PREGABALIN- pregabalin_capsule
Function and Efficacy
Pregabalin binds with high affinity to the alpha 2 2 While pregabalin is a structural derivative of the inhibitory neurotransmitter gamma-aminobutyric acid (GABA), it does not bind directly to GABA A B A Pregabalin is well absorbed after oral administration, is eliminated largely by renal excretion, and has an elimination half-life of about 6 hours. Absorption and Distribution Following oral administration of pregabalin capsules under fasting conditions, peak plasma concentrations occur within 1. Pregabalin oral bioavailability is greater than or equal to 90% and is independent of dose. Following single- (25 mg to 300 mg) and multiple-dose (75 mg/day to 900 mg/day) administration, maximum plasma concentrations (C max The rate of pregabalin absorption is decreased when given with food, resulting in a decrease in C max max Pregabalin does not bind to plasma proteins. The apparent volume of distribution of pregabalin following oral administration is approximately 0. Pregabalin is a substrate for system L transporter which is responsible for the transport of large amino acids across the blood brain barrier. Although there are no data in humans, pregabalin has been shown to cross the blood brain barrier in mice, rats, and monkeys. In addition, pregabalin has been shown to cross the placenta in rats and is present in the milk of lactating rats. Metabolism and Elimination Pregabalin undergoes negligible metabolism in humans. Following a dose of radiolabeled pregabalin, approximately 90% of the administered dose was recovered in the urine as unchanged pregabalin. The N-methylated derivative of pregabalin, the major metabolite of pregabalin found in urine, accounted for 0. 9% of the dose. In preclinical studies, pregabalin (S-enantiomer) did not undergo racemization to the R-enantiomer in mice, rats, rabbits, or monkeys. Pregabalin is eliminated from the systemic circulation primarily by renal excretion as unchanged drug with a mean elimination half-life of 6. 3 hours in subjects with normal renal function. Mean renal clearance was estimated to be 67. 9 mL/min in young healthy subjects. Because pregabalin is not bound to plasma proteins this clearance rate indicates that renal tubular reabsorption is involved. Pregabalin elimination is nearly proportional to creatinine clearance (CLcr) [see Dosage and Administration ( 2. 7 Pharmacokinetics in Specific Populations Race In population pharmacokinetic analyses of the clinical studies in various populations, the pharmacokinetics of pregabalin was not significantly affected by race (Caucasians, Blacks, and Hispanics). Gender Population pharmacokinetic analyses of the clinical studies showed that the relationship between daily dose and pregabalin drug exposure is similar between genders. Renal Impairment and Hemodialysis Pregabalin clearance is nearly proportional to creatinine clearance (CLcr). Dosage reduction in patients with renal dysfunction is necessary. Pregabalin is effectively removed from plasma by hemodialysis. Following a 4-hour hemodialysis treatment, plasma pregabalin concentrations are reduced by approximately 50%. For patients on hemodialysis, dosing must be modified [ see Dosage and Administration ( 2. 7 Elderly Pregabalin oral clearance tended to decrease with increasing age. This decrease in pregabalin oral clearance is consistent with age-related decreases in CLcr. Reduction of pregabalin dose may be required in patients who have age-related compromised renal function [ see Dosage and Administration ( 2. 7 Pediatric Pharmacokinetics Pediatric Patients (3 months to less than 17 years of age) Pregabalin pharmacokinetics were evaluated in 358 pediatric patients 3 months to less than 17 years of age with partial-onset seizures at dose levels of 2. 5, 5, 10, and 15 mg/kg/day after single and multiple oral administration of pregabalin. Following oral administration, pregabalin reaches peak plasma concentration at 0. 5 hours to 2 hours in the fasted state. Both apparent clearance (CL/F) and apparent volume of distribution increase as body weight increases. A weight-based dosing regimen is necessary to achieve pregabalin exposures in pediatric patients 1 month to less than 17 years of age similar to those observed in adults treated for partial-onset seizures at effective doses [see Dosage and Administration (2. The mean t½ is 3 to 4 hours in pediatric subjects up to 6 years of age, and 4 to 6 hours in those 7 years of age and older. Pregabalin CL/F is nearly proportional to CLcr (mL/min). The relationship is similar in pediatric and adult subjects. When normalized per body weight, CL/F (mL/min/kg) in pediatric subjects weighing less than 30 kg is approximately 40% higher in comparison to subjects weighing greater than or equal to 30 kg [see Dosage and Administration (2. Drug Interactions In Vitro Studies Pregabalin, at concentrations that were, in general, 10-times those attained in clinical trials, does not inhibit human CYP1A2, CYP2A6, CYP2C9, CYP2C19, CYP2D6, CYP2E1, and CYP3A4 enzyme systems. In vitro In Vivo Studies The drug interaction studies described in this section were conducted in healthy adults, and across various patient populations. Gabapentin The pharmacokinetic interactions of pregabalin