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Biomedical subjects

B E Gidal

Publications and source records attributed to B E Gidal.

At least 19 recordsLinked to original sources

Effects of antiepileptic comedication on levetiracetam pharmacokinetics: a pooled analysis of data from randomized adjunctive therapy trials.

PURPOSE: To assess the influence of commonly used antiepileptic drugs (AEDs) on levetiracetam pharmacokinetics at steady state. METHODS: Plasma levetiracetam concentrations at steady state were determined by capillary gas chromatography in 590 epilepsy patients included in phase III trials and treated with doses of 1000-4000 mg per day in two divided daily doses. The data were pooled and kinetic parameters estimated by repeated measurement covariance analysis on log-transformed dose-adjusted concentrations (regression line as function of time elapsed since last dose). RESULTS: Estimated pharmacokinetic values, normalized to a dose of 1 mgkg(-1) b.i.d., were: concentration at 1h (C(1h)) 2.1 microgram ml(-1), concentration at 12h (C(12h)) 0.8 microgram ml(-1), area under the curve from 0 to 12h (AUC(0-12h)) 17.1 microgram ml(-1)h, half-life (t(1/2)) 8.1h, and apparent oral clearance (CL/F) 0.97 mlmin(-1)kg(-1). Parameters were similar between genders and among dosage subgroups. Compared with patients receiving comedication not considered to affect drug metabolizing enzymes (gabapentin, lamotrigine, vigabatrin), levetiracetam concentrations and t(1/2) tended to be lower in patients receiving enzyme-inducing AEDs (carbamazepine, phenytoin, phenobarbital, primidone) and higher in patients receiving valproic acid, but the differences were modest. CONCLUSIONS: Estimated parameters were dose independent, comparable to those from smaller scale studies and not affected to any major extent by gender or comedication with other AEDs. Based on this, no need is anticipated for adjusting levetiracetam dosage according to type of concomitantly prescribed AEDs.

Adult↗

Pharmacokinetics of the new antiepileptic drugs.

A physician's choice of an antiepileptic drug (AED) usually depends upon the patient's seizure type. But the pharmacokinetic characteristics of AEDs can further help determine the best drug for a particular patient. These characteristics, including absorption, elimination pathway, and potential for drug interactions, are of critical importance for patients who take other medication for comorbid conditions and for patients with impaired renal or hepatic function. The ideal AED would have a rapid, linear, consistent absorption rate with complete clearance, low plasma protein binding, and rapid central nervous system penetration. It would be eliminated predominantly by the kidneys. The new AEDs do not prompt the same concerns about interactions because they have much better pharmacokinetic profiles than the older drugs and as a result require less monitoring for potential interactions.

Anticonvulsants↗

Inter- and intra-subject variability in gabapentin absorption and absolute bioavailability.

UNLABELLED: Gabapentin (GBP) is a non-metabolized, non-plasma protein bound, renally excreted antiepileptic drug that is actively absorbed via the system L amino acid transporter. Previous studies have demonstrated that gabapentin displays dose-dependent absorption. OBJECTIVES: These studies were conducted to determine inter- and intra-subject variability of gabapentin absorption. Two prospective clinical studies in healthy adult volunteers were conducted. Coefficient of variation (CV) was used to express variability of gabapentin absorption. METHODS: Study A: 400-mg single dose, randomized, cross-over study to assess bioavailability of four different gabapentin formulations (n=20, 9 males, 11 females; mean age and weight 41 years, 75.1 kg). Plasma was serially collected up to 48 h and bioavailability (F) calculated post-dose to determine concentration-time curves (AUC). All four formulations were bioequivalent, thus repeated measures analysis was performed to assess inter-and intra-subject variability. Study B: 600-mg single dose study (n=50, 15 males, 35 females; mean age and weight 31.1 years, 72.7 kg) was conducted to determine inter-subject variability in gabapentin F. Urine was collected over 48 h and bioavailability (F) calculated. Urine and plasma gabapentin concentrations were measured by HPLC-UV. RESULTS: Study A: Overall mean (CV) of GBP AUC values was 34.1+/-24 ug/h per ml. Inter-subject CV for AUC was 22.5% and intra-subject CV was 12.1%. Study B: Overall mean (SD) GBP F was 49.3+/-13.6%. Inter-subject CV of F was 27.6%. DISCUSSION: The inter-subject variability in gabapentin absorption is substantially less than that of the inter-subject variability. This indicates that one would expect a wide range in gabapentin absorption between subjects; however, a much smaller variability within a subject. The within subject variability of gabapentin is small enough that plasma drug monitoring may be used to assess gabapentin absorption for a given subject and the benefit of dose individualization.

