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Biomedical subjects

J C Cloyd

Publications and source records attributed to J C Cloyd.

At least 19 recordsLinked to original sources

Pharmacological and clinical aspects of antiepileptic drug use in the elderly.

In this article, epidemiological and clinical aspects related to the use of antiepileptic drugs (AEDs) in the elderly are highlighted. Studies have shown that people with epilepsy receiving AED treatment show important deficits in physical and social functioning compared with age-matched people without epilepsy. To what extent these deficits can be ascribed to epilepsy per se or to the consequences of AED treatment remains to be clarified. The importance of characterizing the effects of AEDs in an elderly population is highlighted by epidemiological surveys indicating that the prevalence of AED use is increased in elderly people, particularly in those living in nursing homes. Both the pharmacokinetics and the pharmacodynamics of AEDs may be altered in old age, which may contribute to the observation that AEDs are among the drug classes most commonly implicated as causing adverse drug reactions in an aged population. Age alone is one of several contributors to alterations in AED response in the elderly; other factors include physical frailty, co-morbidities, dietary influences, and drug interactions. Individualization of dosage, avoidance of unnecessary polypharmacy, and careful observation of clinical response are essential for an effective and safe utilization of AEDs in an elderly population.

Aged↗

Lower phenytoin serum levels in persons switched from brand to generic phenytoin.

After generic phenytoin (PHT) was marketed, the authors identified eight adult patients (ages 34 to 49) whose seizures increased enough to require intervention after switching to generic PHT. The mean total PHT concentration on brand (before generic) was 17.7 +/- 5.3 mg/L, decreased to 12.5 +/- 2.7 mg/L with generic, and increased to 17.8 +/- 3.9 mg/L after brand was re-introduced. Brand and generic PHT do not yield equivalent concentrations in some patients and substitution should not be permitted without physician notification.

Adult↗

Safety and tolerance of rapidly infused Depacon. A randomized trial in subjects with epilepsy.

BACKGROUND: Valproate sodium injection (Depacon(R)) is an intravenous form of valproate for use in absence and complex partial seizures when circumstances preclude oral administration. Certain situations may warrant larger and more rapid infusions than permitted by the original labeling. This study evaluated the safety of more rapid infusions. METHODS: Subjects with epilepsy were randomized in a 2:1 ratio to receive up to 15 mg/kg of valproate sodium infused at 3.0 or 1.5 mg/kg/min. Up to four infusions were allowed within 24 h to achieve target plasma valproate concentrations of 50-100 mcg/ml. Primary safety endpoints were the changes in the 5-min and minimum post-first infusion blood pressures (BPs). RESULTS: One hundred twelve subjects were treated, (3.0 mg/kg/min group: n=72, 1.5 mg/kg/min group: n=40). No significant treatment differences were detected for changes in the primary BP endpoints. Two subjects in the 3.0 mg/kg/min group had potentially clinically significant low systolic BP values during the study. Similar proportions of subjects in the two groups reported adverse events during or within 6 h following the first infusion. CONCLUSIONS: Valproate sodium injection dosages up to 15 mg/kg and rates of 1.5 and 3.0 mg/kg/min were well tolerated in this population.

Adolescent↗

Effect of food on absorption of Dilantin Kapseals and Mylan extended phenytoin sodium capsules.

