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Biomedical subjects

P Glue

Publications and source records attributed to P Glue.

At least 19 recordsLinked to original sources

Patients in the early phases of schizophrenia and schizoaffective disorders effectively treated with risperidone long-acting injectable.

The efficacy and safety of risperidone long-acting injectable (RLAI) was investigated in patients in the early phases of schizophrenia and schizoaffective disorders (< or = 3 years). Patients who required a treatment change received RLAI (2-weekly gluteal injections of 25, 37.5 or 50 mg, per clinical judgement), without an oral risperidone run-in phase.A total of 382 patients were included in this 6-month open-label study; 73% of patients completed the study. A total of 84% had schizophrenia with a median duration of 1.0 year since diagnosis. Previous medications were mainly atypical antipsychotics (70%) and depot neuroleptics (24%). The main reasons for treatment change were non-compliance (42%) and insufficient efficacy (31%) of previous medication. The total Positive and Negative Syndrome Scale (PANSS) and all its subscale scores improved significantly (p < or = 0.0001), with 40% of patients showing a 20% improvement on total PANSS. Global Assessment of Functioning, quality of life, patient satisfaction and movement disorders also improved significantly. Tolerability of RLAI was generally good and no unexpected adverse events were reported. The ensured delivery of medication with RLAI resulted in significant symptom improvement in this patient population. Direct initiation of RLAI is well accepted by patients. RLAI might represent a novel option for patients in the early phases of psychosis.

Adult↗

Population pharmacokinetic analysis of pegylated interferon alfa-2b and interferon alfa-2b in patients with chronic hepatitis C.

BACKGROUND: This study quantified pharmacokinetic changes in pegylated and nonpegylated interferon alfa-2b during 48 weeks of treatment and the influences of covariates on the basis of sparsely sampled serum concentrations and activity values. Possible relationships between pharmacokinetic and pharmacodynamic variables were investigated. METHODS: Patients with chronic hepatitis C were enrolled in a clinical trial that compared the efficacy of pegylated interferon alfa-2b with interferon alfa-2b. Single blood samples were obtained from each patient at weeks 4, 12, 24, 36, and 48. Three pharmacostatistical models were developed for 2 immunoassays and 1 bioassay. RESULTS: Apparent clearance values of pegylated interferon alfa-2b and interferon alfa-2b at the end of treatment declined 33.7% and 80.0%, respectively, from their week 4 values. Bioactivity increased 41% to 58% at week 48 for different treatment groups. Changes were greatest in the first weeks of administration and diminished during the subsequent months. Body weight had a modest positive effect on clearance values and activity. Within each dose level, no significant associations were observed between pharmacokinetic variables and any pharmacodynamic variables (hepatitis C virus--RNA responses or changes in neutrophils and platelets). CONCLUSIONS: This analysis confirms earlier observations of progressive pharmacokinetic changes in the patients with hepatitis C during 48 weeks of treatment. The absence of a relationship between toxicity or efficacy variables and interferon concentration or activity (within a dose level) suggests that clinical management of patients (eg, for efficacy or to manage toxicity) should be based on clinically derived dosing guidelines rather than on serum concentration or activity criteria.

Adolescent↗

The single dose pharmacokinetics of ribavirin in subjects with chronic liver disease.

AIMS: The primary objective of this study was to describe the single dose pharmacokinetics of ribavirin in subjects with normal liver function and those with various degrees of stable chronic liver disease. Additionally this study assessed the safety and tolerability of ribavirin in this population. METHODS: Single oral 600 mg doses of ribavirin were administered to healthy male and female volunteers (n = 6) and patients with stable chronic liver disease (n = 17), in a parallel group study. Pharmacokinetic sampling and tolerability assessments were performed up to 168 h post dose. RESULTS: Single oral doses of 600 mg ribavirin were well tolerated by healthy volunteers and patients with varying degrees of hepatic dysfunction. Although mean Cmax increased with the severity of hepatic dysfunction, there was no change in extent of absorption or renal clearance of ribavirin. CONCLUSIONS: There are no pharmacokinetic reasons for initial dose adjustment of ribavirin in patients with hepatic dysfunction.