and gabapentin were investigated in 12 healthy subjects following concomitant single-dose administration of 100-mg pregabalin and 300-mg gabapentin and in 18 healthy subjects following concomitant multiple-dose administration of 200-mg pregabalin every 8 hours and 400-mg gabapentin every 8 hours. Gabapentin pharmacokinetics following single- and multiple-dose administration were unaltered by pregabalin coadministration. The extent of pregabalin absorption was unaffected by gabapentin coadministration, although there was a small reduction in rate of absorption. Oral Contraceptive Pregabalin coadministration (200 mg three times a day) had no effect on the steady-state pharmacokinetics of norethindrone and ethinyl estradiol (1 mg/35 mcg, respectively) in healthy subjects. Lorazepam Multiple-dose administration of pregabalin (300 mg twice a day) in healthy subjects had no effect on the rate and extent of lorazepam single-dose pharmacokinetics and single-dose administration of lorazepam (1 mg) had no effect on the steady-state pharmacokinetics of pregabalin. Oxycodone Multiple-dose administration of pregabalin (300 mg twice a day) in healthy subjects had no effect on the rate and extent of oxycodone single-dose pharmacokinetics. Single-dose administration of oxycodone (10 mg) had no effect on the steady-state pharmacokinetics of pregabalin. Ethanol Multiple-dose administration of pregabalin (300 mg twice a day) in healthy subjects had no effect on the rate and extent of ethanol single-dose pharmacokinetics and single-dose administration of ethanol (0. 7 g/kg) had no effect on the steady-state pharmacokinetics of pregabalin. Phenytoin, carbamazepine, valproic acid, and lamotrigine Steady-state trough plasma concentrations of phenytoin, carbamazepine and carbamazepine 10,11 epoxide, valproic acid, and lamotrigine were not affected by concomitant pregabalin (200 mg three times a day) administration. Population pharmacokinetic analyses in patients treated with pregabalin and various concomitant medications suggest the following: Therapeutic class Specific concomitant drug studied Concomitant drug has no effect on the pharmacokinetics of pregabalin Hypoglycemics Glyburide, insulin, metformin Diuretics Furosemide Antiepileptic Drugs Tiagabine Concomitant drug has no effect on the pharmacokinetics of pregabalin and pregabalin has no effect on the pharmacokinetics of concomitant drug Antiepileptic Drugs Carbamazepine, lamotrigine, phenobarbital, phenytoin, topiramate, valproic acid.
Indication
Pregabalin capsules are indicated for: Management of neuropathic pain associated with diabetic peripheral neuropathy Management of postherpetic neuralgia Adjunctive therapy for the treatment of partial-onset seizures in patients 1 month of age and older Management of fibromyalgia Management of neuropathic pain associated with spinal cord injury Pregabalin capsules are indicated for: Neuropathic pain associated with diabetic peripheral neuropathy (DPN) ( 1 Postherpetic neuralgia (PHN) ( 1 Adjunctive therapy for the treatment of partial-onset seizures in patients 1 month of age and older ( 1 Fibromyalgia ( 1 Neuropathic pain associated with spinal cord injury ( 1.
Usage and Dosage
For adult indications, begin dosing at 150 mg/day. For partial-onset seizure dosing in pediatric patients 1 month of age and older, refer to section 2. 6 Dosing recommendations: INDICATION Dosing Regimen Maximum Dose DPN Pain (2. 2) 3 divided doses per day 300 mg/day within 1 week PHN (2. 3) 2 or 3 divided doses per day 300 mg/day within 1 week. Maximum dose of 600 mg/day. Adjunctive Therapy for Partial-Onset Seizures 2 or 3 divided doses per day Maximum dose of 600 mg/day. Adjunctive Therapy for Partial-Onset Seizures in Pediatric Patients Weighing Less than 30 kg (2. 4) 1 month to less than 4 years: 3 divided doses per day 4 years and older: 2 or 3 divided doses per day 14 mg/kg/day. Fibromyalgia (2. 5) 2 divided doses per day 300 mg/day within 1 week. Maximum dose of 450 mg/day. Neuropathic Pain Associated with Spinal Cord Injury (2. 6) 2 divided doses per day 300 mg/day within 1 week. Dose should be adjusted in adult patients with reduced renal function. 7 Pregabalin capsules are given orally with or without food. When discontinuing pregabalin capsules, taper gradually over a minimum of 1 week [see Warnings and Precautions ( 5. 6 Because Pregabalin is eliminated primarily by renal excretion, adjust the dose in adult patients with reduced renal function [see Dosage and Administration ( 2. 7 The maximum recommended dose of pregabalin capsules is 100 mg three times a day (300 mg/day) in patients with creatinine clearance of at least 60 mL/min. Begin dosing at 50 mg three times a day (150 mg/day). The dose may be increased to 300 mg/day within 1 week based on efficacy and tolerability. Although pregabalin capsules were also studied at 600 mg/day, there is no evidence that this dose confers additional significant benefit and this dose was less well tolerated. In view of the dose-dependent adverse reactions, treatment with doses above 300 mg/day is not recommended [see Adverse Reactions ( 6. 