Clinical medicine profile
Oxcarbazepine
Anti-epileptic Agent [EPC]
- Route
- See product SmPC
- Schedule
- POM
- ATC
- Not assigned
- PPB status
- registered
Safety essentials
The information most likely to change a prescribing or dispensing decision.
Contraindications
- components, or to eslicarbazepine acetate [see Warnings and Precautions (5.2, 5.3 )].
- Known hypersensitivity to oxcarbazepine or to any of its components, or to eslicarbazepine acetate ( 4, 5.2 )
Precautions
- Hyponatremia: Monitor serum sodium levels ( 5.1 ) • Cross Hypersensitivity Reaction to Carbamazepine: Discontinue immediately if hypersensitivity occurs ( 5.3 ) • Serious Dermatological Reactions: If occurs, consider discontinuation ( 5.4 ) • Suicidal Behavior and Ideation: Monitor for suicidal thoughts/behavior ( 5.5 ) • Withdrawal of AEDs: Withdraw oxcarbazepine gradually ( 5.6 ) • Cognitive/Neuropsychiatric Adverse Reactions: May cause cognitive dysfunction, somnolence, and coordination abnormalities.
- Use caution when operating machinery ( 5.7) • Drug Reaction with Eosinophilia and Systemic Symptoms (DRESS)/Multi-Organ Hypersensitivity: Monitor and discontinue if another cause cannot be established ( 5.8 ) • Hematologic Events: Consider discontinuing ( 5.9 ) • Seizure Control During Pregnancy: Active metabolite may decrease ( 5.10 ) • Risk of Seizure Aggravation: Discontinue if occurs ( 5.11 ) 5.1 Hyponatremia Clinically significant hyponatremia (sodium < 125 mmol/L) can develop during oxcarbazepine use.
- In the 14 controlled epilepsy studies, 2.5% of oxcarbazepine-treated patients (38/1,524) had a sodium of less than 125 mmol/L at some point during treatment, compared to no such patients assigned placebo or active control (carbamazepine and phenobarbital for adjunctive and monotherapy substitution studies, and phenytoin and valproate for the monotherapy initiation studies).
- Clinically significant hyponatremia generally occurred during the first 3 months of treatment with oxcarbazepine, although there were patients who first developed a serum sodium < 125 mmol/L more than 1 year after initiation of therapy.
- Most patients who developed hyponatremia were asymptomatic, but patients in the clinical trials were frequently monitored and some had their oxcarbazepine dose reduced, discontinued, or had their fluid intake restricted for hyponatremia.
- Whether or not these maneuvers prevented the occurrence of more severe events is unknown.
- Cases of symptomatic hyponatremia and syndrome of inappropriate antidiuretic hormone secretion (SIADH) have been reported during postmarketing use.
- In clinical trials, patients whose treatment with oxcarbazepine was discontinued due to hyponatremia generally experienced normalization of serum sodium within a few days without additional treatment.
- Measurement of serum sodium levels should be considered for patients during maintenance treatment with oxcarbazepine, particularly if the patient is receiving other medications known to decrease serum sodium levels (e.g., drugs associated with inappropriate ADH secretion), or if symptoms possibly indicating hyponatremia develop (e.g., nausea, malaise, headache, lethargy, confusion, obtundation, or increase in seizure frequency or severity). 5.2 Anaphylactic Reactions and Angioedema Rare cases of anaphylaxis and angioedema involving the larynx, glottis, lips and eyelids have been reported in patients after taking the first or subsequent doses of oxcarbazepine.
- Angioedema associated with laryngeal edema can be fatal.
- If a patient develops any of these reactions after treatment with oxcarbazepine, the drug should be discontinued and an alternative treatment started.
- These patients should not be rechallenged with the drug [see Warnings and Precautions (5.3) ]. 5.3 Cross Hypersensitivity Reaction to Carbamazepine Approximately 25% to 30% of patients who have had hypersensitivity reactions to carbamazepine will experience hypersensitivity reactions with oxcarbazepine.
Dosing matrix
Population and organ-function guidance, shown together for faster comparison.