Adult↗

A dose-ranging study of pegylated interferon alfa-2b and ribavirin in chronic hepatitis C. The Hepatitis C Intervention Therapy Group.

The objectives of this study were to assess the safety, pharmacokinetics, and efficacy of pegylated interferon alfa-2b (PEG-Intron) plus ribavirin in patients with chronic hepatitis C. A total of 72 patients (35 men/37 women, age range 20-68 years) with clinically compensated chronic hepatitis C virus (HCV) were enrolled into this open-label, randomized, active controlled study. Patients received either PEG-Intron 0.35, 0.7, or 1.4 microg/kg subcutaneously weekly for 24 weeks alone, or in combination with ribavirin 600, 800, or 1,000 to 1,200 mg orally daily. Patients were evaluated during treatment and after a 24-week follow-up period for safety and efficacy. Detailed pharmacokinetic assessments were performed at weeks 1 and 4. PEG-Intron alone produced expected dose-related reductions in white cells, neutrophils and platelets. Addition of ribavirin reduced hemoglobin levels in a dose-related manner, did not further reduce PEG-Intron-induced decreases in neutrophil or white cell count, and increased platelet counts. Neutrophil function tests (C5a and FMLP migration, killing curves) were unaltered. Reported adverse events (flu-like symptoms, asthenia) were qualitatively similar in all dose groups. Anti-HCV activity, as measured by loss of detectable serum HCV RNA (i.e. <100 copies/mL) at the end of treatment (week 24) and after 24 weeks of follow-up (week 48) showed dose-response trends for PEG-Intron. At each PEG-Intron dose level, anti-HCV activity was higher in patients coadministered ribavirin than in patients treated with PEG-Intron monotherapy. There was no evidence of pharmacokinetic interactions with either drug. We conclude that the safety and tolerability of combined PEG-Intron/ribavirin and PEG-Intron alone were comparable. Combined PEG-Intron/ribavirin showed dose-related synergistic anti-HCV effects, which were numerically superior to those obtained with PEG-Intron monotherapy.

Adult↗

Pegylated interferon-alpha2b: pharmacokinetics, pharmacodynamics, safety, and preliminary efficacy data. Hepatitis C Intervention Therapy Group.

AIMS: The objectives of this study were to assess the safety, pharmacokinetic and pharmacodynamic profiles, and antiviral efficacy of pegylated interferon-alpha2b monotherapy in patients with chronic hepatitis C. METHODS: Fifty-eight patients (38 men, 20 women; age range, 25 to 65 years) with compensated chronic hepatitis C were enrolled in this open-label, randomized, active controlled study. Patients received 0.035 to 2.0 microg/kg pegylated interferon-alpha2b subcutaneously weekly or the active control, interferon-alpha2b 3 million IU subcutaneously three times/week, for 24 weeks. Safety and antiviral efficacy assessments were performed during treatment and in a subsequent 4-week follow-up period. Detailed pharmacokinetic assessments were performed at weeks 1 and 4. RESULTS: Pegylated interferon-alpha2b produced dose-related reductions in white blood cells, neutrophils, and platelets, and dose-related increases in oral temperature, serum neopterin, and serum 2'5'-oligoadenylate synthetase activity, which were qualitatively similar to those produced by nonpegylated interferon-alpha2b. Reported adverse events (flu-like symptoms, asthenia) were qualitatively similar in pegylated interferon-alpha2b- and nonpegylated interferon-alpha2b-treated groups. Dose-related antiviral activity, as measured by loss of detectable serum hepatitis C virus RNA (<100 copies/mL), was noted at the end of treatment and after 4 weeks of follow-up. Both pegylated and nonpegylated interferon-alpha2b were rapidly absorbed, with maximal concentrations occurring approximately 8 to 12 hours after dose administration. Pegylated interferon-alpha2b had sustained maximal serum concentrations for 48 to 72 hours after dose administration, whereas nonpegylated interferon-alpha2b concentrations declined rapidly. Volume of distribution for both compounds was similar (approximately 1 L/kg). Pegylated interferon-alpha2b elimination half-life was approximately 10-fold greater, and mean apparent clearance was one tenth that of nonpegylated interferon-alpha2b. CONCLUSIONS: Pegylated and nonpegylated interferon-alpha2b safety and pharmacodynamic profiles were comparable. Pegylated interferon-alpha2b demonstrated delayed clearance compared with nonpegylated interferon-alpha2b, consistent with once-weekly administration.