1 The recommended dose of pregabalin capsule is 75 mg to 150 mg two times a day, or 50 mg to 100 mg three times a day (150 mg/day to 300 mg/day) in patients with creatinine clearance of at least 60 mL/min. Begin dosing at 75 mg two times a day, or 50 mg three times a day (150 mg/day). Patients who do not experience sufficient pain relief following 2 to 4 weeks of treatment with 300 mg/day, and who are able to tolerate pregabalin capsules, may be treated with up to 300 mg two times a day, or 200 mg three times a day (600 mg/day). In view of the dose-dependent adverse reactions and the higher rate of treatment discontinuation due to adverse reactions, reserve dosing above 300 mg/day for those patients who have on-going pain and are tolerating 300 mg daily [see Adverse Reactions ( 6. 1 The recommended dosages for adults and pediatric patients 1 month of age and older are included in Table 1. Administer the total daily dosage orally in two or three divided doses as indicated in Table 1. In pediatric patients, the recommended dosing regimen is dependent upon body weight. Based on clinical response and tolerability, dosage may be increased, approximately weekly. Recommended Dosage for Adults and Pediatric Patients 1 Month and Older Age and Body Weight Recommended Initial Dosage Recommended Maximum Dosage Frequency of Administration Adults (17 years and older) 150 mg/day 600 mg/day 2 or 3 divided doses Pediatric patients weighing 30 kg or more 2. 5 mg/kg/day 10 mg/kg/day (not to exceed 600 mg/day) 2 or 3 divided doses Pediatric patients weighing less than 30 kg 3. 5 mg/kg/day 14 mg/kg/day 1 month to less than 4 years of age: 3 divided doses 4 years of age and older: 2 or 3 divided doses Both the efficacy and adverse event profiles of pregabalin capsules have been shown to be dose-related. The effect of dose escalation rate on the tolerability of pregabalin capsules has not been formally studied. The efficacy of adjunctive pregabalin capsules in patients taking gabapentin has not been evaluated in controlled trials. Consequently, dosing recommendations for the use of pregabalin capsules with gabapentin cannot be offered. The recommended dose of pregabalin capsules for fibromyalgia is 300 mg/day to 450 mg/day. Begin dosing at 75 mg two times a day (150 mg/day). The dose may be increased to 150 mg two times a day (300 mg/day) within 1 week based on efficacy and tolerability. Patients who do not experience sufficient benefit with 300 mg/day may be further increased to 225 mg two times a day (450 mg/day). Although pregabalin capsules were also studied at 600 mg/day, there is no evidence that this dose confers additional benefit and this dose was less well tolerated. In view of the dose-dependent adverse reactions, treatment with doses above 450 mg/day is not recommended [see Adverse Reactions ( 6. 1 The recommended dose range of pregabalin capsules for the treatment of neuropathic pain associated with spinal cord injury is 150 mg/day to 600 mg/day. The recommended starting dose is 75 mg two times a day (150 mg/day). Patients who do not experience sufficient pain relief after 2 to 3 weeks of treatment with 150 mg two times a day and who tolerate pregabalin capsules may be treated with up to 300 mg two times a day [see Clinical Studies ( 14. 5 In view of dose-dependent adverse reactions and since pregabalin is eliminated primarily by renal excretion, adjust the dose in adult patients with reduced renal function. The use of pregabalin in pediatric patients with compromised renal function has not been studied. Base the dose adjustment in patients with renal impairment on creatinine clearance (CLcr), as indicated in Table 2. To use this dosing table, an estimate of the patient's CLcr in mL/min is needed. CLcr in mL/min may be estimated from serum creatinine (mg/dL) determination using the Cockcroft and Gault equation: Next, refer to the Dosage and Administration section to determine the recommended total daily dose based on indication, for a patient with normal renal function (CLcr greater than or equal to 60 mL/min). Then refer to Table 2 to determine the corresponding renal adjusted dose. (For example: A patient initiating pregabalin capsule therapy for postherpetic neuralgia with normal renal function (CLcr greater than or equal to 60 mL/min), receives a total daily dose of 150 mg/day pregabalin. Therefore, a renal impaired patient with a CLcr of 50 mL/min would receive a total daily dose of 75 mg/day pregabalin administered in two or three divided doses. ) For patients undergoing hemodialysis, adjust the pregabalin daily dose based on renal function. In addition to the daily dose adjustment, administer a supplemental dose immediately following every 4-hour hemodialysis treatment (see Table 2). Pregabalin Dosage Adjustment Based on Renal Function TID= Three divided doses; BID = Two divided doses; QD = Single daily dose. * Total daily dose (mg/day) should be divided as indicated by dose regimen to provide mg/dose. dagger Supplementary dose is a single additional dose. Creatinine Clearance (CLcr) (mL/min) Total Pregabalin Daily Dose (mg/day)* Dose Regimen Greater than or equal to 60 150 300 450 600 BID or TID 30 to 60 75 150 225 300 BID or TID 15 to 30 25 to 50 75 100 to 150 150 QD or BID Less than 15 25 25 to 50 50 to 75 75 QD Supplementary dosage following hemodialysis (mg)dagger Patients on the 25 mg QD regimen: take one supplemental dose of 25 mg or 50 mg Image.