: Initiate with a dose of 600 mg/day, given twice a day • Adjunctive Therapy: Maximum increment of 600 mg/day at approximately weekly intervals. The recommended daily dose is 1,200 mg/day ( 2.1 ) • Conversion to Monotherapy: Withdrawal concomitant over 3 to 6 weeks; reach maximum dose of oxcarbazepine oral suspension in 2 to 4 weeks with increments of 600 mg/day at weekly intervals to a recommended daily dose of 2,400 mg/day ( 2.2 ) • Initiation of Monotherapy: Increments of 300 mg/day every third day to a dose of 1,200 mg/day ( 2.3 ) • Initiate at one-half the usual starting dose and increase slowly in patients with a creatinine clearance < 30 mL/min ( 2.7 ) Pediatrics : Initiation with 8 to 10 mg/kg/day, given twice a day. For patients aged 2 to < 4 years and under 20 kg, a starting dose of 16 to 20 mg/kg/day may be considered. Recommended daily dose is dependent upon patient weight. • Adjunctive Patients (Aged 2 to 16 Years): For patients aged 4 to 16 years, target maintenance dose should be achieved over 2 weeks ( 2.4 ). For patients aged 2 to < 4 years, maximum maintenance dose should be achieved over 2 to 4 weeks and should not exceed 60mg/kg/day ( 2.4 ) • Conversion to Monotherapy for Patients (Aged 4 to 16 Years): Maximum increment of 10 mg/kg/day at weekly intervals, concomitant antiepileptic drugs (AEDs) can be completely withdrawn over 3 to 6 weeks ( 2.5) • Initiation of Monotherapy for Patients (Aged 4 to 16 Years): Increments of 5 mg/kg/day every third day ( 2.6 ) 2.1 Adjunctive Therapy for Adults Initiate oxcarbazepine oral suspension with a dose of 600 mg/day, given twice a day. If clinically indicated, the dose may be increased by a maximum of 600 mg/day at approximately weekly intervals; the maximum recommended daily dose is 1,200 mg/day. Daily doses above 1,200 mg/day show somewhat greater effectiveness in controlled trials, but most patients were not able to tolerate the 2,400 mg/day dose, primarily because of central nervous (CNS) effects. Dosage adjustment is recommended with concomitant use of strong CYP3A4 enzyme inducers or UDP-glucuronosyltransferases (UGT) inducers, which include certain antiepileptic drugs (AEDs) [see Drug Interactions (7.1, 7.2) ]. 2.2 Conversion to Monotherapy for Adults Patients receiving concomitant AEDs may be converted to monotherapy by initiating treatment with oxcarbazepine oral suspension at 600 mg/day (given in a twice a day regimen) while simultaneously initiating the reduction of the dose of the concomitant AEDs. The concomitant AEDs should be completely withdrawn over 3 to 6 weeks, while the maximum dose of oxcarbazepine oral suspension should be reached in about 2 to 4 weeks. Oxcarbazepine oral suspension may be increased as clinically indicated by a maximum increment of 600 mg/day at approximately weekly intervals to achieve the maximum recommended daily dose of 2,400 mg/day. A daily dose of 1,200 mg/day has been shown in one study to be effective in patients in whom monotherapy has been initiated with oxcarbazepine oral suspension. Patients should be observed closely during this transition phase. 2.3 Initiation of Monotherapy for Adults Patients not currently being treated with AEDs may have monotherapy initiated with oxcarbazepine oral suspension. In these patients, initiate oxcarbazepine oral suspension at a dose of 600 mg/day (given twice a day); the dose should be increased by 300 mg/day every third day to a dose of 1,200 mg/day. Controlled trials in these patients examined the effectiveness of a 1,200 mg/day dose; a dose of 2,400 mg/day has been shown to be effective in patients converted from other AEDs to oxcarbazepine oral suspension monotherapy (see above). 