Absorption↗

Population pharmacokinetic and pharmacodynamic analysis of ribavirin in patients with chronic hepatitis C.

The population pharmacokinetics of ribavirin were assessed in patients with chronic hepatitis C virus (HCV) infection treated with interferon alpha-2b and ribavirin in four clinical efficacy studies. The authors collected 3450 ribavirin serum concentrations from 1105 patients at different treatment weeks for inclusion in the analysis. Population factors included gender, age, body weight, serum creatinine, creatinine clearance, and previous interferon treatment history. Ribavirin apparent clearance (CL/F) was calculated from individual patients' daily doses divided by concentration values, and the influence of these factors was assessed by multiple regression. Body weight, gender, age, and serum creatinine affected CL/F. Population mean CL/F estimates were 17.9 L/h (female) and 21.5 L/h (male) assuming an age of 40 years and body weight of 70 kg. Ribavirin apparent clearance increased as a function of body weight and decreased at ages greater than 40 years. Serum creatinine had little influence on CL/F, which may reflect the relatively normal renal function of these patients. Total CL/F variability was approximately 28%. The four covariates in the model explained 27% of this variability, and were thus of limited clinical significance because of the substantial residual variability not accounted for by the model. In assessing the relationship between pharmacokinetics and pharmacodynamics, the week 4 hemoglobin nadir value was negatively associated with week 4 ribavirin concentrations. The percentage of reduction from baseline was positively associated with ribavirin concentrations, although these data were highly variable. Loss of HCV-RNA at 24 weeks after completion of treatment was considered a response to interferon and ribavirin treatment in a logistic regression analysis of clinical and pharmacokinetic variables and treatment response in the interferon-naive patients. Hepatitis C virus genotype, pretreatment HCV-RNA titer, duration of treatment period, week 4 ribavirin concentration, and patient age affected the likelihood of response. Higher ribavirin concentrations at treatment week 4 were associated with a higher response rate. Variables that have predictive value for treatment outcome in patients treated with interferon and ribavirin are similar to those previously reported for interferon monotherapy.

Adult↗

Attenuation of the euphoric effects of cocaine by the dopamine D1/D5 antagonist ecopipam (SCH 39166)

BACKGROUND: The subjective and reinforcing effects of cocaine in humans are associated with the enhancement of endogenous dopamine function in the mesolimbic system. This study examined the role of dopamine D1-like receptors in the behavioral and mood effects of cocaine by evaluating the effects of the selective D1/D5 antagonist ecopipam (SCH 39166) on subjective responses to intravenous cocaine in 11 subjects with cocaine dependence as defined by DSM-IV. METHODS: Subjects were pretreated in a randomized double-blind fashion with either placebo or 10 mg, 25 mg, or 100 mg of ecopipam orally on 4 separate occasions. Two hours later a single intravenous injection of 30 mg of cocaine was administered. Subjective and cardiovascular responses were measured and blood samples for pharmacokinetic evaluation were obtained prior to cocaine dosing and at various times after dosing. RESULTS: The euphoric (P = .004) and stimulating (P = .03) effects of cocaine were attenuated in a dose-dependent manner by ecopipam, while ratings of desire to take cocaine were diminished (P = .02). Ecopipam in combination with cocaine was safe and well tolerated. CONCLUSION: These data indicate a potentially important role for D1-like receptors in the acute mood-altering and rewarding effects of cocaine in humans.