Label
Adverse Reactions
The following serious adverse reactions are described elsewhere in the labeling: Angioedema [see Warnings and Precautions ( 5. 1 Hypersensitivity [see Warnings and Precautions ( 5. 2 Suicidal Behavior and Ideation [see Warnings and Precautions ( 5. 3 Respiratory Depression [see Warnings and Precautions ( 5. 4 Dizziness and Somnolence [see Warnings and Precautions ( 5. 5 Increased Risk of Adverse Reactions with Abrupt or Rapid Discontinuation [see 5. 6 )] Peripheral Edema [see Warnings and Precautions ( 5. 7 Weight Gain [see Warnings and Precautions ( 5. 8 Tumorigenic Potential [see Warnings and Precautions ( 5. 9 Ophthalmological Effects [see Warnings and Precautions ( 5. 10 Creatine Kinase Elevations [see Warnings and Precautions ( 5. 11 Decreased Platelet Count [see Warnings and Precautions ( 5. 12 PR Interval Prolongation [see Warnings and Precaution 5. 13 Most common adverse reactions (greater than or equal to 5% and twice placebo) in adults are dizziness, somnolence, dry mouth, edema, blurred vision, weight gain, and thinking abnormal (primarily difficulty with concentration/attention). 1 Most common adverse reactions (greater than or equal to 5% and twice placebo) in pediatric patients for the treatment of partial-onset seizures are increased weight and increased appetite. 1) To report SUSPECTED ADVERSE REACTIONS, contact Torrent Pharma Inc. at 1-800-912-9561 or FDA at 1-800-FDA-1088 or www. gov/medwatch. 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. In all controlled and uncontrolled trials across various patient populations during the premarketing development of pregabalin capsules, more than 10,000 patients have received pregabalin capsules. Approximately 5,000 patients were treated for 6 months or more, over 3,100 patients were treated for 1 year or longer, and over 1,400 patients were treated for at least 2 years. Adverse Reactions Most Commonly Leading to Discontinuation in All Premarketing Controlled Clinical Studies In premarketing controlled trials of all adult populations combined, 14% of patients treated with pregabalin capsules and 7% of patients treated with placebo discontinued prematurely due to adverse reactions. In the pregabalin capsules treatment group, the adverse reactions most frequently leading to discontinuation were dizziness (4%) and somnolence (4%). In the placebo group, 1% of patients withdrew due to dizziness and less than 1% withdrew due to somnolence. Other adverse reactions that led to discontinuation from controlled trials more frequently in the pregabalin capsules group compared to the placebo group were ataxia, confusion, asthenia, thinking abnormal, blurred vision, incoordination, and peripheral edema (1% each). Most Common Adverse Reactions in All Controlled Clinical Studies in Adults In premarketing controlled trials of all adult patient populations combined (including DPN, PHN, and adult patients with partial-onset seizures), dizziness, somnolence, dry mouth, edema, blurred vision, weight gain, and "thinking abnormal" (primarily difficulty with concentration/attention) were more commonly reported by subjects treated with pregabalin capsules than by subjects treated with placebo (greater than or equal to 5% and twice the rate of that seen in placebo). Controlled Studies with Neuropathic Pain Associated with Diabetic Peripheral Neuropathy Adverse Reactions Leading to Discontinuation In clinical trials in adults with neuropathic pain associated with diabetic peripheral neuropathy, 9% of patients treated with pregabalin capsules and 4% of patients treated with placebo discontinued prematurely due to adverse reactions. In the pregabalin capsule treatment group, the most common reasons for discontinuation due to adverse reactions were dizziness (3%) and somnolence (2%). In comparison, less than 1% of placebo patients withdrew due to dizziness and somnolence. Other reasons for discontinuation from the trials, occurring with greater frequency in the pregabalin capsule group than in the placebo group, were asthenia, confusion, and peripheral edema. Each of these events led to withdrawal in approximately 1% of patients. Most Common Adverse Reactions Table 4 lists all adverse reactions, regardless of causality, occurring in greater than or equal to 1% of patients with neuropathic pain associated with diabetic neuropathy in the combined pregabalin capsule group for which the incidence was greater in this combined pregabalin capsules group than in the placebo group. A majority of pregabalin-treated patients in clinical studies had adverse reactions with a maximum intensity of "mild" or "moderate". Adverse Reaction Incidence in Controlled Trials in Neuropathic Pain Associated with Diabetic Peripheral Neuropathy * PGB: pregabalin daggerThinking abnormal primarily consists of events related to difficulty with concentration/attention but also includes events related to cognition and language problems and slowed thinking. double daggerInvestigator term; summary level term is amblyopia Body system Preferred term 75 mg/day [N=77] % 150 mg/day [N=212] % 300 mg/day [N=321] % 600 mg/day [N=369] % All PGB* [N=979] % Placebo [N=459] % Body as a whole Asthenia 4 2 4 7 5 2 Accidental injury 5 2 2 6 4 3 Back pain 0 2 1 2 2 0 Chest pain 4 1 1 2 2 1 Face edema 0 1 1 2 1 0 Digestive system Dry mouth 3 2 5 7 5 1 Constipation 0 2 4 6 4 2 Flatulence 3 0 2 3 2 1 Metabolic and nutritional disorders