OBJECTIVE:Treatment with valproic acid (VPA) is associated with risk of liver toxicity. The aim of this study was to use a precision approach to investigate pharmacokinetic variability of both total and unbound serum concentrations of VPA and perform complementary biochemical analyses to evaluate possible markers of toxicity in a clinical setting. METHODS:Therapeutic drug monitoring (TDM) data (2018-2022) including total and free unbound serum concentrations of VPA, measurements of concomitantly used antiseizure medications, and biochemical analyses of ammonia and liver enzymes were used. RESULTS:We included 704 measurements from 288 patients (131/157 female/male, median age = 25 years, range = 0-74). Median VPA dose was 1050 mg/day (range = 150-3900); total and unbound VPA concentrations were 430 μmol·L-1 (range = 57-866) and 44 μmol·L-1 (range = 15-125), respectively. Extensive pharmacokinetic intraindividual variability of VPA was observed with long-term TDM, the coefficient of variability being 21% (range = 6%-55%) in those with five or more measurements (n = 31). Comedication was noted in 85%, where lamotrigine, clobazam, or levetiracetam were most common. Enzyme inducers/inhibitors and age affected the concentration/dose ratio of both total and unbound VPA. There was a significant linear correlation between total exposure of VPA (n = 379; r2 = .014, p < .05) and ammonia levels but the correlation was not significant with unbound VPA (n = 189; r2 = .0045). Supplementary clinical data were studied in 16 patients with high ammonia levels (>85 μmol·L-1), and 14 of 16 had signs of toxicity. Serum alanine aminotransferase (ALT) was not correlated with total/unbound VPA concentrations, and no one had a greater than threefold increase in ALT as a sign of toxicity. SIGNIFICANCE:Combined use of TDM including total and unbound VPA serum concentrations and biochemical analyses of ammonia and liver enzymes are useful as tailored precision monitoring to aid clinical decision-making in patients with suspected symptoms of toxicity.
OBJECTIVE:Cannabidiol (CBD) (Epidyolex) is a new antiseizure medication (ASM) for rare and severe epileptic syndromes. We aimed to investigate the pharmacokinetic variability of CBD to elucidate relationships between doses, serum concentrations, metabolites, and biochemical markers of toxicity by using therapeutic drug monitoring (TDM) data. METHODS:Data on serum concentrations of all ASMs, CBD, and the active metabolite 7-hydroxy-cannabidiol (7-OH-CBD) were collected (January 2022 to June 2023) at the Section for Clinical Pharmacology, National Centre for Epilepsy, Oslo University Hospital. RESULTS:Data from 52 patients were included: 122 serum concentration measurements (1-7 per patient); 48% female, mean age 23 (range 3-55) years. At maintenance (n = 34), the mean daily dose was 535 (SD 224) mg, that is, 10.03 (standard deviation [SD] .49) mg/kg/day, serum concentration .26 (SD .14) for CBD and .13 (SD .10) μmol/L for 7-OH-CBD. Reference ranges of .15-.50 μmol/L for CBD and .04-.25 μmol/L for 7-OH-CBD are proposed, which included 80% of measurements. There was a linear correlation between CBD dose to concentration and CBD to CBD-7-OH concentrations (r2 = .39 and .38) (p < .05). The hepatic marker alanine aminotransferase (ALT) increased on average 37%, demonstrating a moderate effect on liver function. Intra-individual coefficients of variation (CVs) were 32% (SD 17) for CBD and 48% (SD 24) for 7-OH-CBD (n = 15, ≥3 measurements). Twenty different ASMs were used: clobazam (n = 24), valproate (n = 17), and stiripentol (n = 8) were most common. The mean concentration ratio of desmethyl-clobazam/clobazam increased by 140% (7.29-17.5; p < .05) but was variable, pointing to enzyme inhibition by CBD. SIGNIFICANCE:This observational study with TDM data revealed extensive pharmacokinetic variability of CBD in patients with refractory epilepsy. The results demonstrate the need for close follow-up and use of TDM, including biochemical markers of toxicity, for individualized treatment with CBD.
