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The effect of the preemptive use of the NMDA receptor antagonist dextromethorphan on postoperative analgesic requirements.

UNLABELLED: Both central sensitization after peripheral tissue injury and the development of opiate tolerance involve activation of N-methyl-D-aspartate receptors. In this double-blinded, randomized study, we investigated the preemptive versus postincisional effects of dextromethorphan, an N-methyl-D-aspartate receptor antagonist, on postoperative pain management. Sixty ASA I and II patients undergoing elective upper abdominal surgery were randomly allocated to three equally sized groups. The Preincisional group patients received dextromethorphan (120 mg) IM 30 min before skin incision and a placebo (isotonic saline) 30 min before the end of surgery. The Postincisional group received the same dose of dextromethorphan 30 min before the end of surgery and a placebo 30 min before skin incision, and the Control group received a placebo both 30 min before skin incision and 30 min before the end of surgery. A standard general anesthetic technique including fentanyl, propofol, isoflurane, and atracurium was used. Postoperative meperidine patient-controlled analgesia (PCA) was used. There were no significant group differences in the median pain scores except in the visual analog scale at 6 h both at rest and on movement; these were significantly lower in the Preincisional group than the other two groups (P < 0.05). The mean time to initiation of PCA was significantly longer in the Preincisional than in the Postincisional and Control groups (mean [SD]: 10.7 [2.2 h], 5.4 [2.1 h], and 3.7 [1.6 h], respectively; P < 0.001]. The 24-h PCA-meperidine consumption was significantly less in the Preincisional than in the Postincisional and Control groups (mean [SD]: 140 [60 mg], 390 [80 mg], and 570 [70 mg], respectively; P < 0.001]. The incidence of postoperative hypoxemia (SpO(2) < 90%) and nausea was significantly less in the Preincisional group (P < 0.05). In conclusion, preincisional IM 120 mg dextromethorphan compared with the same postincisional dose significantly reduced postoperative meperidine consumption. IMPLICATIONS: IM administration of preincisional dextromethorphan (120 mg), allowing the use of a larger dose sufficient to block the central sensitization caused by activation of the N-methyl-D-aspartate receptors, provides preemptive analgesia and has a supportive role in postoperative pain relief, as shown by a significant decrease in 24-h meperidine consumption.

Adult↗

Dextromethorphan potentiates morphine antinociception, but does not reverse tolerance in rats.

The N-methyl-D-aspartate (NMDA) and cholecystokinin (CCK)-B receptors may have a role in the development and reversal of tolerance to morphine. In morphine-tolerant rats, addition of the CCK-B receptors antagonist CI 988 or the NMDA receptor blocker dextromethorphan enhanced the antinociceptive effect of morphine on the hot plate test. However, combined administration of CI 988 and dextromethorphan did not further potentiate the antinociceptive effect of morphine in tolerant rats. Dextromethorphan by itself had no effect in tolerant rats. In drug-naive rats, dextromethorphan by itself had no antinociceptive effect, but when combined with morphine or morphine and CI 988, it significantly potentiated the magnitude and duration of the effect of morphine. Thus, unlike the reversal of tolerance with CI 988 at doses that did not potentiate the effect of morphine, the antinociception observed with the NMDA antagonist in the presence of morphine in tolerant rats may not represent the reversal of tolerance, but may instead reflect the potentiation of morphine's analgesic effect by dextromethorphan.

Analgesics, Opioid↗

CYP2D6- and CYP3A-dependent metabolism of dextromethorphan in humans.