Peripheral edema 4 6 9 12 9 2 Weight gain 0 4 4 6 4 0 Edema 0 2 4 2 2 0 Hypoglycemia 1 3 2 1 2 1 Nervous system Dizziness 8 9 23 29 21 5 Somnolence 4 6 13 16 12 3 Neuropathy 9 2 2 5 4 3 Ataxia 6 1 2 4 3 1 Vertigo 1 2 2 4 3 1 Confusion 0 1 2 3 2 1 Euphoria 0 0 3 2 2 0 Incoordination 1 0 2 2 2 0 Thinking abnormaldagger 1 0 1 3 2 0 Tremor 1 1 1 2 1 0 Abnormal gait 1 0 1 3 1 0 Amnesia 3 1 0 2 1 0 Nervousness 0 1 1 1 1 0 Respiratory system Dyspnea 3 0 2 2 2 1 Special senses Blurry visiondouble dagger 3 1 3 6 4 2 Abnormal vision 1 0 1 1 1 0 Controlled Studies in Postherpetic Neuralgia Adverse Reactions Leading to Discontinuation In clinical trials in adults with postherpetic neuralgia, 14% of patients treated with pregabalin capsules and 7% of patients treated with placebo discontinued prematurely due to adverse reactions. In the pregabalin capsule treatment group, the most common reasons for discontinuation due to adverse reactions were dizziness (4%) and somnolence (3%). Other reasons for discontinuation from the trials, occurring in greater frequency in the pregabalin capsules group than in the placebo group, were confusion (2%), as well as peripheral edema, asthenia, ataxia, and abnormal gait (1% each). Most Common Adverse Reactions Table 5 lists all adverse reactions, regardless of causality, occurring in greater than or equal to 1% of patients with neuropathic pain associated with postherpetic neuralgia in the combined pregabalin capsules group for which the incidence was greater in this combined pregabalin capsules group than in the placebo group. In addition, an event is included, even if the incidence in the all pregabalin capsule group is not greater than in the placebo group, if the incidence of the event in the 600 mg/day group is more than twice that in the placebo group. Overall, 12. 4% of all pregabalin-treated patients and 9. 0% of all placebo-treated patients had at least one severe event while 8% of pregabalin-treated patients and 4. 3% of placebo-treated patients had at least one severe treatment-related adverse event. Adverse Reaction Incidence in Controlled Trials in Neuropathic Pain Associated with Postherpetic Neuralgia * PGB: pregabalin daggerThinking abnormal primarily consists of events related to difficulty with concentration/attention but also includes events related to cognition and language problems and slowed thinking. double dagger Investigator term; summary level term is amblyopia Body system Preferred term 75 mg/d [N=84] % 150 mg/d [N=302] % 300 mg/d [N=312] % 600 mg/d [N=154] % All PGB* [N=852] % Placebo [N=398] % Body as a whole Infection 14 8 6 3 7 4 Headache 5 9 5 8 7 5 Pain 5 4 5 5 5 4 Accidental injury 4 3 3 5 3 2 Flu syndrome 1 2 2 1 2 1 Face edema 0 2 1 3 2 1 Digestive system Dry mouth 7 7 6 15 8 3 Constipation 4 5 5 5 5 2 Flatulence 2 1 2 3 2 1 Vomiting 1 1 3 3 2 1 Metabolic and nutritional disorders Peripheral edema 0 8 16 16 12 4 Weight gain 1 2 5 7 4 0 Edema 0 1 2 6 2 1 Musculoskeletal system Myasthenia 1 1 1 1 1 0 Nervous system Dizziness 11 18 31 37 26 9 Somnolence 8 12 18 25 16 5 Ataxia 1 2 5 9 5 1 Abnormal gait 0 2 4 8 4 1 Confusion 1 2 3 7 3 0 Thinking abnormaldagger 0 2 1 6 2 2 Incoordination 2 2 1 3 2 0 Amnesia 0 1 1 4 2 0 Speech disorder 0 0 1 3 1 0 Respiratory system Bronchitis 0 1 1 3 1 1 Special senses Blurry visiondouble dagger 1 5 5 9 5 3 Diplopia 0 2 2 4 2 0 Abnormal vision 0 1 2 5 2 0 Eye Disorder 0 1 1 2 1 0 Urogenital System Urinary Incontinence 0 1 1 2 1 0 Controlled Studies of Adjunctive Therapy for Partial-Onset Seizures in Adult Patients Adverse Reactions Leading to Discontinuation Approximately 15% of patients receiving pregabalin capsules and 6% of patients receiving placebo in trials of adjunctive therapy for partial-onset seizures discontinued prematurely due to adverse reactions. In the pregabalin capsule treatment group, the adverse reactions most frequently leading to discontinuation were dizziness (6%), ataxia (4%), and somnolence (3%). In comparison, less than 1% of patients in the placebo group withdrew due to each of these events. Other adverse reactions that led to discontinuation of at least 1% of patients in the pregabalin capsule group and at least twice as frequently compared to the placebo group were asthenia, diplopia, blurred vision, thinking abnormal, nausea, tremor, vertigo, headache, and confusion (which each led to withdrawal in 2% or less of patients). Most Common Adverse Reactions Table 6 lists all dose-related adverse reactions occurring in at least 2% of all pregabalin capsule-treated patients. Dose-relatedness was defined as the incidence of the adverse event in the 600 mg/day group was at least 2% greater than the rate in both the placebo and 150 mg/day groups. In these studies, 758 patients received pregabalin capsules and 294 patients received placebo for up to 12 weeks. Dose-related Adverse Reaction Incidence in Controlled Trials of Adjunctive Therapy for Partial Onset Seizures in Adult Patients * PGB: pregabalin daggerExcludes patients who received the 50 mg dose in Study E1. double daggerThinking abnormal primarily consists of events related to difficulty with concentration/attention but also includes events related to cognition and language problems and slowed thinking. section Body System Preferred Term 150 mg/d [N = 185] % 300 mg/d [N = 90] % 600 mg/d [N = 395] % All PGB* [N = 670]dagger % Placebo [N = 294] % Body as a Whole Accidental Injury 7 11 10 9 5 Pain 3 2 5 4 3 Digestive System Increased Appetite 2 3 6 5 1 Dry Mouth 1 2 6 4 1 Constipation 1 1 7 4 2 Metabolic and Nutritional Disorders Weight Gain 5 7 16 12 1 Peripheral Edema 3 3 6 5 2 Nervous System Dizziness 18 31 38 32 11 Somnolence 11 18 28 22 11 Ataxia 6 10 20 15 4 Tremor 3 7 11 8 4 Thinking Abnormaldouble dagger 4 8 9 8 2 Amnesia 3 2 6 5 2 Speech Disorder 1 2 7 5 1 Incoordination 1 3 6 4 1 Abnormal Gait 1 3 5 4 0 Twitching 0 4 5 4 1 Confusion 1 2 5 4 2 Myoclonus 1 0 4 2 0 Special Senses Blurred Vision section 5 8 12 10 4 Diplopia 5 7 12 9 4 Abnormal Vision 3 1 5 4 1 Controlled Study of Adjunctive Therapy for Partial-Onset Seizures in Patients 4 to Less Than 17 Years of Age Adverse Reactions Leading to Discontinuation Approximately 2. 