2.4 Adjunctive Therapy for Pediatric Patients (Aged 2 to 16 Years) In pediatric patients aged 4 to 16 years, initiate oxcarbazepine oral suspension at a daily dose of 8 to 10 mg/kg generally not to exceed 600 mg/day, given twice a day. The target maintenance dose of oxcarbazepine oral suspension should be achieved over 2 weeks, and is dependent upon patient weight, according to the following chart: • 20 to 29 kg - 900 mg/day • 29.1 to 39 kg – 1,200 mg/day • 39 kg – 1,800 mg/day In the clinical trial, in which the intention was to reach these target doses, the median daily dose was 31 mg/kg with a range of 6 to 51 mg/kg. In pediatric patients aged 2 to < 4 years, initiate oxcarbazepine oral suspension at a daily dose of 8 to 10 mg/kg generally not to exceed 600 mg/day, given twice a day. For patients less than 20 kg, a starting dose of 16 to 20 mg/kg may be considered [see Clinical Pharmacology (12.3) ]. The maximum maintenance dose of oxcarbazepine oral suspension should be achieved over 2 to 4 weeks and should not exceed 60 mg/kg/day in a twice a day regimen. In the clinical trial in pediatric patients (2 to 4 years of age), in which the intention was to reach the target dose of 60 mg/kg/day, 50% of patients reached a final dose of at least 55 mg/kg/day. Under adjunctive therapy (with and without enzyme-inducing AEDs), when normalized by body weight, apparent clearance (L/hr/kg) decreased when age increased such that children 2 to < 4 years of age may require up to twice the oxcarbazepine dose per body weight compared to adults; and children 4 to ≤ 12 years of age may require a 50% higher oxcarbazepine dose per body weight compared to adults. Dosage adjustment is recommended with concomitant use of strong CYP3A4 enzyme inducers or UGT inducers, which include certain AEDs [see Drug Interactions (7.1 , 7.2) ]. 2.5 Conversion to Monotherapy for Pediatric Patients (Aged 4 to 16 Years) Patients receiving concomitant AEDs may be converted to monotherapy by initiating treatment with oxcarbazepine oral suspension at approximately 8 to 10 mg/kg/day given twice a day, while simultaneously initiating the reduction of the dose of the concomitant AEDs. The concomitant AEDs can be completely withdrawn over 3 to 6 weeks, while oxcarbazepine oral suspension may be increased as clinically indicated by a maximum increment of 10 mg/kg/day at approximately weekly intervals to achieve the recommended daily dose. Patients should be observed closely during this transition phase. The recommended total daily dose of oxcarbazepine oral suspension is shown in Table 1. 2.6 Initiation of Monotherapy for Pediatric Patients (Aged 4 to 16 Years) Patients not currently being treated with AEDs may have monotherapy initiated with oxcarbazepine oral suspension. In these patients, initiate oxcarbazepine oral suspension at a dose of 8 to 10 mg/kg/day given twice a day. The dose should be increased by 5 mg/kg/day every third day to the recommended daily dose shown in the table below. Table 1: Range of Maintenance Doses of Oxcarbazepine Oral Suspension for Pediatrics by Weight During Monotherapy From To Weight in kg Dose (mg/day) Dose (mg/day) 20 600 900 25 900 1,200 30 900 1,200 35 900 1,500 40 900 1,500 45 1,200 1,500 50 1,200 1,800 55 1,200 1,800 60 1,200 2,100 65 1,200 2,100 70 1,500 2,100 2.7 Dosage Modification for Patients With Renal Impairment In patients with impaired renal function (creatinine clearance < 30 mL/min), initiate oxcarbazepine oral suspension at one-half the usual starting dose (300 mg/day, given twice a day), and increase slowly to achieve the desired clinical response [see Clinical Pharmacology (12.3) ]. 2.8 Administration Information Oxcarbazepine oral suspension can be taken with or without food [see Clinical Pharmacology (12.3) ]. Before using oxcarbazepine oral suspension, shake the bottle well and prepare the dose immediately afterwards. The prescribed amount of oral suspension should be withdrawn from the bottle using the oral dosing syringe supplied. A household teaspoon or tablespoon is not an adequate measuring device and should not be used. Oxcarbazepine oral suspension can be mixed in a small glass of water just prior to administration, or alternatively, may be swallowed directly from the syringe. After each use, close the bottle and rinse the syringe with warm water, and allow it to dry thoroughly. Oxcarbazepine oral suspension and oxcarbazepine film-coated tablets may be substituted at equal doses.