The 17th Eilat Conference on New Antiepileptic Drugs and Devices took place in Madrid, Spain on May 5-8, 2024. As usual, the core part of the conference consisted of presentations on investigational drugs at various stages of development for epilepsy-related indications. Summaries of information on compounds in preclinical or early clinical development are included in an accompanying publication (Part I). In this article, we provide summaries for five compounds in more advanced clinical development, i.e. compounds for which some information on antiseizure activity in individuals with epilepsy is available. These investigational treatments include azetukalner (XEN1101), a potent, KV7.2/7.3-specific potassium channel opener in development for the treatment of focal seizures, generalized tonic-clonic seizures, and major depressive disorder; bexicaserin (LP352), a selective 5-HT2C receptor superagonist in development for the treatment of seizures associated with developmental and epileptic encephalopathies; radiprodil, a selective negative allosteric modulator of NR2B subunit-containing N-methyl-D-aspartate glutamate receptors, in development for the treatment of seizures and behavior manifestations associated with disorders caused by gain-of-function mutations in the GRIN1, -2A, -2B, or -2D genes; soticlestat (TAK-935), a selective inhibitor of cholesterol 24-hydroxylase in development for the treatment of seizures associated with Dravet syndrome and Lennox-Gastaut syndrome; and STK-001, an antisense oligonucleotide designed to upregulate Nav1.1 protein expression and improve outcomes in individuals with Dravet syndrome. The diversity in mechanisms of action of these agents illustrates different approaches being pursued in the discovery of novel treatments for seizures and epilepsy. For two of the compounds discussed in this report (azetukalner and soticlestat), clinical evidence of efficacy has already been obtained in a randomized placebo-controlled adjunctive-therapy trial. For the other compounds, adequately powered placebo-controlled efficacy trials have not been completed to date.
Background: Rufinamide and stiripentol, orphan drugs used in Lennox–Gastaut and Dravet syndromes, respectively, are antiseizure medications (ASMs), often administered to children; however, pharmacokinetic studies are lacking. The authors compared the pharmacokinetic variability of these drugs with respect to the dose, serum concentrations, comedication, age, and duration of treatment. Methods: Children and adolescents (<18 years) whose serum concentrations were measured were retrospectively identified from the therapeutic drug monitoring (TDM) databases at 2 national epilepsy centers in Norway and Denmark (2012–2021). Results: Data from 165 patients (56% boys/44% girls) treated with rufinamide and 52 patients (50% boys/50% girls) treated with stiripentol were included. For rufinamide, the median age was 10 (range 2–17) years, dose 23 (3–73) mg/d, and serum concentration 34 (3–227) µmol/L [8.1 mg/L (0.71–54.0 mg/L)]. For stiripentol, the median age was 8.5 (range 1–17) years, dose 37 (18–76) mg/d, and serum concentration 33 (4–113) µmol/L [7.7 mg/L (0.93–26.3 mg/L)]. The concomitant use of 1–9 other ASMs during the data collection was noted. Pharmacokinetic variability, calculated as the concentration/(dose/kg) ratio, ranged from 0.26 to 11.31 (µmol/L)/(mg/kg) for rufinamide and 0.17–1.52 (µmol/L)/(mg/kg) for stiripentol. The intraindividual coefficients of variation ranged widely, from 5% to 110% for rufinamide and 11%–117% for stiripentol. The treatment period was at least 5 years in 50% of patients. No statistically significant effects of age, sex, or ASM comedication were observed, possibly due to the small sample size and heterogeneous groups with variable seizure situations, comorbidities, and changes in comedication and physiology. Conclusions: This study demonstrates considerable pharmacokinetic variability in and between patients for both drugs and similar use in terms of age, burden of comedication and retention rates. TDM may be useful in the clinical setting to monitor and optimize treatment in this vulnerable patient group.
