analgesic action of tramadol is only partially inhibited by the opioid antagonist naloxone, which suggests the existence of another mechanism of action. This was demonstrated by the discovery of a monoaminergic activity that inhibits noradrenaline (norepinephrine) and serotonin (5-hydroxytryptamine; 5-HT) reuptake, making a significant contribution to the analgesic action by blocking nociceptive impulses at the spinal level. (+/-)-Tramadol is a racemic mixture of 2 enantiomers, each one displaying differing affinities for various receptors. (+/-)-Tramadol is a selective agonist of mu receptors and preferentially inhibits serotonin reuptake, whereas (-)-tramadol mainly inhibits noradrenaline reuptake. The action of these 2 enantiomers is both complementary and synergistic and results in the analgesic effect of (+/-)-tramadol. After oral administration, tramadol demonstrates 68% bioavailability, with peak serum concentrations reached within 2 hours. The elimination kinetics can be described as 2-compartmental, with a half-life of 5.1 hours for tramadol and 9 hours for the M1 derivative after a single oral dose of 100mg. This explains the approximately 2-fold accumulation of the parent drug and its M1 derivative that is observed during multiple dose treatment with tramadol. The recommended daily dose of tramadol is between 50 and 100mg every 4 to 6 hours, with a maximum dose of 400 mg/day; the duration of the analgesic effect after a single oral dose of tramadol 100mg is about 6 hours. Adverse effects, and nausea in particular, are dose-dependent and therefore considerably more likely to appear if the loading dose is high. The reduction of this dose during the first days of treatment is an important factor in improving tolerability. Other adverse effects are generally similar to those of opioids, although they are usually less severe, and can include respiratory depression, dysphoria and constipation. Tramadol can be administered concomitantly with other analgesics, particularly those with peripheral action, while drugs that depress CNS function may enhance the sedative effect of tramadol. Tramadol should not be administered to patients receiving monoamine oxidase inhibitors, and administration with tricyclic antidepressant drugs should also be avoided. Tramadol has pharmacodynamic and pharmacokinetic properties that are highly unlikely to lead to dependence. This was confirmed by various controlled studies and postmarketing surveillance studies, which reported an extremely small number of patients developing tolerance or instances of tramadol abuse. Tramadol is a central acting analgesic which has been shown to be effective and well tolerated, and likely to be of value for treating several pain conditions (step II of the World Health Organization ladder) where treatment with strong opioids is not required.

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Year:  1997        PMID: 9190321     DOI: 10.2165/00003495-199700532-00006

Source DB:  PubMed          Journal:  Drugs        ISSN: 0012-6667            Impact factor:   9.546


  22 in total

1.  Effect of the opioid analgesic tramadol on inactivation of norepinephrine and serotonin.

Authors:  H H Hennies; E Friderichs; K Wilsmann; L Floh e
Journal:  Biochem Pharmacol       Date:  1982-04-15       Impact factor: 5.858

Review 2.  Pharmacokinetics, efficacy, and safety of analgesia with a focus on tramadol HCl.

Authors:  T P Gibson
Journal:  Am J Med       Date:  1996-07-31       Impact factor: 4.965

Review 3.  A novel approach to the pharmacology of analgesics.

Authors:  R B Raffa
Journal:  Am J Med       Date:  1996-07-31       Impact factor: 4.965

4.  Central analgesic effect of acetaminophen but not of aspirin.

Authors:  P Piletta; H C Porchet; P Dayer
Journal:  Clin Pharmacol Ther       Date:  1991-04       Impact factor: 6.875

Review 5.  A risk-benefit assessment of tramadol in the management of pain.

Authors:  L Radbruch; S Grond; K A Lehmann
Journal:  Drug Saf       Date:  1996-07       Impact factor: 5.606

6.  Contribution of monoaminergic modulation to the analgesic effect of tramadol.

Authors:  J A Desmeules; V Piguet; L Collart; P Dayer
Journal:  Br J Clin Pharmacol       Date:  1996-01       Impact factor: 4.335

7.  [Biotransformation of tramadol in man and animal (author's transl)].