BACKGROUND: Because of phenytoin's narrow therapeutic index and nonlinear pharmacokinetics, food-induced alterations in absorption may markedly influence drug concentrations and, in turn, safety and effectiveness. Potential food-associated differences between 100-mg Mylan (Mylan Pharmaceuticals) extended-release phenytoin sodium capsules and Parke-Davis 100-mg Dilantin Kapseals were examined. METHODS: A single-dose, two-way crossover study was conducted in 24 healthy subjects to determine the effect of a high-fat meal on the pharmacokinetics of both formulations. Pharmacokinetic parameters were estimated by noncompartmental methods. The impact of switching products on steady-state phenytoin concentrations was investigated through simulation using pharmacokinetic data previously obtained from 30 epileptic patients. RESULTS: Based on AUC(0-infinity), bioavailability of the Mylan product administered with food was 13% lower than that observed with Dilantin Kapseals. Simulations of substituting the Mylan product for Dilantin suggested that the 13% decrease in bioavailability would result in a median 37% decrease (range 19 to 58%) in plasma phenytoin concentrations when the drug is given with food; in 46% of patients, phenytoin concentrations would likely fall below the therapeutic range of 10 to 20 mg/L. Simulations of substituting Dilantin for the Mylan product suggested that the 15% increase in bioavailability would result in a median 102% increase (range 24 to >150%) in plasma phenytoin concentrations, with 84% of patients having phenytoin concentrations above the therapeutic range. CONCLUSIONS: Results suggest that when taking phenytoin sodium with food, product switches may result in either side effects or loss of seizure control.

Adolescent↗

Antiepileptic drug pharmacokinetics and interactions: impact on treatment of epilepsy.

An understanding of epilepsy therapy's pharmacokinetic and drug interaction principles-combined with knowledge of antiepileptic drug (AED) clinical pharmacology-allows more effective use of these drugs. The most desirable pharmacokinetic characteristic is a linear relationship between dose and steady-state concentration, as this determines the ease or difficulty in determining the appropriate dose. Drug-drug interactions affecting AED metabolism are common, clinically important, and, until recently, often unpredictable. Advances in molecular biology have identified specific enzymes responsible for AED metabolism and interactions. Clinicians now can identify potential interactions and avoid or manage them by adjusting drug dosage. Most newer AEDs follow or approximate linear pharmacokinetics, are absorbed extensively and consistently, are not significantly bound to plasma proteins, do not form active metabolites, and have few, if any, drug interactions. In cases where interactions occur between newer AEDs and other drugs, knowledge of these interactions reduces the likelihood of serious adverse events. The pharmacokinetics of the newer AEDs simplify drug dosing and monitoring and should lead to improved patient care.

Animals↗

Rectal diazepam gel for treatment of acute repetitive seizures. The North American Diastat Study Group.

The purpose of these investigations was to determine from combined data the response to rectal diazepam (DZP) gel (Diastat [Athena Neurosciences, South San Francisco, CA]) in home treatment of children with episodes of acute repetitive seizures (ARS). A subset of patients aged 2-17 years were selected from two prospective placebo-controlled studies of children and adults. In both studies a prospective, double-blind, placebo-controlled design was used. The treatment groups (68 DZP; 65 placebo) did not differ significantly in age, race, seizure type or etiology, or in the median number of ARS episodes per month before study entry. DZP-treated children demonstrated a significant reduction in median seizure frequency compared with the placebo group (0.00 vs 0.25 seizures per hour, P = 0.001). Significantly more DZP-treated children remained seizure free during the observation period (40 vs 20, P = 0.001). Somnolence was the only adverse effect present significantly more often in the DZP-treated children (25.0% vs 7.7%, P = 0.0095). There were no instances of serious respiratory depression. Rectal DZP was demonstrated to be an effective and safe treatment to abort an episode of ARS in a child and, additionally, lessened the likelihood of seizure recurrence within the next 12 hours.

Acute Disease↗

A comparison of rectal diazepam gel and placebo for acute repetitive seizures.