PURPOSE:Sulthiame is an antiseizure medication increasingly used for epilepsy. The aim of this study was to investigate the pharmacokinetic variability of sulthiame in children and adults with epilepsy with respect to age, comedication, dose, serum concentration, and biochemical markers of toxicity in a clinical setting. METHOD:Retrospective quantitative data from the therapeutic drug monitoring (TDM) database at the Section for Clinical Pharmacology, the National Center for Epilepsy, Norway (2015-2021), were used. RESULTS:TDM data from 326 patients (127 female/199 male) were included [mean age, 11.4 (range 2-44) years; mean weight, 41 (range 14-109) kg]. Interindividual pharmacokinetic variability in the concentration/(dose/body weight) (C/(D/kg)) ratio was 16-fold; intraindividual variability was up to 8-fold (coefficient of variation = 10%-78%). Young children (younger than 6 years) had a significantly lower C/(D/kg) ratio than older age groups ( P < 0.05). Various comedications did not significantly affect the C/(D/kg) ratio, possibly owing to the small sample size. However, CYP2C19-mediated inhibition by sulthiame was indicated because patients using clobazam and sulthiame (n = 28) had a 3.5-fold higher N-desmethylclobazam C/(D/kg) ratio than those using neutral comedication (n = 45; P < 0.001). Patients with pH values below the adjusted normal range (7.32-7.42; n = 15) had a 33% higher sulthiame concentration than those with normal pH values (n = 22; P < 0.05). Blood gas measurements, especially pH, may serve as markers of toxicity and can be used in combination with clinical data when toxicity is suspected. CONCLUSIONS:This study revealed the extensive intraindividual and interindividual pharmacokinetic variability of sulthiame, with age as a contributing factor. Sulthiame has clinically relevant interactions with clobazam. The use of TDM and pH as a biochemical marker may contribute to individualized and safe sulthiame treatment.
Antiseizure medications (ASMs) are the cornerstone of treatment for patients with epilepsy. Several new ASMs have recently been introduced to the market, making it possible to better tailor the treatment of epilepsy, as well as other indications (psychiatry and pain disorders). For this group of drugs there are numerous pharmacological challenges, and updated knowledge on their pharmacodynamic and pharmacokinetic properties is, therefore, crucial for an optimal treatment outcome. This review focuses on educational approaches to the following learning outcomes as described by the International League Against Epilepsy (ILAE): To demonstrate knowledge of pharmacokinetics and pharmacodynamics, drug interactions with ASMs and with concomitant medications, and appropriate monitoring of ASM serum levels (therapeutic drug monitoring, TDM). Basic principles in pharmacology, pharmacokinetic variability, and clinically relevant approaches to manage drug interactions are discussed. Furthermore, recent improvements in analytical technology and sampling are described. Future directions point to the combined implementation of TDM with genetic panels for proper diagnosis, pharmacogenetic tests where relevant, and the use of biochemical markers that will all contribute to personalized treatment. These approaches are clinically relevant for an optimal treatment outcome with ASMs in various patient groups.
BACKGROUND:The use of antiseizure medications (ASMs) in the pediatric population is poorly studied. The purpose of this study was to investigate changes in the use of ASMs in children and adolescents compared to adults, and to elucidate safety considerations of certain drugs. METHOD:In this population-based pharmacoepidemiological study we used the Norwegian Prescription Database (NorPD), 2009-2018. The use of ASMs is presented as 1-year prevalence per 1000: number of ASM users in a year * 1000 / number of inhabitants that year. Variables included predetermined 5-year age groups, gender, ASMs, diagnosis-specific reimbursement codes, user, and population numbers. Selected ASMs used for specific indications or subgroups included ethosuximide, sulthiame, rufinamide, stiripentol, and clobazam. Gender differences in the use of valproate was examined due to safety considerations in girls/women. RESULTS:The total number of ASM users (all indications) for the age groups 0-19 and 20-59 years was 5807 and 47,481 respectively in 2009, and 5906 and 61,447 respectively in 2018. The 1-year prevalence for children/adolescents (0-19 years) using ASMs in epilepsy remained stable from 2008 to 2018, 4.3-4.2/1000 inhabitants, as compared to 8.2-7.6/1000 in adults (20-59 years). Valproate, lamotrigine, and levetiracetam were the three most used ASMs in epilepsy in children/adolescents, similar to adults. The selected ASMs were mainly used in children/ adolescents, accounting for 0.74/1000 in 2018 versus 0.17/1000 in adults. A significant increase was seen for sulthiame (8-fold), ethosuximide (4-fold), clobazam (3-fold), and stiripentol (2-fold). The use of ASMs in non-epilepsy indications was limited and stable (17% in 2018); mainly lamotrigine in psychiatry in adolescents (15-19 years). This finding was in contrast to extensive non-epilepsy use in adults (71% in 2018). CONCLUSION:Changes in the use of ASMs in children/adolescents differ as compared to adults, most notably extensive and increasing use of selected ASMs and limited non-epilepsy. This is an important part of pharmacovigilance and patient safety evaluations.