Adult↗

Cytochrome P450 enzymes and drug metabolism--basic concepts and methods of assessment.

1. The cytochrome P450 enzyme family is one of the major drug metabolizing systems in man. 2. Factors such as age, gender, race, environment, and drug treatment may have considerable influence on the activity of these enzymes. 3. There are now well-established in vitro techniques for assessing the role of specific cytochrome P450 enzymes in the metabolism of drugs, as well as the inhibitory or inducing effects of drugs on enzyme activity. In vitro data have been utilized to predict clinical outcomes (i.e., pharmacokinetic interactions), with close correlations between in vitro and in vivo data. 4. This information can be of considerable practical assistance to clinicians, to help with rational prescribing or to prevent or minimize the potential for drug interactions.

Cytochrome P-450 Enzyme System↗

Changes in serum hepatitis C virus RNA in interferon nonresponders retreated with interferon plus ribavirin: a preliminary report.

Ribavirin, a nucleoside analogue, inhibits replication of RNA and DNA viruses and may control hepatitis C virus (HCV) infection through modulation of anti-inflammatory and antiviral actions. Ribavirin monotherapy has no effect on serum HCV RNA levels. In combination with interferon, this agent appears to enhance the efficacy of interferon. The aim of this study was to monitor serum HCV RNA levels early during therapy with interferon and ribavirin compared with that previously seen in the same patients during interferon monotherapy. Five patients who previously showed no response to therapy with interferon alfa 3 MU three times weekly for 6 months were retreated with the identical dose of interferon alfa 2b in combination with oral ribavirin 1,000 mg/day. Serum HCV RNA levels were monitored at baseline, week 4, week 8, and week 12 of therapy by a quantitative multicycle polymerase chain reaction assay. In the first 8 to 12 weeks, serum HCV RNA levels showed a greater decrease in all patients when retreated with combination therapy compared with interferon alone. Mean (+/- SEM) serum HCV RNA levels for interferon therapy alone were 3.3 +/- 0.95, 1.2 +/- 0.95, 1.6 +/- 1.2, and 2.3 +/- 1.2 x 10(6) copies/ml at week 0, 4, 8, and 12, respectively. This was compared with 3.3 +/- 0.83, 0.3 +/- 0.2, 0.03 +/- 0.02, and 0.15 +/- 0.14 x 10(6), respectively, for the interferon and ribavirin group (p < 0.07 at week 8). Two of five patients had undetectable serum HCV RNA during combination therapy. Combination therapy with interferon and ribavirin in prior interferon nonresponders reduces serum HCV RNA levels compared with interferon alone. This may suggest some additional antiviral effect of ribavirin when given with interferon.

Adult↗

Pharmacokinetics and absolute bioavailability of ribavirin in healthy volunteers as determined by stable-isotope methodology.