Acetates↗

Lack of an effect of valproate concentration on lamotrigine pharmacokinetics in developmentally disabled patients with epilepsy.

PURPOSE: to describe the population pharmacokinetics of lamotrigine (LTG) in developmentally disabled (DD) patients with epilepsy and (2) to determine if there is an effect of valproate (VPA) concentration on the extent of the pharmacokinetic interaction between VPA and LTG. METHOD: a NONMEM population analysis of steady-state LTG serum concentrations was conducted in patients receiving LTG either as mono or polytherapy with either an enzyme inducer (IND)-carbamazepine (CBZ), phenytoin (PHT), phenobarbital (PB) or an inhibitor (VPA). RESULTS: sixty-two patients (33.6+/-11.3 years, 47+/-9.9 kg) receiving LTG monotherapy (n=19) or polytherapy with VPA (n=15), inducer(s) (n=32) or both (n=5) were evaluated. LTG dose of 369+/-236 mg per day (8.1+/-5.9 mg/kg per day) achieved LTG plasma concentrations of 6.8+/-3.3 microg/ml. The observed LTG monotherapy, LTG+IND, and LTG+VPA oral clearance (Cl/F) were 0. 69+/-0.2, 1.60+/-0.65 and 0.2+/-0.05 ml/kg per min, respectively. The final LTG Cl/F model was dependent on body weight, concomitant VPA, and either single or multiple inducers. Including the serum concentrations of CBZ, PHT, or VPA in the model, did not significantly improve estimates of Cl/F. CONCLUSION: LTG Cl/F in DD patients is similar to literature values for ambulatory adult patients; however, low weight adult patients have higher elimination rates, as well as an increased response to enzyme induction. VPA inhibition of LTG Cl/F is maximal within the usually accepted therapeutic range for VPA.

Adolescent↗

Efficacy of lamotrigine in institutionalized, developmentally disabled patients with epilepsy: a retrospective evaluation.

The paper evaluates the efficacy of the newer anticonvulsant lamotrigine in a developmentally disabled patient population. A retrospective evaluation was done at two institutional centres to assess adjunctive lamotrigine (Lamictal) efficacy in a developmentally disabled population. Mean seizure frequency was compared between a 2-month pre-lamotrigine baseline period and a 2-month treatment period. A 3-month lamotrigine titration phase occurred between baseline and treatment periods. Seizure frequency data was obtained from standardized, daily seizure records. Adverse effect data was obtained from medical and nursing notes. An intent to treat analysis was performed. Data were analysed using Student's t-test for paired data. We evaluated 44 centre residents (25 male, 19 female, average age 33 +/- 11 years). Mean lamotrigine dose was 272 +/- 133 mg per day. A significant reduction in seizure frequency was noted. Seizure frequency (all seizures) was 10.1 +/- 11.2 during the baseline period vs. 5.8 +/- 7.9 seizures per month during the treatment period (P = 0.002). Thirty-two percent of patients (n = 14) had greater than a 75% reduction in seizure frequency. Twenty-three percent of patients (n = 10) had a 50-74% seizure reduction. Twenty-five percent of patients (n = 11) had less than a 50% reduction in seizures, while 20% (n = 9) had an increase in seizures. A significant reduction of 48% in generalized seizures (9.5 +/- 11.6 vs. 4.9 +/- 6.5 seizures per month, P = 0.013) was noted. Reductions in partial seizure frequency of 48% (7.9 +/- 10 vs. 4 +/- 6.6 seizures per month, P = 0.16) as well as in mixed-type seizures (19.9 +/- 9.3 was vs. 15 +/- 12.1 seizures per month, P = 0.11) were also seen; however, these changes did not reach significance. Overall, lamotrigine was well tolerated by the subject population. Adjunctive treatment with lamotrigine appears to be an efficacious and well-tolerated treatment for seizures in a significant percentage of developmentally disabled patients with epilepsy.