Purpose: Brivaracetam (BRV) is one of our latest antiseizure medications (ASMs). It is an analogue of levetiracetam with limited real-life experience. The purpose of this study was to evaluate clinical experience with BRV with focus on efficacy, tolerability and pharmacokinetic variability among adult patients with difficult-to-treat epilepsy. Methods: We retrospectively collected clinical and laboratory data from patients aged > 18 years who initiated treatment with BRV during 2016-2019 and were followed for > one year or cessation of BRV. Results: The study cohort consisted of 120 adults with drug-resistant epilepsy. Serum concentrations of BRV were available in 72 patients. After one-year follow-up, the retention rate of BRV was 52%. Fifty-seven patients (48%) were responders (>50 reduction of seizure frequency), of whom six became seizure free. Adverse effects were reported in 78 patients (65%); 37 (31%) experienced psychiatric problems like increased irritability, anxiety and depressive symptoms. The mean daily BRV dose was 159 mg (SD 80 mg) and the mean serum concentration 5.4 mu mol/L (SD 4.1 mu mol/L). In 24 patients, BRV replaced levetiracetam. Pharmacokinetic variability between patients was considerable; 14-fold variation in concentration/dose (C/D)-ratios. Concomitant use of enzymeinducing ASMs decreased the C/D-ratio by 48%. There were no significant differences in serum concentrations between responders vs. non-responders, or those who experienced adverse effects or not. Conclusion: After > 1 year of treatment with BRV, we found a responder rate of 48% in adult patients with difficult-to-treat epilepsy. The drug was largely well tolerated, but one third experienced psychiatric adverse effects. The combination of clinical and pharmacokinetic data provides insight into factors contributing to efficacy and tolerability of new ASMs.
We present pharmacokinetic data during pregnancy and lactation for brivaracetam, lacosamide and perampanel based on two case studies. Patient 1 used brivaracetam as monotherapy and gave birth to twins. Patient 2 used a combination of brivaracetam, lacosamide and perampanel. In both patients, serum drug concentrations were monitored throughout the pregnancies. Drug concentrations were also analysed in umbilical cord blood at birth, in serum from the offspring and in breastmilk after five days and 3-11 weeks. There were minor changes in concentration/dose-ratios for brivaracetam and lacosamide. The mean milk/serum ratios for brivaracetam and lacosamide were 0.71 and 0.83, respectively, five days and 3-5 weeks after delivery. The perampanel serum concentration increased by up to 80% in Patient 2 during the last part of gestation. The mean milk/serum-ratio for perampanel was 0.13, unchanged from five days to five weeks after delivery. Whereas serum concentrations of brivaracetam and lacosamide remained fairly stable throughout pregnancy, perampanel concentrations seemed to steadily increase towards the end. The distribution to milk was considerable for brivaracetam and lacosamide and low for perampanel. More studies on mother-infant pairs are warranted to confirm these results in larger groups.
Developmental and epileptic encephalopathies (DEEs) are among the most challenging of all epilepsies to manage, given the exceedingly frequent and often severe seizure types, pharmacoresistance to conventional antiseizure medications, and numerous comorbidities. During the past decade, efforts have focused on development of new treatment options for DEEs, with several recently approved in the United States or Europe, including cannabidiol as an orphan drug in Dravet and Lennox-Gastaut syndromes and everolimus as a possible antiepileptogenic and precision drug for tuberous sclerosis complex, with its impact on the mammalian target of rapamycin pathway. Furthermore, fenfluramine, an old drug, was repurposed as a novel therapy in the treatment of Dravet syndrome. The evolution of new insights into pathophysiological processes of various DEEs provides possibilities to investigate novel and repurposed drugs and to place them into the context of their role in future management of these patients. The purpose of this review is to provide an overview of these new medical treatment options for the DEEs and to discuss the clinical implications of these results for improved treatment.