8.4 Pediatric Use Oxcarbazepine is indicated for use as adjunctive therapy for partial-onset seizures in patients aged 2 to 16 years. The safety and effectiveness for use as adjunctive therapy for partial-onset seizures in pediatric patients below the age of 2 have not been established. Oxcarbazepine is also indicated as monotherapy for partial-onset seizures in patients aged 4 to 16 years. The safety and effectiveness for use as monotherapy for partial-onset seizures in pediatric patients below the age of 4 have not been established. Oxcarbazepine has been given to 898 patients between the ages of 1 month to 17 years in controlled clinical trials (332 treated as monotherapy) and about 677 patients between the ages of 1 month to 17 years in other trials [see Warnings and Precautions (5.11), Adverse Reactions (6.1), Clinical Pharmacology (12.3), an d Clinical Studies (14) ].
Review renal impairment dosing; many agents need CrCl/eGFR adjustment.
- CrCl 0–120: Confirm renal dosing in product SmPC / primary label.
Review hepatic impairment dosing; monitor LFTs if agent is hepatically cleared or hepatotoxic.
Use, effects & interactions
Indications
- 4 years and above, and as adjunctive therapy in pediatric patients aged 2 years and above with partial-onset seizures.
- Oxcarbazepine oral suspension is indicated for: • Adults: Monotherapy or adjunctive therapy in the treatment of partial-onset seizures • Pediatrics: -Monotherapy in the treatment of partial-onset seizures in children 4 to 16 years -Adjunctive therapy in the treatment of partial-onset seizures in children 2 to 16 years ( 1 )
Adverse effects
- labeling: • Hyponatremia [see Warnings and Precautions (5.1) ] • Anaphylactic Reactions and Angioedema [see Warnings and Precautions (5.2) ] • Cross Hypersensitivity Reaction to Carbamazepine [see Warnings and Precautions (5.3) ] • Serious Dermatological Reactions [see Warnings and Precautions (5.4) ] • Suicidal Behavior and Ideation [see Warnings and Precautions (5.5) ] • Cognitive/Neuropsychiatric Adverse Reactions [see Warnings and Precautions (5.7) ] • Drug Reaction with Eosinophilia and Systemic Symptoms (DRESS)/Multi-Organ Hypersensitivity [see Warnings and Precautions (5.8) ] • Hematologic Events [see Warnings and Precautions (5.9) ] The most common (≥ 10% more than placebo for adjunctive or low dose for monotherapy) adverse reactions in adults and pediatrics were: dizziness, somnolence, diplopia, fatigue, nausea, vomiting, ataxia, abnormal vision, headache, nystagmus, tremor, and abnormal gait ( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Novadoz Pharmaceuticals LLC at 1-855-668-2369 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. 6.1 Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice.
- Most Common Adverse Reactions in All Clinical Studies Adjunctive Therapy/Monotherapy in Adults Previously Treated With Other AEDs The most common (≥ 10% more than placebo for adjunctive or low dose for monotherapy) adverse reactions with oxcarbazepine: dizziness, somnolence, diplopia, fatigue, nausea, vomiting, ataxia, abnormal vision, headache, nystagmus tremor, and abnormal gait.
- Approximately 23% of these 1,537 adult patients discontinued treatment because of an adverse reaction.
- The adverse reactions most commonly associated with discontinuation were: dizziness (6.4%), diplopia (5.9%), ataxia (5.2%), vomiting (5.1%), nausea (4.9%), somnolence (3.8%), headache (2.9%), fatigue (2.1%), abnormal vision (2.1%), tremor (1.8%), abnormal gait (1.7%), rash (1.4%), and hyponatremia (1%).
- Monotherapy in Adults Not Previously Treated With Other AEDs The most common (≥ 5%) adverse reactions with oxcarbazepine in these patients were similar to those in previously treated patients.
- Approximately 9% of these 295 adult patients discontinued treatment because of an adverse reaction.
- The adverse reactions most commonly associated with discontinuation were: dizziness (1.7%), nausea (1.7%), rash (1.7%), and headache (1.4%).
- Adjunctive Therapy/Monotherapy in Pediatric Patients 4 Years Old and Above Previously Treated With Other AEDs The most common (≥ 5%) adverse reactions with oxcarbazepine in these patients were similar to those seen in adults.
- Approximately 11% of these 456 pediatric patients discontinued treatment because of an adverse reaction.