Adolescent↗

Pediatric epilepsy surgery: neuroimaging, neuropsychology, and anticonvulsants.

Neuroimaging and the neuropsychological evaluation are important components of the presurgical evaluation for epilepsy surgery. Advances in neuroimaging over the last decade, to a large part, underlie improvements in pediatric epilepsy surgery outcomes. The neuropsychological evaluation plays an important role in the evaluation of the older child and adolescent, particularly in the evaluation of mesial temporal sclerosis. However, its role in the young child being considered for surgery remains to be defined. This section reviews the definition of medical intractability, issues related to medication withdrawal during video-EEG monitoring, recent neuroimaging advances, and the neuropsychological evaluation.

Adolescent↗

Antiepileptic drug interactions.

This article reviews the potential interactions of antiepileptic drugs (AEDs) and the pharmacokinetic and pharmacodynamic principles involved. It describes the absorptive and distributive properties of AEDs and the effects on protein binding, hepatic metabolism, and elimination resulting from co-administration of AEDs with food or other drugs. Drug behavior is a function of absorption, metabolism, distribution, and elimination. Administration of either multiple AEDs or a combination of AEDs plus drugs for other conditions can modify any of these physiologic processes, possibly resulting in complex interactions. These may include alterations in the bio-availability and absorption of a drug and changes in half-life and serum level through induction or inhibition of hepatic metabolism. In most cases, increases or decreases in serum concentrations will signal a drug interaction. In other cases, clinically significant drug interactions remain undetected owing to apparently stable serum concentrations. Co-administration of drugs may affect the rate of clearance of one or both drugs. The effect on clearance varies, owing to genetic factors, patient characteristics (age and presence of co-morbidities), and individual responses. AEDs that induce hepatic metabolism can also influence the metabolism of concomitantly administered non-epilepsy medications and can interfere with oral contraceptives, as well as vitamins D and K. Patients with renal insufficiency or advanced age may experience incomplete renal excretion and should receive reduced dosages of drug. Understanding the pharmacokinetics and pharmacodynamic properties of AEDs and the route of metabolism of all competing drugs is important for optimal management of patients with epilepsy and for prevention of avoidable drug interactions.

Anticonvulsants↗

Use of gabapentin in the treatment of neuropathic pain.

OBJECTIVE: To evaluate the role of gabapentin for the treatment of neuropathic pain. DATA SOURCES: Clinical literature was identified through MEDLINE (from 1990 to October 1999). Key search terms were gabapentin and pain. DATA SYNTHESIS: Neuropathic pain can be a problematic, chronic syndrome that is frequently refractory to current drug treatments. Gabapentin is a newer generation antiepileptic drug that is commonly used in treatment of neuropathic pain. An evaluation of clinical trials using gabapentin to treat neuropathic pain was performed. CONCLUSIONS: Gabapentin appears to be effective in treating various neuropathic pain disorders. Gabapentin may have advantages over current therapies, such as a favorable safety profile and lack of drug interactions; however, cost issues and limited experience may limit the use of gabapentin as a first-line option.

Acetates↗

A 13-year-old with an acute change in mental status.