Background: The use of therapeutic drug monitoring (TDM) for antiseizure medications (ASMs) may contribute to treatment optimization in individual patients. This study included patients with Dravet syndrome as they often require close monitoring because of polypharmacy with various ASMs. The aim was to use long-term TDM to investigate pharmacokinetic variability of ASMs in these patients. Methods: Retrospective data from patients with Dravet syndrome were collected from the TDM database at the Section for Clinical Pharmacology, National Center for Epilepsy in Norway (2008-2018). Concentration/(dose/kg)ratios (C/D ratios) were calculated for the ASMs and the concentration (C/C ratio) for N-desmethylclobazam. In patients with at least 3 measurements, the CV for C/D ratios for intrapatient and interpatient variability was calculated. Results: Fifty-three patients (30 male patients/23 female patients) between 2 and 50 years of age (mean, 16 years) were included. Pharmacokinetic variability of the total number of measurements of valproate (n = 417), clobazam and N-desmethylclobazam (n = 328), and levetiracetam (n = 238) was determined. Interpatient variability was more pronounced than intrapatient variability (coefficient of variations: valproate, 65% vs. 24%; levetiracetam, 71% vs. 27%; and clobazam/N-desmethylclobazam, 47%/77% vs. 35%/55%) (P< 0.01). Comedication with stiripentol (n = 16) increased the C/D ratio of valproate by 63% and of clobazam by 133% and the C/C ratio of N-desmethylclobazam/clobazam by 104% (P< 0.05). Younger age also contributed to pharmacokinetic variability. Conclusions: Long-term TDM revealed extensive variability in serum concentrations over time; the variability was lowest for levetiracetam, moderate for valproate, and highest for clobazam. Pharmacokinetic variability and interactions can thus be identified and adjusted to facilitate decision making to achieve the optimal treatment outcome.
Abstract Objective Dravet syndrome is a developmental and epileptic encephalopathy characterized by severe and drug‐resistant seizures in early childhood, followed by developmental delay. The purpose of this study was to investigate aspects of pharmacological treatment of Norwegian patients with Dravet syndrome, focusing on the use of antiseizure medicines (ASMs) and identifying treatment challenges. Methods Patients were identified through medical registries at the National Center for Epilepsy in Norway and National Center for Rare Epilepsy Related Disorders during 2008‐2018. Additional clinical data were obtained from medical records and laboratory request forms. Results We identified 53 patients with Dravet syndrome, 30/23 males/females, aged 2‐50 years. The majority of patients with known seizure frequency experienced frequent seizures, 80% (n = 35/44). Only two patients were seizure‐free. Valproate (n = 48), clobazam (n = 45), levetiracetam (n = 30), and stiripentol (n = 38) were most commonly used, previous or current use. More than one‐third (n = 20) had tried sodium channel blockers (including lamotrigine), but these drugs were used less during the last decade. Polytherapy was common, 81% (n = 43) used two or more ASMs, and eight of these patients used 4‐5 drugs (15%). Several challenges were identified: high seizure frequency, comorbidities, treatment changes with a wide range of ASMs, common use of oral gastro‐tubes, extensive polypharmacy, and drug interactions. Significance The use of ASMs has changed over the last decade, in accordance with updated international recommendations. Various treatment challenges were identified. This vulnerable group of patients needs close follow‐up for an optimal treatment outcome.
Introduction: Antiepileptic drugs (AEDs) are the cornerstone of treatment of patients with epilepsy, and there are presently 27 licensed AEDs making AEDs among the most common medications for which therapeutic drug monitoring (TDM) is performed. The aim of this review is to provide an overview of the current evidence of the use and implementation of AED TDM in patients with epilepsy and other non-epilepsy conditions.Areas covered: The pharmacokinetic variability of AEDs is extensive, resulting in pronounced variability in serum concentrations between patients. TDM may thus be useful to individualize the treatment of patients with epilepsy and also in non-epilepsy conditions. Indications for TDM include settings where pharmacokinetic variability is anticipated (e.g. in children, the elderly, during pregnancy, and patients prescribed polytherapy resulting in drug interactions) and drug adherence. TDM contributes to provide a quality assurance of the treatment. Patient management is, therefore, best guided by the determination of individual therapeutic concentrations.Expert opinion: Because of pharmacokinetic variability is prevalent among AEDs, TDM allows a bespoke approach to epilepsy care allowing dose adjustments based on measured drug concentrations so as to optimize clinical outcome. Future advances include the use of additional markers of toxicity and genetic variability so as to further aid individualization and optimize AED treatment.