5% of patients receiving pregabalin capsules and no patients receiving placebo in trials of adjunctive therapy for partial-onset seizures discontinued prematurely due to adverse reactions. In the pregabalin capsules treatment group, the adverse reactions leading to discontinuation were somnolence (3 patients), worsening of epilepsy (1 patient), and hallucination (1 patient). Most Common Adverse Reactions Table 7 lists all dose-related adverse reactions occurring in at least 2% of all pregabalin capsules -treated patients. Dose-relatedness was defined as an incidence of the adverse event in the 10 mg/kg/day group that was at least 2% greater than the rate in both the placebo and 2. 5 mg/kg/day groups. In this study, 201 patients received pregabalin capsules and 94 patients received placebo for up to 12 weeks. A majority of pregabalin-treated patients in the clinical study had adverse reactions with a maximum intensity of "mild" or "moderate". Dose-related Adverse Reaction Incidence in a Controlled Trial in Adjunctive Therapy for Partial-Onset Seizures in Patients 4 to Less Than 17 Years of Age Body System Preferred Term 2. 5 mg/kg/day a [N=104] % 10 mg/kg/day b [N=97] % All PGB [N=201] % Placebo [N=94] % Gastrointestinal disorders Salivary hypersecretion 1 4 2 0 Investigations Weight increased 4 13 8 4 Metabolism and nutrition disorders Increased appetite 7 10 8 4 Nervous system disorders Somnolence 17 26 21 14 Abbreviations: N=number of patients; PGB = pregabalin. Controlled Study of Adjunctive Therapy for Partial-Onset Seizures in Patients 1 Month to Less Than 4 Years of Age Most Common Adverse Reactions Table 8 lists all dose-related adverse reactions occurring in at least 2% of all pregabalin capsules -treated patients. Dose-relatedness was defined as an incidence of the adverse event in the 14 mg/kg/day group that was at least 2% greater than the rate in both the placebo and 7 mg/kg/day groups. In this study, 105 patients received pregabalin capsules and 70 patients received placebo for up to 14 days. Dose-related Adverse Reaction Incidence in a Controlled Trial in Adjunctive Therapy for Partial-Onset Seizures in Patients 1 Month to Less Than 4 Years of Age Body System Preferred Term 7 mg/kg/day [N=71] % 14 mg/kg/day [N=34] % All PGB [N=105] % Placebo [N=70] % Nervous system disorders Somnolence * 13 21 15 9 Infections and infestations Pneumonia 1 9 4 0 Viral infection 3 6 4 3 Abbreviations: N=number of patients; PGB=pregabalin. * Controlled Studies with Fibromyalgia Adverse Reactions Leading to Discontinuation In clinical trials of patients with fibromyalgia, 19% of patients treated with pregabalin (150 mg/day to 600 mg/day) and 10% of patients treated with placebo discontinued prematurely due to adverse reactions. In the pregabalin treatment group, the most common reasons for discontinuation due to adverse reactions were dizziness (6%) and somnolence (3%). In comparison, less than 1% of placebo-treated patients withdrew due to dizziness and somnolence. Other reasons for discontinuation from the trials, occurring with greater frequency in the pregabalin treatment group than in the placebo treatment group, were fatigue, headache, balance disorder, and weight increased. Each of these adverse reactions led to withdrawal in approximately 1% of patients. Most Common Adverse Reactions Table 9 lists all adverse reactions, regardless of causality, occurring in greater than or equal to 2% of patients with fibromyalgia in the 'all pregabalin' treatment group for which the incidence was greater than in the placebo treatment group. A majority of pregabalin-treated patients in clinical studies experienced adverse reactions with a maximum intensity of "mild" or "moderate". Adverse Reaction Incidence in Controlled Trials in Fibromyalgia * System Organ Class Preferred term 150 mg/d [N=132] % 300 mg/d [N=502] % 450 mg/d [N=505] % 600 mg/d [N=378] % All PGB* [N=1517] % Placebo [N=505] % Ear and Labyrinth Disorders Vertigo 2 2 2 1 2 0 Eye Disorders Vision blurred 8 7 7 12 8 1 Gastrointestinal Disorders Dry mouth 7 6 9 9 8 2 Constipation 4 4 7 10 7 2 Vomiting 2 3 3 2 3 2 Flatulence 1 1 2 2 2 1 Abdominal distension 2 2 2 2 2 1 General Disorders and Administrative Site Conditions Fatigue 5 7 6 8 7 4 Edema peripheral 5 5 6 9 6 2 Chest pain 2 1 1 2 2 1 Feeling abnormal 1 3 2 2 2 0 Edema 1 2 1 2 2 1 Feeling drunk 1 2 1 2 2 0 Infections and Infestations Sinusitis 4 5 7 5 5 4 Investigations Weight increased 8 10 10 14 11 2 Metabolism and Nutrition Disorders Increased appetite 4 3 5 7 5 1 Fluid retention 2 3 3 2 2 1 Musculoskeletal and Connective Tissue Disorders Arthralgia 4 3 3 6 4 2 Muscle spasms 2 4 4 4 4 2 Back pain 2 