A 13-year-old boy with Lennox-Gastaut syndrome characterized by absence, myoclonic, complex-partial, and secondarily generalized tonic-clonic seizures, presents with progressive obtundation and loss of motor and verbal skills over a 2-day period. Initial evaluation revealed therapeutic phenytoin serum concentrations. This article discusses the differential diagnosis and management approach used in this setting, as well as the appropriate interpretation of antiepileptic drug serum concentrations.

Acute Disease↗

Therapeutic monitoring of topiramate: evaluation of the saturable distribution between erythrocytes and plasma of whole blood using an optimized high-pressure liquid chromatography method.

Topiramate (TPM) reportedly binds in a saturable manner to erythrocytes but minimally to plasma proteins. Two studies were performed to evaluate this distribution phenomenon. In all studies, TPM was measured with a newly developed, optimized procedure that uses octyldecyl (C-18) solid phase sorbents disks/packed cartridges and a DB-1 methylsilicone capillary gas chromatography (GC) column. Between-run precision coefficients of variation (CVs) (n = 16) ranged from 3.6%-5.6% at concentrations from 3.0 to 15 microg/mL, with low limit of detection of 0.2 to 0.3 microg/mL. For the distribution studies, drug-free whole-blood specimens from five healthy adult volunteers were supplemented with TPM and used to test the influence of TPM concentration and HCT differences on the plasma/blood (P/B) distribution ratio of TPM. In study A, TPM concentration was varied (1-15 microg/mL) and HCT remained constant (40% +/- 5%). In study B, TPM (3 microg/mL) was added to blood specimens comprising a range of HCT values (20%-40%). Study A results were: mean TPM P/B ratios: 0%, 14.2% +/- 5%, 44.2% +/- 4%, 76% +/- 5.5% at 1, 3, 5, 15 microg/mL, respectively. Data between each group were statistically different (p < 0.001). Study B results were: mean TPM P/B ratio: 17.3% +/- 7.3%, 27.5% +/- 10.1%, 39.8% +/- 8% and 56.1% +/- 8.8% at HCT values of 40%, 32%, 26.5%, 20%, respectively. The TPM P/B ratio was significantly inversely correlated to HCT (r = -905, p < 0.001). TPM P/B partitioning was not temperature-dependent. Researchers concluded that the saturable binding of TPM to RBC is significant and is correlated to HCT. As a result, TPM in the plasma fraction of whole blood will increase when HCT decreases and as total TPM concentration in whole blood increases.

Adult↗

Vigabatrin: a novel therapy for seizure disorders.

OBJECTIVE: To review the pharmacology, pharmacokinetics, efficacy, and adverse effects of vigabatrin and its role in the management of seizure disorders. METHODS: A MEDLINE search of English-language literature from January 1993 through January 1999 was conducted using vigabatrin as a search term to identify pertinent studies and review articles. Additional studies were identified from the bibliographies of reviewed literature. The manufacturer provided postmarketing surveillance data. Priority was given to randomized, double-blind, placebo-controlled studies. FINDINGS: Vigabatrin is a selective and irreversible inhibitor of gamma-aminobutyric acid transaminase. In controlled clinical trials of vigabatrin add-on therapy in patients with uncontrolled partial seizures, 24-67% of patients achieved a < or =50% reduction in seizure frequency. Data from two comparative trials with carbamazepine monotherapy indicate that vigabatrin monotherapy reduces the frequency of partial seizures in patients with newly diagnosed epilepsy. Vigabatrin also controls infantile spasms, particularly those associated with tuberous sclerosis. Vigabatrin is more effective in patients with partial seizures than in those with generalized seizures. The drug is generally well tolerated. Headache and drowsiness were the most common adverse effects observed in controlled clinical trials; visual field defects, psychiatric reactions, and hyperactivity also have been reported. There are no known clinically significant drug interactions. CONCLUSIONS: Vigabatrin improves seizure control as add-on therapy for refractory partial seizures and may produce therapeutic benefits in the treatment of infantile spasms. Vigabatrin is generally well tolerated, with a convenient administration schedule, a lack of known significant drug interactions, and no need for routine monitoring of plasma concentrations.