Ribavirin has recently been demonstrated to have efficacy in combination with alpha interferon for treatment of relapsed hepatitis C. The marked improvement in the response rate after treatment with the combination regimen (10-fold higher versus that from monotherapy with alpha interferon) highlights the importance of determining the absolute bioavailability of ribavirin as a first step in beginning to investigate the pharmacodynamics of the combination. The objective of this study was to determine the absolute bioavailability of ribavirin with an intravenous formulation containing ribavirin labeled with the stable isotope (13)C(3) ((13)C(3)-ribavirin) and unlabeled oral ribavirin. Six healthy volunteers received 150 mg of intravenous (13)C(3)-ribavirin followed 1 h later by a 400-mg oral dose of ribavirin. Samples of blood and urine were collected up to 169 h postdosing. Concentrations of (13)C(3)-ribavirin and unlabeled ribavirin were determined by a high-performance liquid chromatography tandem mass spectrometric method. All plasma and urine data were comodeled for labeled and unlabeled ribavirin by using both the two- and three-compartment models in the program ADAPT II. A three-compartment model was chosen for the pharmacokinetic analysis with the Akaike Information Criterion. The mean maximum concentrations of drug in plasma for intravenous and oral ribavirin were 4,187 and 638 ng/ml, respectively. The mean bioavailability was 51.8% +/- 21.8%, and the mean gamma-phase half-life was 37.0 +/- 14. 2 h. The mean renal clearance, metabolic clearance, and volume of distribution of the central compartment were 6.94 liters/h, 18.1 liters/h, and 17.8 liters, respectively. The use of the stable-isotope methodology has provided the best estimate of the absolute bioavailability of ribavirin that is currently available, as there was neither a period bias nor a washout effect to confound the data. The study demonstrated that the mean bioavailability for a 400-mg dose of ribavirin was 52%, which is higher than that previously reported in other investigations.

Adult↗

The clinical pharmacology of ribavirin.

This article summarizes pharmacokinetic studies of ribavirin in healthy volunteer and patient populations. Ribavirin is rapidly absorbed after oral administration (time to maximum concentration = 1.5 hours), followed by rapid distribution and prolonged elimination phases. Uptake from the proximal small bowel is active via concentrative N1 sodium-dependent nucleoside transporters. Ribavirin appears to be extensively absorbed; however, absolute bioavailability is approximately 50%, probably due to first-pass metabolism. Apparent volume of distribution is extensive (approximately 2,000 L) due to ribavirin's distribution into nonplasma (cellular) compartments, which occurs via es-nucleoside transporters. Ribavirin does not bind to plasma proteins. Upon multiple dosing there is extensive accumulation in plasma, and steady state is achieved by approximately 4 weeks. Because of slow elimination of ribavirin from nonplasma compartments, the multiple dose half-life is approximately 298 hours. The pharmacokinetic properties of ribavirin in special populations, the effect of food on ribavirin's pharmacokinetics, and the potential interactions between ribavirin and other agents are also reviewed.

Absorption↗

Ribavirin uptake by human erythrocytes and the involvement of nitrobenzylthioinosine-sensitive (es)-nucleoside transporters.

1. The major toxicity associated with oral therapy with ribavirin is anaemia, which has been postulated to occur as a result of accumulation of ribavirin triphosphate interfering with erythrocyte respiration. The objective of this study was to determine the mechanism by which ribavirin enters into erythrocytes. 2. Entry into human erythrocytes was examined by measuring influx rates of [3H]-ribavirin alone and with the inhibitor nitrobenzylthioinosine (NBMPR), and by investigating the inhibitory effects of nucleoside and nucleobase permeants on ribavirin transport, by use of inhibitor oil-stop methods. Transport mechanisms were further characterized by assessment of substrates to cause countertransport of ribavirin in preloaded erythrocytes, and by measuring the effects of ribavirin on [3H]-NBMPR binding to erythrocyte membranes. 3. Human erythrocytes had a saturable influx mechanism for ribavirin (Km at 22 degrees C of 440+/-100 microM) which was inhibited by nanomolar concentrations of NBMPR (IC50 0.99+/-0.15 nM). Nucleosides also inhibited the influx of ribavirin (adenosine more effective than uridine) but the nucleobases hypoxanthine and adenine had no effect. In addition, uridine caused the countertransport of ribavirin in human erythrocytes. Entry of ribavirin into horse erythrocytes, a cell type that lacks the NBMPR-sensitive (es) nucleoside transporter, proceeded slowly and via a pathway that was resistant to NBMPR inhibition. Ribavirin was a competitive inhibitor of adenosine influx (mean Ki 0.48+/-0.14 mM) and also inhibited NBMPR binding to erythrocyte membranes (mean Ki 2.2+/-0.39 mM). 4. These data indicate that ribavirin is a transported permeant for the es nucleoside transporter of human erythrocytes. There was no evidence for ribavirin entering cells via a nucleobase transporter.