3 4 3 3 3 Nervous System Disorders Dizziness 23 31 43 45 38 9 Somnolence 13 18 22 22 20 4 Headache 11 12 14 10 12 12 Disturbance in attention 4 4 6 6 5 1 Balance disorder 2 3 6 9 5 0 Memory impairment 1 3 4 4 3 0 Coordination abnormal 2 1 2 2 2 1 Hypoesthesia 2 2 3 2 2 1 Lethargy 2 2 1 2 2 0 Tremor 0 1 3 2 2 0 Psychiatric Disorders Euphoric Mood 2 5 6 7 6 1 Confusional state 0 2 3 4 3 0 Anxiety 2 2 2 2 2 1 Disorientation 1 0 2 1 2 0 Depression 2 2 2 2 2 2 Respiratory, Thoracic and Mediastinal Disorders Pharyngolaryngeal pain 2 1 3 3 2 2 Controlled Studies in Neuropathic Pain Associated with Spinal Cord Injury Adverse Reactions Leading to Discontinuation In clinical trials of adults with neuropathic pain associated with spinal cord injury, 13% of patients treated with pregabalin and 10% of patients treated with placebo discontinued prematurely due to adverse reactions. In the pregabalin treatment group, the most common reasons for discontinuation due to adverse reactions were somnolence (3%) and edema (2%). In comparison, none of the placebo-treated patients withdrew due to somnolence and edema. Other reasons for discontinuation from the trials, occurring with greater frequency in the pregabalin treatment group than in the placebo treatment group, were fatigue and balance disorder. Each of these adverse reactions led to withdrawal in less than 2% of patients. Most Common Adverse Reactions Table 10 lists all adverse reactions, regardless of causality, occurring in greater than or equal to 2% of patients for which the incidence was greater than in the placebo treatment group with neuropathic pain associated with spinal cord injury in the controlled trials. Adverse Reaction Incidence in Controlled Trials in Neuropathic Pain Associated with Spinal Cord Injury * PGB: Pregabalin System Organ Class PGB* (N=182) Placebo (N=174) % % Ear and labyrinth disorders Vertigo 2. 1 Eye disorders Vision blurred 6. 1 Gastrointestinal disorders Dry mouth 11. 9 Constipation 8. 0 Vomiting 2. 1 General disorders and administration site conditions Fatigue 11. 0 Edema peripheral 10. 1 Infections and infestations Nasopharyngitis 8. 6 Investigations Weight increased 3. 1 Blood creatine phosphokinase increased 2. 7 0 Musculoskeletal and connective tissue disorders Muscular weakness 4. 7 Pain in extremity 3. 3 Neck pain 2. 1 Back pain 2. 7 Joint swelling 2. 2 0 Nervous system disorders Somnolence 35. 5 Dizziness 20. 9 Disturbance in attention 3. 8 0 Memory impairment 3. 1 Paresthesia 2. 6 Psychiatric disorders Insomnia 3. 9 Euphoric mood 2. 6 Renal and urinary disorders Urinary incontinence 2. 1 Skin and subcutaneous tissue disorders Decubitus ulcer 2. 1 Vascular disorders Hypertension 2. 1 Hypotension 2. 2 0 Other Adverse Reactions Observed During the Clinical Studies of Pregabalin Capsules Following is a list of treatment-emergent adverse reactions reported by patients treated with pregabalin capsules during all clinical trials. The listing does not include those events already listed in the previous tables or elsewhere in labeling, those events for which a drug cause was remote, those events which were so general as to be uninformative, and those events reported only once which did not have a substantial probability of being acutely life-threatening. Events are categorized by body system and listed in order of decreasing frequency according to the following definitions: frequent infrequent rare Warnings and Precautions ( 5 Body as a Whole - Frequent: Infrequent: Rare: Cardiovascular System - Infrequent: Rare: Digestive System - Frequent: Infrequent: Rare: Hemic and Lymphatic System - Frequent: Infrequent: Rare: Metabolic and Nutritional Disorders - Rare: Musculoskeletal System - Frequent: Infrequent: Rare: Nervous System - Frequent: Infrequent: Rare: Respiratory System - Rare: Skin and Appendages - Frequent: Infrequent: Rare: Special senses - Frequent: Infrequent: Rare: Urogenital System - Frequent: Infrequent: Rare: Comparison of Gender and Race The overall adverse event profile of pregabalin was similar between women and men. There are insufficient data to support a statement regarding the distribution of adverse experience reports by race. The following adverse reactions have been identified during postapproval use of pregabalin capsules. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Nervous System Disorders en dash Headache Gastrointestinal Disorders en dash Nausea, Diarrhea Reproductive System and Breast Disorders en dash Gynecomastia, Breast Enlargement Skin and subcutaneous tissue disorders en dash Bullous pemphigoid There are postmarketing reports of life-threatening or fatal respiratory depression in patients taking pregabalin capsules with opioids or other CNS depressants, or in the setting of underlying respiratory impairment. In addition, there are postmarketing reports of events related to reduced lower gastrointestinal tract function (e. , intestinal obstruction, paralytic ileus, constipation) when pregabalin capsules were co-administered with medications that have the potential to produce constipation, such as opioid analgesics.
Precautions
Pregabalin capsules are contraindicated in patients with known hypersensitivity to pregabalin or any of its components. Angioedema and hypersensitivity reactions have occurred in patients receiving pregabalin therapy [see Warnings and Precautions ( 5. 2 Known hypersensitivity to pregabalin or any of its components.