Authors:  W Lintz; S Erlaçin; E Frankus; H Uragg
Journal:  Arzneimittelforschung       Date:  1981

Review 8.  Tramadol. A preliminary review of its pharmacodynamic and pharmacokinetic properties, and therapeutic potential in acute and chronic pain states.

Authors:  C R Lee; D McTavish; E M Sorkin
Journal:  Drugs       Date:  1993-08       Impact factor: 9.546

9.  Opioid and nonopioid components independently contribute to the mechanism of action of tramadol, an 'atypical' opioid analgesic.

Authors:  R B Raffa; E Friderichs; W Reimann; R P Shank; E E Codd; J L Vaught
Journal:  J Pharmacol Exp Ther       Date:  1992-01       Impact factor: 4.030

Review 10.  New clinical experience with tramadol.

Authors:  A Sunshine
Journal:  Drugs       Date:  1994       Impact factor: 9.546

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  35 in total

1.  An evaluation of analgesic efficacy and clinical acceptability of intravenous tramadol as an adjunct to propofol sedation for third molar surgery.

Authors:  E A Shipton; J A Roelofse; R J Blignaut
Journal:  Anesth Prog       Date:  2003

Review 2.  [Polypharmacy and pain treatment].

Authors:  Markus Gosch; Birgit Böhmdorfer; Ursula Benvenuti-Falger; Peter Dovjak; Bernhard Iglseder; Monika Lechleitner; Ronald Otto; Regina E Roller; Ulrike Sommeregger
Journal:  Wien Med Wochenschr       Date:  2010-06

3.  Attenuation of C-reactive protein increases after exodontia by tramadol and ibuprofen.

Authors:  Eman A El-Sharrawy; Ibrahim E El-Hakim; Elham Sameeh
Journal:  Anesth Prog       Date:  2006

4.  Influence of bile acid derivates on tramadol analgesic effect in mice.

Authors:  V Vasovic; Sasa Vukmirovic; M Pjevic; I Mikov; M Mikov; V Jakovljevic
Journal:  Eur J Drug Metab Pharmacokinet       Date:  2010-09       Impact factor: 2.441

Review 5.  Pharmacokinetics of opioids in liver disease.

Authors:  I Tegeder; J Lötsch; G Geisslinger
Journal:  Clin Pharmacokinet       Date:  1999-07       Impact factor: 6.447

6.  Evaluation of the analgesic effects of oral and subcutaneous tramadol administration in red-eared slider turtles.

Authors:  Bridget B Baker; Kurt K Sladky; Stephen M Johnson
Journal:  J Am Vet Med Assoc       Date:  2011-01-15       Impact factor: 1.936

7.  Tramadol drops in children: analgesic efficacy, lack of respiratory effects, and normal recovery times.

Authors:  K A Payne; J A Roelofse
Journal:  Anesth Prog       Date:  1999

8.  Pharmacokinetics of oral tramadol drops for postoperative pain relief in children aged 4 to 7 years--a pilot study.

Authors:  K A Payne; J A Roelofse; E A Shipton
Journal:  Anesth Prog       Date:  2002

9.  Effects of topical application of tramadol with/without dexmedetomidine and proparacaine on corneal sensitivity in rats.

Authors:  Cristina A Lelescu; Daria A Dumitras; Sonia Iurian; Francesco Staffieri; Cosmin Muresan
Journal:  Int Ophthalmol       Date:  2020-10-23       Impact factor: 2.031

10.  Safety and efficacy of tramadol hydrochloride on treatment of premature ejaculation.

Authors:  Bayoumy I Eassa; Mohamed A El-Shazly
Journal:  Asian J Androl       Date:  2012-10-29       Impact factor: 3.285

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