The metabolism of dextromethorphan, a drug used to probe genetically determined CYP2D6 activity has been investigated in vivo and in vitro. In vitro, kinetic parameters were determined in adult microsomes: Km for the O-demethylation was much lower than for N-demethylation (7 versus 650 microM) but Vmax was comparable. Fetal liver microsomes actively catalysed the N-demethylation of dextromethorphan, with kinetic parameters (Vmax and Km) quite similar in fetal and adult microsomal preparations while the O-demethylation did not exceed 5% of adult activity. In microsomes, the N-demethylation was inhibited by antibodies raised against CYP3A subfamily members although fetal microsomes were much less sensitive to immunoinhibition than adult microsomes. In vivo, urinary excretion of dextromethorphan and its three demethylated metabolites was examined in 155 adult volunteers and compared between extensive (n = 144, 92.9%) and poor (n = 11, 7.1%) metabolizers. The O-demethylation to dextrorphan is the rate-limiting step of metabolism. In 2D6 poor metabolizers, the N-demethylation to 3-methoxymorphinan is slightly higher than in 2D6 extensive metabolizers but does not compensate defective O-demethylation. The frequency distribution histograms of dextromethorphan/dextrorphan and 3-methoxymorphinan/3-hydroxymorphinan metabolic ratios appeared bimodally distributed, reflecting the participation of CYP2D6 in the O-demethylation reaction. They clearly differed from the random distribution of dextromethorphan/3-methoxymorphinan, and dextrorphan/3-hydroxymorphinan ratios among the population. These data clearly suggest that the N-demethylation of dextromethorphan is dependent on CYP3A and that both CYP2D6 and CYP3A are involved in the overall metabolism of dextromethorphan.

Adult↗

Quantification of intraindividual variability and the influence of menstrual cycle phase on CYP2D6 activity as measured by dextromethorphan phenotyping.

Intraindividual variability and the effects of menstrual cycle phase on CYP2D6 activity were evaluated by dextromethorphan phenotyping in 20 Caucasian normal volunteers. Dextromethorphan 30 mg was administered to 10 men every 14 days for 3 months, and to 10 premenopausal women during the mid-follicular and mid-luteal phases of each menstrual cycle for three complete cycles. Urinary dextromethorphan/dextrorphan molar ratios were obtained after an overnight urine collection. Ten women and nine men were extensive metabolizer phenotypes, and one man was a poor metabolizer phenotype (confirmed by genotyping). There was no difference in dextromethorphan metabolic ratios between the mid-follicular (mean +/- SD: 0.00728+/-0.00717) and mid-luteal (0.00745+/-0.00815) phases of the menstrual cycle (P = 0.88). Also, no significant difference was found in the intraindividual variability of the metabolic ratios between the two phases (P = 0.80). No statistically significant sex difference in CYP2D6 activity was found between men (0.00537+/-0.00431) and women (0.00737+/-0.00983) extensive metabolizers (P = 0.84). For all individuals, intraindividual variability in dextromethorphan ratios ranged from 12.1-136.6% with a median of 36.7%. Because hormonal fluctuations within the mid-follicular and mid-luteal phases of the menstrual cycle do not appear to affect CYP2D6 activity, pharmacokinetic or clinical investigations of CYP2D6 substrate activity may not require menstrual cycle phase stratification. Because baseline metabolic ratios may fluctuate an average of 37%, repeat baseline and treatment phenotyping assessments should be obtained for accurate determination of a given drug's effect on CYP2D6 activity when measured by dextromethorphan.

Adult↗

Dextromethorphan protects male but not female mice with brain ischemia.

The non-competitive N-methyl-D-aspartate receptor antagonist dextromethorphan is protective against some types of brain injury. Unilateral carotid ligation in postnatal day 12 CD1 mice produces ischemic brain injury. To evaluate the neuroprotective potential of dextromethorphan against ischemic injury in the immature brain, seven litters of postnatal day 12 CD1 mice received either dextromethorphan or vehicle after a unilateral carotid ligation. Only the male pups were protected, and brain injury was unchanged in the female pups treated with dextromethorphan. These results suggest that dextromethorphan neuroprotection against ischemic injury in the immature brain is sex-dependent.

Animals↗

The role of CYP2D6 in primary and secondary oxidative metabolism of dextromethorphan: in vitro studies using human liver microsomes.