BACKGROUND: Acute repetitive seizures are readily recognizable episodes involving increased seizure frequency. Urgent treatment is often required. Rectal diazepam gel is a promising therapy. METHODS: We conducted a randomized, double-blind, parallel-group, placebo-controlled study of home-based treatment for acute repetitive seizures. Patients were randomly assigned to receive either rectal diazepam gel, at a dosage varying from 0.2 to 0.5 mg per kilogram of body weight on the basis of age, or placebo. Children received one dose at the onset of acute repetitive seizures and a second dose four hours later. Adults received three doses -- one dose at onset, and two more doses 4 and 12 hours after onset. Treatment was administered by a care giver, such as a parent, who had received special training. The number of seizures after the first dose was counted for 12 hours in children and for 24 hours in adults. RESULTS: Of 125 study patients (64 assigned to diazepam and 61 to placebo) with a history of acute repetitive seizures, 91 (47 children and 44 adults) were treated for an exacerbation of seizures during the study period. Diazepam treatment was superior to placebo with regard to the outcome variables related to efficacy: reduced seizure frequency (P<0.001) and improved global assessment of treatment outcome by the care giver (frequency and severity of seizures and drug toxicity) (P<0.001). Post hoc analysis showed diazepam to be superior to placebo in reducing seizure frequency in both children (P<0.001) and adults (P=0.02), but only in children was it superior with regard to improvement in global outcome (P<0.001). The time to the first recurrence of seizures after initial treatment was longer for the patients receiving diazepam (P<0.001). Thirty-five patients reported at least one adverse effect of treatment; somnolence was the most frequent. Respiratory depression was not reported. CONCLUSIONS: Rectal diazepam gel, administered at home by trained care givers, is an effective and well-tolerated treatment for acute repetitive seizures.

Acute Disease↗

Antiepileptic drug use in nursing home residents: effect of age, gender, and comedication on patterns of use.

PURPOSE: Examine antiepileptic drug (AED) use in nursing homes by age, gender, and use of comedication that can interact with AEDs. METHODS: Two point-prevalence evaluations of AED use from computerized medical records of nursing home residents throughout the United States (set 1, 43,757; set 2, 41,386) 65 years and older serviced by PHARMERICA. RESULTS: 10.5% of residents received an AED. Of the age group 65-84 years, 15 % received an AED compared with 6.1% of those 85 years or older (p < 0.001). Gender differences were present; 13.4% of the male residents and 9.4% of the female residents were treated with an AED (p < 0.001). The most frequently prescribed AEDs were phenytoin, carbamazepine, clonazepam, or phenobarbital. The average number of routine medications taken by AED recipients was 5.6, greater than the average of 4.6 for other residents. CONCLUSIONS: AEDs are extensively prescribed for elderly nursing home residents. Men and persons aged 65-85 years were more likely to receive AEDs than were women or those older than 85 years. AED recipients receive more routine medications than do other residents, including co-medications that alter hepatic metabolism and clinical response. The reasons for age and gender differences are unclear and require further study.

Adverse Drug Reaction Reporting Systems↗

A single-blind, crossover comparison of the pharmacokinetics and cognitive effects of a new diazepam rectal gel with intravenous diazepam.

PURPOSE: The objective of this study was to compare the pharmacokinetics and cognitive effects of a new diazepam (DZP) rectal gel (Diastat) with intravenously administered DZP. METHODS: Twenty healthy volunteers were enrolled in a single-blind, randomized, double-dummy, two-period, crossover study. Subjects received either 15 mg of DZP rectal gel or 7.5 mg of DZP by intravenous infusion. Blood samples for DZP and desmethyldiazepam analysis were obtained before the dose and from 3 min to 240 h after the dose. Heart rate and blood pressure were measured over the first 24-h period. Subjects also completed five repetitions of a neuropsychological test battery over the first 8-h period. RESULTS: Diazepam rapidly appeared in plasma after rectal administration, exceeding 200 ng/mL within 15 min and reaching an initial maximum of 373 ng/ml at 45 min and a second maximum of 447 +/- 91.1 ng/ml at approximately 70 min. The absolute bioavailability of DZP rectal gel was 90.4%. Subjects receiving intravenous DZP were less alert and performed less efficiently on the WAIS Digit Symbol test 6 min after the dose. Subjects receiving DZP rectal gel performed less well on the WAIS Digit Span test 1 h after the dose and required more time to complete the Letter Cancellation and Grooved Pegboard tests 1 and 2 h after drug administration. CONCLUSIONS: Diastat displayed rapid, consistent absorption and was well tolerated. Alterations in cognition were mild and dissipated within 4 h of drug administration. This new rectal drug-delivery system offers an easy, safe, and bioavailable method to administer DZP.

Administration, Rectal↗

Failure of absorption of gabapentin after rectal administration.