Adenosine↗

Ribavirin and interferon alfa-2b in chronic hepatitis C: assessment of possible pharmacokinetic and pharmacodynamic interactions.

AIMS: The primary objective of this study was to determine whether pharmacokinetic interactions occurred between interferon alpha-2b (IFN) and ribavirin in patients with chronic hepatitis C infections. Additionally this study assessed the single and multiple-dose pharmacokinetics of ribavirin and IFN, and compared the safety, tolerability and antiviral pharmacodynamics of IFN plus ribavirin compared with either drug alone. METHODS: In this open label parallel group study, patients with chronic hepatitis C were randomized to receive IFN 3 million IU thrice weekly s.c. alone, ribavirin 600 mg twice daily p.o. alone or both drugs in combination over 6 weeks. Single and multiple dose pharmacokinetics and indices of antiviral pharmacodynamics were assessed during weeks 1 and 6, along with safety assessments during the study. RESULTS: The range of mean ribavirin terminal phase half-lives after single doses was 44-49 h. Comparison of week 1 and week 6 AUC(0,12h) values showed accumulation in plasma of approximately 6-fold. The range of mean washout half-lives after week 6 was 274-298 h, reflecting release of ribavirin from deep compartment stores. The range of single and multiple dose IFN terminal phase half-lives was 5-7 h. IFN demonstrated an increase in bioavailability (approximately 2-fold) upon multiple dose administration. Ribavirin and IFN pharmacokinetic parameters for combined ribavirin and IFN were similar to those during monotherapy with either compound, although the power of this study to detect differences was low. Serum HCV-RNA titers and ALT concentrations were reduced by IFN alone, ribavirin alone reduced ALT concentrations only, and combined IFN plus ribavirin produced numerically greater falls in both measurements than either treatment alone. Serum concentrations of neopterin and activity of 2',5'-oligoadenylate synthetase (2'5'-OAS) were increased by IFN alone and in combination with ribavirin, whereas serum 2'5'-OAS activity was decreased and neopterin concentrations unaltered by ribavirin monotherapy. IFN and ribavirin monotherapy produced characteristic changes in safety laboratory tests (IFN--reductions in white cells, neutrophils and platelets; ribavirin--reduced haemoglobin) and characteristic adverse event profiles (IFN--headache, flu-like symptoms, fatigue, anorexia, nausea, myalgia, and insomnia; ribavirin--headache, fatigue, myalgia, and pruritus). There was no additive effect of combination therapy on safety laboratory tests or reported adverse events. All changes were fully reversible upon treatment cessation. CONCLUSIONS: There was no evidence of pharmacokinetic interactions between IFN and ribavirin in this study. There were numerical trends indicating that the combination of IFN and ribavirin reduced titers of HCV-RNA to a greater extent than did either treatment alone, and the safety profile of combination therapy was similar to those of both monotherapy treatments.

Adolescent↗

Single-dose pharmacokinetics of felbamate in patients with renal dysfunction.

AIMS: The purpose of this study was to evaluate the effects of renal impairment on the single-dose pharmacokinetics of the antiepileptic felbamate. METHODS: Twelve subjects with three levels of renal dysfunction (creatinine clearance > 30-80, > 10-30 or 5-10 m min(-1)) and four controls with normal renal function (creatinine clearance > 80 ml min(-1) were studied). Plasma and urine samples were obtained for 144 h following administration of a single 1200 mg dose. RESULTS: Compared with controls, apparent total body clearance, renal clearance and urinary excretion of felbamate were decreased, and half-life, Cmax and AUC values were increased in subjects with renal dysfunction. The magnitude of these changes was associated with the degree of renal dysfunction. Nonrenal clearance and apparent volume of distribution values were also lower in renal dysfunction subjects, but there was no association between the extent of these changes and degree of renal dysfunction. Renal clearance of felbamate accounted for approximately 30% of apparent total body clearance in the control group and from 9-22% in the renal failure patients. Renal clearance of felbamate was significantly correlated with creatinine clearance (r = 0.75; P< 0.001). CONCLUSIONS: These data suggest that initial dosage and titration of felbamate may require adjustment in patients with renal dysfunction.