1. The enzyme kinetics of dextromethorphan O-demethylation in liver microsomes from three extensive metabolisers (EM) with respect to CYP2D6 indicated high (Km1 2.2-9.4 microM) and low (Km2 55.5-307.3 microM) affinity sites whereas microsomes from two poor metabolisers (PM) indicated a single site (Km 560 and 157 microM). Similar differences were shown for 3-methoxymorphinan O-demethylation to 3-hydroxymorphinan (Km 6.9-9.6 microM in EM subjects; Km 307 and 213 microM in PM subjects). 2. Dextromethorphan O-demethylation was inhibited competitively by quinidine (Ki 0.1 microM), rac-perhexiline (Ki 0.4 microM), dextropropoxyphene (Ki 6 microM), rac-methadone (Ki 8 microM), and 3-methoxymorphinan (Ki 15 microM). These compounds were also potent inhibitors of 3-methoxymorphinan O-demethylation with IC50 values ranging from 0.02-12 microM. Anti-LKM1 serum inhibited both dextromethorphan and 3-methoxymorphinan O-demethylations in a titre-dependent manner. 3. The Michaelis-Menten constant for dextromethorphan N-demethylation to 3-methoxymorphinan (Km 632-977 microM) and dextrorphan N-demethylation to 3-hydroxymorphinan (Km 1571-4286 microM) did not differ between EM and PM microsomes. These N-demethylation reactions were not inhibited by quinidine and rac-methadone or LKM1 antibodies. 4. Dextromethorphan and 3-methoxymorphinan are metabolised by the same P450 isoform, CYP2D6, whereas the N-demethylation reactions are not carried out by CYP2D6.

Autoantibodies↗

A clinical trial of dextromethorphan in amyotrophic lateral sclerosis.

INTRODUCTION: Although the cause of amyotrophic lateral sclerosis (ALS) is unknown, excitotoxicity mediated by glutamate has been implicated. Dextromethorphan is a NMDA-glutamate receptor antagonist with neuroprotective properties. MATERIAL AND METHODS: The effect of treatment with dextromethorphan (150 mg daily) in ALS patients was evaluated in a randomized, double-blind, placebo-controlled study. Forty-five patients were included in the analysis. RESULTS: At the end of the treatment period, 12 months after randomization, 15 patients (65%) in the placebo group and 12 patients (55 %) in the dextromethorphan group were still alive (log rank test, P=0.49). Rates of disease progression, as expressed by rates of decline in pulmonary function and in functional disability, were similar in both groups except for a significantly less pronounced rate of decline in the ability scores for the lower extremities in the dextromethorphan group. CONCLUSION: Treatment with a relatively low dose of dextromethorphan did not result in an improvement in 12-month survival in ALS.

Adult↗

Dextromethorphan inhibits 5-hydroxytryptamine uptake by human blood platelets and decreases 5-hydroxyindoleacetic acid content in rat brain.

The effect of dextromethorphan on the uptake and metabolism of 5-hydroxytryptamine (5-HT) was studied in human blood platelets and in rat brain. In the concentration of 120 nM dextromethorphan inhibited the uptake of 5-HT (1 mu-M) into platelets by 50%. The corresponding concentrations of imipramine and methadone under similar conditions were 22 and 590 nM, respectively. Dextromethorphan (20 to 40 mg kg-1) decreased the concentration of brain 5-hydroxyindoleacetic acid (5-HIAA) and the probenecid-induced accumulation of 5-HIAA time- and dose-dependently. However, dextromethorphan did not alter the pargyline-induced changes in brain 5-HT metabolism. Dextromethorphan-induced changes in brain 5-HT metabolism could arise from the inhibition of the re-uptake of 5-HT into neurons.

Animals↗

Antitussive efficacy of dextromethorphan in cough associated with acute upper respiratory tract infection.

Dextromethorphan is one of the most widely used antitussives for the treatment of cough associated with acute upper respiratory tract infection. However, there is very little data to support the efficacy of dextromethorphan in this disease state. This aim of this study was to obtain more information about the efficacy of a single dose of 30 mg dextromethorphan in the treatment of cough associated with acute upper respiratory tract infection. The study was a double-blind, stratified, randomized and parallel group design. Both objective and subjective measurements of cough were recorded over 10-min recording periods in a quiet room before (baseline) and at 90, 135 and 180 min after treatment. Forty-three patients (30 females and 13 males), mean age 22.9 years (range 18-46 years), with acute dry or slightly productive cough and otherwise healthy were included in the study. Patients were randomized to placebo treatment (n = 22) and dextromethorphan treatment (n=21). The results showed similar trends in both treatment groups with statistically significant reductions (P < 0.05) in cough sound pressure level (CSPL), cough frequency (CF) and subjective scores for cough severity within treatment groups but little difference between the treatment groups during the study period. The only statistically significant difference between treatment groups was for the mean CSPL changes from baseline to 90 min (P=0.019). There was a significant positive correlation between CSPL and CF (r = 0.752, P= 0.000) for changes in cough measurements from baseline to 90 min after treatment and this indicates that CSPL may be a useful measure of cough severity. This study provides very little if any support for clinically significant antitussive activity of a single 30 mg dose of dextromethorphan in patients with cough associated with acute upper respiratory tract infection.