Adult↗

Gabapentin bioavailability: effect of dose and frequency of administration in adult patients with epilepsy.

UNLABELLED: Gabapentin (GBP) is a non-metabolized antiepileptic drug that is eliminated by renal excretion and displays saturable, dose dependent absorption. The recommended dosing schedule for GBP is t.i.d. At large daily doses, oral bioavailability (F) may be improved by giving the daily dose more frequently. OBJECTIVE: To evaluate whether switching GBP dosage regimen from t.i.d. to q.i.d. results in increased oral bioavailability. METHODS: This study consisted of two parts; a computer simulated pharmacokinetic model and a clinical pharmacokinetic study in nine adult epileptic patients receiving 3600 mg/day and 11 receiving 4800 mg/day. All patients were evaluated during both t.i.d. and q.i.d. regimens. F were determined by calculation of percent of dose excreted unchanged using steady-state 24-h urine collections and were compared using a paired t-test. RESULTS: At 3600 mg/day, mean F following t.i.d. and q.i.d. dosing were 38.7+/-22.1% and 40.0+/-18.9%, respectively (P=0.738). At 4800 mg/day, mean F following t.i.d. and q.i.d. dosing were 29.2+/-16.2% and 35.6+/-17.6%, respectively (P=0.006). DISCUSSION: Good agreement was observed between values from this study and predicted values based on the pharmacokinetic model. Improved GBP F at doses of 3600 mg/day was not achieved with more frequent drug administration, and thus is not warranted. At 4800 mg/day, a 22% increase in F was observed with more frequent drug dosing. CONCLUSION: GBP F may be significantly increased by q.i.d. versus t.i.d. dosing, depending upon dose level. This increase in F however must be balanced against the inconvenience of more frequent dosing. Therapeutic drug level monitoring may aid in the evaluation of such pharmacokinetic maneuvers.

Acetates↗

Gabapentin absorption: effect of mixing with foods of varying macronutrient composition.

OBJECTIVE: To compare the oral absorption profile of gabapentin following administration of the contents of opened capsules that were mixed with food vehicles of varied macronutrient (protein) composition. DESIGN: An unblinded, randomized, single-dose, four-way crossover pharmacokinetic study in nine healthy adult men and women volunteers. METHODS: Following an overnight fast, a single 600-mg dose of gabapentin (2 x 300-mg Neurontin capsules) was given either as an intact capsule swallowed with 120 mL of tap water (control, phase I), or after capsule contents were opened and mixed with; 4 oz. of applesauce (phase II), 120 mL of orange juice (phase III), or 4 oz. of fat-free chocolate pudding (phase IV). Subjects fasted for 4 hours following drug ingestion. Serial venous blood samples were obtained over 24 hours to determine gabapentin serum concentrations. Pharmacokinetic variables including AUC, maximum serum concentration (Cmax), and time to maximum serum concentration (tmax) were calculated by using standard noncompartmental methods. Subjects served as their own controls, and were randomly crossed over following a minimum 7-day washout period. Statistical analysis was performed by using ANOVA and Student's t-test where appropriate. RESULTS: No statistically significant differences in any kinetic variable were found between any study arm. A trend was noted for a modest increase in both Cmax and AUC in phase IV (chocolate pudding) compared with control (+18.6% and +13.2%, respectively). In a comparison of protein (phase IV) versus nonprotein phases (phases I-III), gabapentin AUC was 26% greater (47.28+/-14.65 vs. 37.43+/-9.78 microg/mL x h; p = 0.03), and Cmax was 32% higher (4.72+/-1.04 vs. 3.56+/-0.92 microg/mL; p = 0.003). CONCLUSIONS: Opening and mixing the contents of gabapentin capsules does not significantly impair drug absorption. This may be a viable administration option for patients who are unable to swallow intact capsules. Dietary macronutrient composition (i.e., protein) may favorably influence gabapentin oral absorption.

Acetates↗