Adult↗

Single and multiple dose pharmacokinetics of felbamate in the elderly.

AIMS: The objective of this study was to compare the pharmacokinetics, safety and tolerability of the antiepileptic drug felbamate in young and elderly healthy vounteers. METHODS: The single and multiple dose pharmacokinetics of felbamate were examined in an open-label two-dose level parallel group study in 24 elderly (66 to 78-year-old) and 11 young (18 to 45-year-old) healthy volunteer subjects. Pharmacokinetics were determined from blood samples obtained over 120 h after administration of single 600 mg or 1200 mg doses, and after multiple doses of 600 mg or 1200 mg administered every 12 h. Safety and tolerability were assessed through laboratory tests, ECGs, vital signs and reported adverse events. RESULTS: Single dose felbamate pharmacokinetic parameters differed between young and elderly subjects; compared with young subjects, elderly subjects had lower mean clearance (31.2 vs 25.1 ml min(-1); 90% CI -11.4 to -0.9; P = 0.02) and a trend towards a greater half-life (18.6 vs 21.0 h; 90% CI -0.6 to 5.4; P = 0.11). Mean AUC and C(max) values were also higher in elderly subjects. No gender differences were noted for weight-adjusted pharmacokinetic variables. Felbamate was less well tolerated in elderly subjects compared with young subjects, as shown by higher rates of adverse event reporting and dropouts at the higher dose level. This may be due to age-related pharmacokinetic differences, to the rapid dose titration schedule used in this study, and/or to altered sensitivity to felbamate's pharmacodynamic effects. CONCLUSIONS: These findings imply that elderly subjects require lower initial dosing and slower dose titration of felbamate than non-elderly subjects.

Adolescent↗

Pharmacokinetic interactions with felbamate. In vitro-in vivo correlation.

This article provides an analysis of the degree of agreement between in vivo interaction studies performed in patients with epilepsy and healthy individuals, and in vitro studies which identified the cytochromes P450 (CYP) inhibited by felbamate and those involved in its metabolism. In vitro studies show that felbamate is a substrate for CYP3A4 and CYP2E1. Compounds which induce CYP3A4 (e.g. carbamazepine, phenytoin and phenobarbital) increase felbamate clearance. However, the CYP3A4 inhibitors gestodene, ethinyl estradiol and erythromycin have little or no effect on felbamate trough plasma concentrations, consistent with the fact that the pathway is relatively minor for felbamate under normal (non-induced) conditions. Felbamate has been shown in vitro to inhibit CYP2C19, which would account for its effect on phenytoin clearance, and it had been postulated that this could be the mechanism underlying the reduced clearance of phenobarbital by felbamate. Although not yet examined in vitro, felbamate appears to induce the activity of CYP3A4, which would account for it reducing plasma concentrations of carbamazepine or the progestin gestodene. Interactions involving felbamate and non-CYP450-mediated metabolic pathways have also been addressed in clinical studies. The reduction in valproic acid (valproate sodium) clearance by felbamate is through the inhibition of beta-oxidation. No clinically relevant pharmacokinetic interactions were noted between felbamate and lamotrigine, clonazepam, vigabatrin, nor the active monohydroxy metabolite of oxcarbazepine. Information on the mechanisms underlying felbamate's drug:drug interaction profile permits predictions to be made concerning the likelihood of interactions with other compounds.

Anticonvulsants↗