Adolescent↗

High-dose oral dextromethorphan versus placebo in painful diabetic neuropathy and postherpetic neuralgia.

N-methyl-D-aspartate (NMDA) receptor antagonists relieve neuropathic pain in animal models, but side effects of dissociative anesthetic channel blockers, such as ketamine, have discouraged clinical application. Based on the hypothesis that low-affinity NMDA channel blockers might have a better therapeutic ratio, we carried out two randomized, double-blind, crossover trials comparing six weeks of oral dextromethorphan to placebo in two groups, made up of 14 patients with painful distal symmetrical diabetic neuropathy and 18 with postherpetic neuralgia. Thirteen patients with each diagnosis completed the comparison. Dosage was titrated in each patient to the highest level reached without disrupting normal activities; mean doses were 381 mg/day in diabetics and 439 mg/day in postherpetic neuralgia patients. In diabetic neuropathy, dextromethorphan decreased pain by a mean of 24% (95% CI: 6% to 42%, p = 0.01), relative to placebo. In postherpetic neuralgia, dextromethorphan did not reduce pain (95% CI: 10% decrease in pain to 14% increase in pain, p = 0.72). Five of 31 patients who took dextromethorphan dropped out due to sedation or ataxia during dose escalation, but the remaining patients all reached a reasonably well-tolerated maintenance dose. We conclude that dextromethorphan or other low-affinity NMDA channel blockers may have promise in the treatment of painful diabetic neuropathy.

Administration, Oral↗

Inhibition of debrisoquin clearance in perfused rat livers and inhibition of dextromethorphan metabolism in human liver microsomes by 4-hydroxydebrisoquin or other metabolites of debrisoquin.

Debrisoquin undergoes oxidative metabolism to 4-hydroxydebrisoquin, catalyzed by cytochrome CYP2D1 in rats and CYP2D6 in humans. Cytochrome CYP2D6 also plays a major role in dextromethorphan O-demethylation. In preliminary studies in perfused Lewis rat livers, we observed a difference in repeat clearance experiments using debrisoquin, but not dextromethorphan. To determine whether this change in clearance with time was due to the accumulation of 4-hydroxydebrisoquin, we sequentially used a recirculating and nonrecirculating perfusion system in the same liver perfusion experiment. We also studied the kinetics of dextromethorphan O-demethylation in microsomes prepared from human and rat livers in the presence and absence of 4-hydroxydebrisoquin. Results from the perfused rat liver experiments showed a drop in clearance from 3.27 +/- 0.57 ml/min (clearance 1) to 1.61 +/- 0.27 ml/min (clearance 2) (p less than 0.05 vs. clearance 1) during recirculation, but clearance returned to 3.21 +/- 0.46 ml/min (clearance 3, no significance vs. clearance 1) after a 30-min period of liver perfusion using a nonrecirculating system. There was significant accumulation of 4-hydroxydebrisoquin in the liver perfusate during recirculation, and concentrations fell when the nonrecirculating system was used. In microsomal studies, 4-hydroxydebrisoquin competitively inhibited dextromethorphan metabolism in human microsomes was 600 microM. These data suggest that: (a) 4-hydroxydebrisoquin and/or other metabolites of debrisoquin have an inhibitory effect on CYP2D1 and CYP2D6; (b) the active site of human CYP2D6 has different substrate specificity than the rat isozyme (CYP2D1) and/or that the pathways of metabolism of dextromethorphan are different in the Lewis rat and not primarily dependent on the activity of CYP2D1.

Animals↗

[Simultaneous determination of pseudoephedrine hydrochloride and dextromethorphan hydrobromide in composite pseudoephedrine hydrochloride dry suspension by HPLC].