PURPOSE: We wished to determine the extent of absorption of gabapentin (GBP) after rectal administration to children on maintenance therapy. METHODS: Two children scheduled for extensive surgery received GBP rectally and orally. A pharmacokinetic profile was derived after each route of administration. RESULTS: Serum GBP levels after rectal administration decreased at a rate similar to their rate of decrease after oral administration. However, GBP concentrations were much lower after rectal administration; therefore, we concluded that the aqueous solution was poorly absorbed rectally. The GBP half-life (t1/2) for the 2 children after oral doses were 4.2 and 4.8 h. CONCLUSIONS: Rectal administration of GBP is not satisfactory when oral administration is interrupted. When oral GBP therapy is temporarily discontinued, clinicians should consider administration of alternative antiepileptic drugs (AEDs) that can be administered parenterally or rectally.

Acetates↗

Antiepileptics in the elderly. Pharmacoepidemiology and pharmacokinetics.

OBJECTIVE: To evaluate antiepileptic (AE) use by nursing home residents. DATA SOURCES: Medical records for 996 residents from six Minnesota nursing homes (5% of the nursing home residents in the Minneapolis-St Paul area) compared with medication records of 45,405 nursing home residents nationwide serviced by Pharmacy Corporation of America, Boulder, Colo. STUDY SELECTION: Reports comparing pharmacokinetics in younger adults and elderly volunteers or patients with epilepsy who were given AEs. DATA SYNTHESIS: Among Minnesota nursing home residents, 7.7% were taking AEs. Usage in a national survey was 10.1%. A review of published studies involving small numbers of elderly subjects or patients given phenytoin sodium, valproic acid, or carbamazepine demonstrates decreased protein binding and intrinsic clearance and increased half-life with advancing age. Concomitant drugs, especially those with central nervous system effects, can lower the concentration at which AEs cause dose-related side effects, thereby narrowing therapeutic ranges. CONCLUSION: Approximately 10% of nursing home residents receive AEs, usually with other maintenance medications. In 82% of residents receiving an AE, the indication was treatment of a seizure disorder. Other indications included aggressive behavior, essential tremors, and neurologic pain. Age-related alterations in AE pharmacokinetics result in protein-binding changes and decreases in drug elimination. Measurement of unbound drug concentrations may be helpful when altered binding is suspected or clinical response does not correlate with total AE concentration. Concomitant drugs pose the risk for significant drug interactions and adverse reactions. An understanding of the underlying pharmacokinetic processes, including the need of most elderly patients for lower doses and longer dosing intervals, permits more effective management of therapy and reduces the risk for adverse reactions.

Age Factors↗

Valproic acid pharmacokinetics in children. IV. Effects of age and antiepileptic drugs on protein binding and intrinsic clearance.

Pharmacokinetic data from 48 children who were taking valproic acid were analyzed by multiple stepwise linear regression. Children who were receiving enzyme-inducing antiepileptic drugs (n = 27) had greater (p < 0.01) clearances, elimination rates, and dosage requirements and greater (p < 0.05) variability in pharmacokinetic values than patients receiving monotherapy. Age and polytherapy explained most of the interpatient variability in total (r2 = 0.80; p < 0.001) and intrinsic (r2 = 0.77; p < 0.001) clearances and the elimination rate (r2 = 0.61; p < 0.002). Free fraction variability was related to valproate concentration and phenobarbital (r2 = 0.47; p < 0.001). Distribution volume variance was associated with free fraction (r2 = 0.48; p < 0.001). The effect of age and polytherapy on valproate clearance is primarily attributable to changes in metabolism rather than in protein binding. Valproic acid dosage requirements are greater and more variable for children who are receiving other enzyme-inducing antiepileptic drugs.

Adolescent↗

Comparison of sprinkle versus syrup formulations of valproate for bioavailability, tolerance, and preference.