Since 1992, the Eilat Conferences have provided a forum for all stakeholders in the epilepsy community to appraise the latest data on new antiepileptic drugs and emergency seizure treatments, including, in recent years, updates on progress with the development of novel monitoring and therapeutic devices. Because of the COVID-19 pandemic, the Fifteenth Eilat Conference on New Antiepileptic Drugs and Devices (EILAT XV) was held as a fully virtual conference on July 27-30, 2020 for the sessions on drugs and on August 3, 2020 for the sessions on devices, and was attended during the 5 days by >500 participants from 63 countries. This progress report summarizes key preclinical and initial (phase 1) clinical data on eight investigational treatments that are currently in early development, including 2-deoxy-D-glucose, GAO-3-02, JNJ-40411813, NBI-921352, NTX-001, sec-butylpropylacetamide, XEN1101, and XEN496. This report provides an overview of current scenarios in the area of treatment discovery and development. The information presented illustrates a variety of innovative strategies, including exploration of compounds with novel mechanisms of action, transplantation of interneurons into epileptogenic brain regions, and the targeting of rare, previously neglected syndromes.
OBJECTIVE:Lacosamide (LCM) is an antiepileptic drug (AED) with insufficient clinical experience in patients with intellectual disability (ID). They often have more severe epilepsy with comorbidities. The objective was to evaluate the efficacy and tolerability of lacosamide (LCM) in patients with refractory epilepsy with and without ID in a real-life setting, taking drug monitoring (TDM) data into account therapeutic. METHODS:Retrospectively, we identified 344 patients using LCM from the TDM service covering the majority of the country, at the National Center for Epilepsy in Norway (2013-2018). Clinical and TDM data were available for 132 patients. RESULTS:Forty-four of the 132 patients (33%) had ID. The retention rate was significantly higher in the ID vs the non-ID group after 1 year (84% vs 68%, P < .05). By combining clinical and TDM data, we demonstrated that 37/38 responding patients had serum concentrations above the lower limit of the reference range (>10 µmol/L), and 16/17 with lower concentrations were non-responders. Mean serum concentration/dose ratios were similar in both groups, 0.06 and 0.07 µmol/L/mg. There were no significant differences regarding efficacy and tolerability. The risk of LCM withdrawal was significantly higher when LCM was added to sodium channel blockers, even if the latter was discontinued. SIGNIFICANCE:Lacosamide was generally well tolerated in patients with drug-resistant epilepsy, where one third had ID, and in these patients the retention rate was higher. The combination of clinical and TDM data could possibly facilitate LCM therapy in these vulnerable patients.
Background: Patients with juvenile myoclonic epilepsy (JME) may have uncontrolled seizures. The purpose of this study was to investigate the use and challenges with antiepileptic drugs (AEDs) and the patient's view of these challenges. Method: A questionnaire about the use of AEDs, adherence to therapy, and quality of life was given to patients with JME recruited from Drammen Hospital. Data regarding AEDs were confirmed from medical records at Drammen Hospital, Norway (2007-2018). Additional clinical interviews were performed, and a mixed method approach was applied. Results: Ninety patients with defined JME diagnosis, 54/36 women/men aged 14-39 (mean: 25) years, were included. Only 29 (33%) were seizure-free. Within the last year, 21% experienced generalized tonic-clonic seizures (GTCS), and 68% had myoclonic jerks. Seventy-six (84%) used AEDs, 78% in monotherapy. A total of 10 AEDs were used;: most commonly valproate (n = 33), lamotrigine (n = 27), and levetiracetam (n = 21). Two-thirds of valproate users were men while all other AEDs were used more in females than in men. Valproate and levetiracetam displayed better efficacy against GTCS than lamotrigine. One-third often/sometimes forgot their medication nonintentionally while 14% had intentional poor adherence. The majority reported good quality of life (76%). No significant correlations between the use of AEDs, use of valproate, poor adherence, quality of life score, and seizure freedom were demonstrated. Half of the patients had serum concentrations measured every year, and two-thirds thought this was important. Qualitative interviews elucidated treatment challenges in JME;, adverse effect burden, adherence, and activities of daily life. Conclusion: Despite the use of AEDs in the majority of patients, only one-third were se izure-free.Other challenges included polypharmacy, the use of valproate in women, and variable adherence. This points to a need for closer follow-up in patients with JME. (C) 2019 The Authors. Published by Elsevier Inc.