A simple and reliable reversed-phase high performance liquid chromatographic method (HPLC) for the routine analysis of pseudoephedrine hydrochloride and dextromethorphan hydrobromide in composite pseudoephedrine hydrochloride dry suspension has been established. HPLC determination for the drug was performed in a Lichrospher C6H6 column and detected at 220 nm. Acetonitrile-H2O-H3PO4 (50:50:0.1, v/v, pH 2.5, containing 1 g/L sodium dodecyl sulfate) was used as the mobile phase and the flow rate was 1.2 mL/min. The method was proved to be linear in the ranges of 1.03-206 mg/L and 5-200 mg/L for dextromethorphan hydrobromide and pseudoephedrine hydrochloride, respectively. The relative standard deviations of intra-assay (n = 7) and inter-assay (n = 5) were 1.0% and 1.5% for pseudoephedrine hydrochloride analysis and 1.8% and 2.2% for dextromethorphan hydrobromide analysis. The recoveries of pseudoephedrine hydrochloride and dextromethorphan hydrobromide were 95.7%-98.7% and 100.0%-101.8%, respectively. The method has been successfully applied to the simultaneous determination of pseudoephedrine hydrochloride and dextromethorphan hydrobromide in composite pseudoephedrine hydrochloride dry suspension.

Bronchodilator Agents↗

Dextromethorphan abuse in Thai adolescents: A report of two cases and review of literature.

INTRODUCTION: Dextromethorphan is an opiod-derived, easily available cough remedy that, when used in large quantities, can have stimulatory effects which mimic that of amphetamine and other psychedelic drugs. Due to its easy availability, dextromethorphan is gaining widespread popularity as a recreational drug among Thai youths. Symptoms of overdose are directly related to its pharmacodynamic and pharmacokinetic properties. Dextromethorphan is metabolized by cytochrome p450 2D6, an isoenzyme that exhibit polymorphism in Asians. The drug is also a serotonin-reuptake inhibitor and has significant interactions with other drugs that exert their effects through the serotonin pathway such as the amphetamines, cocaine, and Lysergic Acid (LSD). CASE REPORT: We report here two cases of dextromethorphan overdose that presented to the Pediatric Toxicology Service at Siriraj Hospital, Bangkok, Thailand. Both cases presented with hyper-agitation, confusion, with signs of sympathomimetic overdose. Both patients were treated with supportive care and fully recovered within 24 hours without sequalae. CONCLUSION: Although the acute toxicity of dextromethorphan is abated within 24 hours, its pharmacological properties still render it a dangerous drug to use alone or in combination with other drugs.

Adolescent↗

Pharmacokinetics of dextromethorphan and dextrorphan: a single dose comparison of three preparations in human volunteers.

We have carried out a single-dose comparison of three different dextromethorphan cough mixtures in 10 healthy human volunteers. Dextromethorphan was administered in a single dose of 60 mg in random order. The concentrations of dextromethorphan and its main metabolite, dextrorphan, were determined from the plasma samples using high performance liquid chromatography. The concentrations of dextrorphan were 170 times higher than the concentrations of dextromethorphan. No therapeutically significant differences were detected between the three preparations tested, and there were no great differences between the pharmacokinetic profiles of dextromethorphan and dextrorphan. The three test preparations were Resilar and Redol comp. (Remeda Pharmaceutical Co., Finland), and Extuson (Ferrosan Ab, Sweden).

Adult↗

Effect of dextromethorphan and levomethorphan on gastric emptying and intestinal transit in the rat.

Dextromethorphan and levomethorphan were evaluated using 51Cr as a marker for their effects on gastric emptying and intestinal transit in the rat. Levomethorphan at 10 mg/kg i.p. and 10 and 50 mg/kg p.o. significantly (P less than or equal to .05) inhibited gastric emptying; dextromethorphan did not inhibit gastric emptying at p.o. doses up to 100 mg/kg or i.p. doses up to 10 mg/kg. Naloxone (1 mg/kg i.p.) significantly antagonized the effect of p.o. levomethorphan (50 mg/kg). Levomethorphan (10 and 50 mg/kg p.o. and 1 and 10 mg/kg i.p.) significantly inhibited intestinal transit. Dextromethorphan significantly inhibited intestinal transit after p.o. (10, 50, 100, 200 mg/kg) and i.p. (50 mg/kg) administration. As in the case of gastric emptying, naloxone inhibited the effect of levomethorphan but did not alter the effect of dextromethorphan. Naloxone itself (1 mg/kg i.p.) did not affect gastric emptying or intestinal transit. The results suggest that levomethorphan exerts inhibitory effects on intestinal transit and gastric emptying that are probably mediated partly through an opiate mechanism whereas the effects of dextromethorphan may be mediated through a nonopiate mechanism of action.