We compared a new coated-particle formulation of valproate (Depakote Sprinkle) capsules with valproic acid (Depakene) syrup for bioavailability, side effects, and patient and parent preference. Twelve children with epilepsy, aged 5 to 16 years, participated in this randomized, two-period, crossover study. They were assigned to a 7-day regimen with one formulation and then crossed over to the other; the drug was given every 12 hours. On day 7, blood samples collected during a 12-hour period were analyzed for the presence of valproate. At the study's end, parents and children were asked structured questions regarding formulation preference and adverse events. The extent of absorption from sprinkle equaled that from syrup (relative bioavailability = 1.02), but absorption was slower (time to maximum concentration = 4.2 vs 0.9 hour; p less than 0.01). Fluctuations in serum concentrations were less with sprinkle (34.8% vs 62.3%; p less than 0.01). Sprinkle was preferred by 9 of the 12 parents because of east of administration, and by nine of the children because of improved palatability. We conclude that sprinkle may be substituted for syrup without changing the daily dose. Furthermore, sprinkle, because of its prolonged absorption, may be given every 12 hours to children receiving monotherapy. Compliance may be enhanced because of the more convenient dosing schedules and the high degree of patient and parent acceptance.

Absorption↗

Absorption characteristics of a new valproate formulation: divalproex sodium-coated particles in capsules (Depakote Sprinkle).

To determine the absorption characteristics of a new dosage form of divalproex sodium consisting of coated particles in a pull-apart capsule (Depakote Sprinkle, Abbott Laboratories, North Chicago, IL), two absorption studies were conducted in adult volunteers. Ten fasting men participated in a single-dose, crossover study comparing absorption from Sprinkle capsules versus enteric-coated tablets (study 1). Eleven men participated in a multidose study (study 2) in which Sprinkle capsules or enteric-coated tablets were given once every 24 hours for three doses under fasting and nonfasting conditions. In study 1, the extent of absorption from Sprinkle capsules equalled that from enteric-coated tablets. Compared to enteric-coated tablets, Sprinkle capsules had earlier absorption onset, 1 versus 2.6 hours (P less than .05), slightly slower absorption rate, time to reach peak (tmax) of 4.0 versus 3.4 hours (P less than .1), and lower maximum peak plasma drug concentration (Cmax), 20.7 versus 25.9 mcg/mL (P less than .05). In study 2, food intake did not affect onset or extent of absorption nor maximum concentration, but did slow rate of absorption. Time to reach peak concentration was 2.7 hours for tablet (fasting), 3.3 hours for capsule (fasting), and 4.8 hours for capsule (nonfasting) (P less than .05). Intrasubject absorption performance from the three doses was highly consistent, regardless of food intake. These data indicate that Sprinkle capsules possess desirable absorption characteristics in a form that makes ingestion easier for patients who have difficulty taking other valproate dosage forms.

Adolescent↗

Dose-dependent pharmacokinetics of carbamazepine in rats: determination of the formation clearance of carbamazepine-10,11-epoxide.

The dose dependency of carbamazepine pharmacokinetics was characterized in rats, a common test animal for antiepileptic drug efficacy. With a randomized Latin square schedule, 5, 10, and 20 mg/kg doses of carbamazepine were injected intravenously into six Sprague-Dawley rats followed by the administration of a 5 or 10 mg/kg i.v. dose of CBZ-E to each rat. Following administration, the concentrations of CBZ and carbamazepine-10,11-epoxide (CBZ-E) in whole blood were determined by a reverse-phase HPLC assay. Plasma protein binding of both carbamazepine and CBZ-E was linear over the concentration range observed in this study. Carbamazepine concentration-time plots were log-linear, but the slopes were not parallel. Carbamazepine total-body clearances were 15.1 +/- 3.26, 13.4 +/- 5.66, and 10.0 +/- 3.11 ml/min/kg at the 5, 10, and 20 mg/kg doses, respectively (significance of difference between the 5 and the 20 mg/kg dose = 0.06 less than P less than 0.05; Kruskal-Wallis test, Dunn's procedure). However, the formation clearance to CBZ-E did not change, suggesting that metabolism via other pathways was decreased at higher carbamazepine doses.

Animals↗