- The adverse reactions most commonly associated with discontinuation were: somnolence (2.4%), vomiting (2%), ataxia (1.8%), diplopia (1.3%), dizziness (1.3%), fatigue (1.1%), and nystagmus (1.1%).
- Monotherapy in Pediatric Patients 4 Years Old and Above Not Previously Treated With Other AEDs The most common (≥ 5%) adverse reactions with oxcarbazepine in these patients were similar to those in adults.
- Approximately 9.2% of 152 pediatric patients discontinued treatment because of an adverse reaction.
- The adverse reactions most commonly associated (≥ 1%) with discontinuation were rash (5.3%) and maculopapular rash (1.3%).
- Adjunctive Therapy/Monotherapy in Pediatric Patients 1 Month to < 4 Years Old Previously Treated or Not Previously Treated with Other AEDs: The most common (≥ 5%) adverse reactions with oxcarbazepine in these patients were similar to those seen in older children and adults, except for infections and infestations which were more frequently seen in these younger children.
Drug interactions
Open multi-drug checker ↗- Professional use: confirm indication, dose, duration, monitoring and patient counselling points against current Kenya STG / EML and the product SmPC.
- Document allergy status and key interactions.
Mechanism & disposition
Anticonvulsant action - the exact mechanism is unknown and possibilities may include: acting postsynaptically by limiting the ability of neurons to sustain high frequency repetitive firing of action potentials through enhancement of sodium channel inactivation, altering neuronal excitabil-ity, blocking the release of…
Read complete mechanism
Anticonvulsant action - the exact mechanism is unknown and possibilities may include: acting postsynaptically by limiting the ability of neurons to sustain high frequency repetitive firing of action potentials through enhancement of sodium channel inactivation, altering neuronal excitabil-ity, blocking the release of neurotransmitter by blocking presynaptic sodium channels and the firing of action potentials, which in turn decreases synaptic transmission. Antineuralgic - the exact mechanism is unknown and possibilities may include; involvement of gamma-aminobutyric acid [GABA] receptors, which may be linked to calcium channels. Antidiuretic: the exact mechanism is unknown and possibilities may include: exerting a hypothalamic effect on the osmoreceptors mediated via secretion of antidiuretic hormone [ADH], direct effect on the renal tubule.
Product-specific
Product-specific
See product SmPC
Based on MHD concentrations, oxcarbazepine tablets and suspension were shown to have similar bioavailability. After single-dose administration of oxcarbazepine tablets to healthy male volunteers under fasted conditions, the median t max was 4.5 (range, 3 to 13) hours. After singl...
The apparent volume of distribution of MHD is 49 L. Approximately 40% of MHD is bound to serum proteins, predominantly to albumin. Binding is independent of the serum concentration within the therapeutically relevant range. Oxcarbazepine and MHD do not bind to alpha-1-acid glycop...
Oxcarbazepine is rapidly reduced by cytosolic enzymes in the liver to its 10-monohydroxy metabolite, MHD, which is primarily responsible for the pharmacological effect of oxcarbazepine. MHD is metabolized further by conjugation with glucuronic acid. Minor amounts (4% of the dose)...
of the parent is about 2 hours, while the half-life of MHD is about 9 hours, so that MHD is responsible for most antiepileptic activity.