Animals↗

Dextromethorphan and codeine: comparison of plasma kinetics and antitussive effects.

Plasma kinetics of dextromethorphan (as dextrorphan ) and codeine were investigated after acute oral doses in 8 patients with pathological cough; after which the patients participated in an acute dose-response study of the antitussive effects of each drug administered as syrups. Maximum plasma codeine concentrations averaged 384 ng.ml-1 (s.d. +/- 78.3) occurring between 0.75 and 2h after ingestion of 60 mg codeine phosphate; in comparison mean peak plasma dextrorphan levels were 386 ng.ml-1 (s.d. +/- 107.2) and 388 ng.ml-1 (s.d. +/- 101.3) respectively, after administration of 60 mg dextromethorphan syrup and tablet formulations. Bioavailability of dextromethorphan tablets was comparable to syrup. No correlation emerged between instantaneous plasma concentrations of either dextrorphan or codeine and antitussive responses; however, peak antitussive effect was significantly related to log dose with both drugs. Antitussive effects of 30 mg codeine phosphate and 60 mg dextromethorphan hydrobromide did not differ significantly; both were superior to 30 mg dextromethorphan hydrobromide and placebo.

Administration, Oral↗

Prediction of phenotype for dextromethorphan O-demethylation by using polymerase chain reaction in healthy volunteers.

The polymorphism of dextromethorphan (CAS 125-71-3) metabolism is dependent on hepatic cytochrom P4502D6 (CYP2D6) activity. The relationship between the CYP2D6 genotype and the dextromethorphan phenotype was studied in 83 healthy unrelated subjects. Genotype was determined by allele-specific polymerase chain reaction (PCR). Phenotyping was performed by administration of 25 mg dextromethorphan hydrobromide and determination of the urinary metabolic ratio of dextromethorphan and its O-demethylated metabolite dextrorphan (DEM/DOR). Six subjects (7.2%) were homozygous for mutant alleles (95% confidence interval 2.7%-14.7%), 18 subjects (22%) were heterozygous carriers, and 59 were homozygous for the wild-type allele. Six subjects were classified as poor metabolizers (PM) of dextromethorphan, 77 as extensive metabolizers (EM). Genotyping correctly predicted all PMs and EMs. The CYP2D6-B mutation was most frequently found, being present in 83% of PM and 8% of EM alleles. Heterozygous EMs (22% of the total population studied) were significantly underrepresented compared to the expected genotype frequency of 31% (p < 0.05). The extensive metabolizers who were heterozygous for the wild-type allele had a significantly higher metabolic ratio, compared to the homozygous EMs (log10DEM/DOR [95% = -1.99 [(-2.30)-(-1.69)] vs. -2.55 [(-2.67)-(-2.43)]; p < 0.001), indicating a gene-dose effect for CYP2D6.

Adult↗

Metabolism of dextromethorphan in human liver microsomes: a rapid HPCL assay to monitor cytochrome P450 2D6 activity.

A new HPLC assay was developed to study dextromethorphan O-demethylation to dextrorphan in vitro using human liver microsomes to investigate the activity of the polymorphic monooxygenase cytochrome P450 2D6 (CYP 2D6). The separation of dextromethorphan and its main metabolite dextrorphan was performed on a polymeric C18 reversed-phase column with UV-detection using levallorphan as an internal standard. Liver samples from ten subjects were screened for dextrorphan formation whereby three groups with different abilities to metabolize dextromethorphan could be found. Seven microsomal preparations from extensive metabolizers showed an average dextrorphan formation rate of 298 +/- 68 pmol/mg protein.min, one sample was classified to belong to an intermediate dextromethorphan metabolizer (79 pmol/mg protein.min), whereas two samples of poor metabolizers exhibited significantly lower rates of dextromethorphan metabolism with values of 11 and 27 pmol/mg protein.min, respectively. This assay permits not only a fast in vitro screening for cytochrome P450 2D6 monooxygenase activity but is also an excellent tool to determine potential drug-drug interactions with this important metabolizing enzyme.

Adult↗