Pregnancy, lactation & diet
8.1 Pregnancy Risk Summary Although oxcarbazepine is closely related structurally to carbamazepine, which is considered to be teratogenic in humans, available human data from published literature and ongoing pregnancy registry studies on use of oxcarbazepine during pregnancy have not demonstrated an increased prevalence of major congenital malformationswith first trimester exposure. However, all published studies reviewed have important methodological limitations, including unmeasured confounding and a small number of exposed cases (see Data). There are risks to the mother and fetus associated with partial onset seizures (see Clinical Considerations). There are no data on the risks associated with the use of oxcarbazepine and miscarriage or other adverse maternal outcomes. Increased incidences of fetal structural abnormalities and other manifestations of developmental toxicity (embryolethality, growth retardation) were observed in the offspring of animals treated with either oxcarbazepine or its active 10-hydroxy metabolite (MHD) during pregnancy at doses similar to the maximum recommended human dose (MRHD). In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2% to 4% and 15% to 20%, respectively. All pregnancies have abackground risk of birth defect , loss, or other adverse outcomes. Clinical Considerations Disease-associated Maternal and/or Embryofetal Risk Epilepsy, with or without exposure to antiepileptic drugs, has been associated with several adverse outcomes during pregnancy, including preeclampsia, preterm labor, antepartum and postpartum hemorrhage, placental abruption, poor fetal growth, prematurity, fetal death, and maternal mortality. The risk of maternal or fetal injury may be greatest for patients with untreated or poorly controlled convulsive seizures. Women with epilepsy who become pregnant should not abruptly discontinue antiepileptic drugs, including oxcarbazepine, due to the risk of status epilepticus or severe seizures, which may be life-threatening [ see Warnings and Precautions (5.6) ]. Maternal Adverse Reactions An increase in seizure frequency may occur during pregnancy because of altered levels of the active metabolite of oxcarbazepine. Monitor patients carefully during pregnancy and through the postpartum period [see Warnings and Precautions (5.10) ]. Data Human Data Data from a published retrospective cohort study and ongoing pregnancy registry studies on the use of oxcarbazepine during pregnancy have not demonstrated an increased prevalence of major congenital malformations with first trimester exposure. A retrospective cohort study conducted in Nordic countries (Denmark, Finland, Iceland, Norway, and Sweden) from 1996-2020 found that there was no increased prevalence of major congenital malformations when pregnancies exposed to oxcarbazepine during the first trimester were compared to pregnancies exposed to lamotrigine (adjusted risk ratio =1.09; 95% CI 0.83 to 1.44; n pregnancies exposed to oxcarbazepine= 1,313, n exposed cases = 58). In an ongoing pregnancy registry that included data from over 40 countries from 1999 to 2022 and 443 pregnancies exposed to oxcarbazepine, oxcarbazepine exposure during the first trimester was not associated with major congenital malformations (adjusted odds ratio =1.09; 95% CI 0.56 to 2.13, n exposed cases = 10). However, there are important methodological limitations of these studies including unmeasured confounding factors and a small number of exposed cases in the registry.. Animal Data When pregnant rats were given oxcarbazepine (0, 30, 300, or 1,000 mg/kg/day) orally throughout the period of organogenesis, increased incidences of fetal malformations (craniofacial, cardiovascular, and skeletal) and variations were observed at the intermediate and high doses (approximately 1.2 and 4 times, respectively, the MRHD on a mg/m 2 basis). Increased embryofetal death and decreased fetal body weights were seen at the high dose. Doses ≥300 mg/kg/day were also maternally toxic (decreased body weight gain, clinical signs), but there is no evidence to suggest that teratogenicity was secondary to the maternal effects. In a study in which pregnant rabbits were orally administered MHD (0, 20, 100, or 200 mg/kg/day) during organogenesis, embryofetal mortality was increased at the highest dose (1.5 times the MRHD on a mg/m2 basis). This dose produced only minimal maternal toxicity. In a study in which female rats were dosed orally with oxcarbazepine (0, 25, 50, or 150 mg/kg/day) during the latter part of gestation and throughout the lactation period, a persistent reduction in body weights and altered behavior (decreased activity) were observed in offspring exposed to the highest dose (less than the MRHD on a mg/m 2 basis). Oral administration of MHD (0, 25, 75, or 250 mg/kg/day) to rats during gestation and lactation resulted in a persistent reduction in offspring weights at the highest dose (equivalent to the MRHD on a mg/m 2 basis).
8.3 Females and Males of Reproductive Potential Contraception Use of oxcarbazepine with hormonal contraceptives containing ethinylestradiol or levonorgestrel is associated with decreased plasma concentrations of these hormones and may result in a failure of the therapeutic effect of the oral contraceptive drug. Advise women of reproductive potential taking oxcarbazepine who are using a contraceptive containing ethinylestradiol or levonorgestrel to use additional or alternative non-hormonal birth control [see Drug Interactions (7.3) and Clinical Pharmacology (12.3) ].
Brands & loaded prices
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Sources & review state
Decision support only. Confirm patient-specific decisions against the current product SmPC, Kenya STG/EML, and professional judgement.