Special Population Medication
Lactation: Breastfeeding is not recommended. 2 Pregnancy Exposure Registry There is a pregnancy exposure registry that monitors pregnancy outcomes in women exposed to pregabalin capsules during pregnancy. To provide information regarding the effects of in utero exposure to pregabalin capsules, physicians are advised to recommend that pregnant patients taking pregabalin capsules enroll in the North American Antiepileptic Drug (NAAED) Pregnancy Registry. This can be done by calling the toll free number 1-888-233-2334, and must be done by patients themselves. Information on the registry can also be found at the website http://www. aedpregnancyregistry. Risk Summary Observational studies on the use of pregabalin capsules during pregnancy suggest a possible small increase in the rate of overall major birth defects, but there was no consistent or specific pattern of major birth defects identified (see Data) In animal reproduction studies, increased incidences of fetal structural abnormalities and other manifestations of developmental toxicity, including skeletal malformations, retarded ossification, and decreased fetal body weight were observed in the offspring of rats and rabbits given pregabalin orally during organogenesis, at doses that produced plasma pregabalin exposures (AUC) greater than or equal to 16 times human exposure at the maximum recommended dose (MRD) of 600 mg/day (see Data) The background risk of major birth defects and miscarriage for the indicated populations are unknown. However, the background risk in the U. general population of major birth defects is 2% to 4% and of miscarriage is 15% to 20% of clinically recognized pregnancies. Data Human Data One database study, which included over 2,700 pregnancies exposed to pregabalin (monotherapy) during the first trimester compared to 3,063,251 pregnancies unexposed to antiepileptics demonstrated prevalence ratios for major malformations overall of 1. 14 (CI 95% 0. 35) for pregabalin, 1. 29 (CI 95% 1. 65) for lamotrigine, 1. 39 (CI 95% 1. 82) for duloxetine, and 1. 24 (CI 95% 1. 54) for exposure to either lamotrigine or duloxetine. Important study limitations include uncertainty of whether women who filled a prescription took the medication and inability to adequately control for the underlying disease and other potential confounders. A published study included results from two separate databases. One database, which included 353 pregnancies exposed to pregabalin (monotherapy) during the first trimester compared to 368,489 pregnancies unexposed to antiepileptics, showed no increase in risk of major birth defects; adjusted relative risk 0. 87 (CI 95% 0. The second database, which included 118 pregnancies exposed to pregabalin (monotherapy) during the first trimester compared to 380,347 pregnancies unexposed to antiepileptics, suggested a small increase in risk of major birth defects; adjusted relative risk 1. 26 (CI 95% 0. The risk estimates crossed the null, and the study had limitations similar to the prior study. Other published epidemiologic studies reported inconsistent findings. No specific pattern of birth defects was identified across studies. All of the studies had limitations due to their retrospective design. Animal Data When pregnant rats were given pregabalin (500, 1,250 or 2,500 mg/kg) orally throughout the period of organogenesis, incidences of specific skull alterations attributed to abnormally advanced ossification (premature fusion of the jugal and nasal sutures) were increased at greater than or equal to 1,250 mg/kg, and incidences of skeletal variations and retarded ossification were increased at all doses. Fetal body weights were decreased at the highest dose. The low dose in this study was associated with a plasma exposure (AUC) approximately 17 times human exposure at the MRD of 600 mg/day. A no-effect dose for rat embryo-fetal developmental toxicity was not established. When pregnant rabbits were given pregabalin (250, 500, or 1,250 mg/kg) orally throughout the period of organogenesis, decreased fetal body weight and increased incidences of skeletal malformations, visceral variations, and retarded ossification were observed at the highest dose. The no-effect dose for developmental toxicity in rabbits (500 mg/kg) was associated with a plasma exposure approximately 16 times human exposure at the MRD. In a study in which female rats were dosed with pregabalin (50, 100, 250, 1,250, or 2,500 mg/kg) throughout gestation and lactation, offspring growth was reduced at greater than or equal to 100 mg/kg and offspring survival was decreased at greater than or equal to 250 mg/kg. The effect on offspring survival was pronounced at doses greater than or equal to 1,250 mg/kg, with 100% mortality in high-dose litters. When offspring were tested as adults, neurobehavioral abnormalities (decreased auditory startle responding) were observed at greater than or equal to 250 mg/kg and reproductive impairment (decreased fertility and litter size) was seen at 1,250 mg/kg. The no-effect dose for pre- and postnatal developmental toxicity in rats (50 mg/kg) produced a plasma exposure approximately 2 times human exposure at the MRD. In the prenatal-postnatal study in rats, pregabalin prolonged gestation and induced dystocia at exposures greater than or equal to 50 times the mean human exposure (AUC (0en dash24) Risk Summary Small amounts of pregabalin have been detected in the milk of lactating women. A pharmacokinetic study in lactating women detected pregabalin in breast milk at average steady state concentrations approximately 76% of those in maternal plasma. The estimated average daily infant dose of pregabalin from breast milk (assuming mean milk consumption of 150 mL/kg/day) was 0. 31 mg/kg/day, which on a mg/kg basis would be approximately 7% of the maternal dose (see Data) Based on animal studies, there is a potential risk of tumorigenicity with pregabalin exposure via breast milk to the breastfed infant [see Nonclinical Toxicology ( 13. 1 [see Warnings and Precautions ( 5. 9 Data A pharmacokinetic study in ten lactating women, who were at least 12 weeks postpartum, evaluated the concentrations of pregabalin in plasma and breast milk. Pregabalin capsules 150 mg oral capsule was given every 12 hours (300 mg daily dose) for a total of four doses. Pregabalin was detected in breast milk at average steady-state concentrations approximately 76% of those in maternal plasma. 31 mg/kg/day, which on a mg/kg basis would be approximately 7% of the maternal dose. The study did not evaluate the effects of pregabalin on milk production. Infants did not receive breast milk obtained during the dosing period, therefore, the effects of pregabalin on the breast fed infant were not evaluated. Infertility Males Effects on Spermatogenesis In a randomized, double-blind, placebo-controlled non-inferiority study to assess the effect of pregabalin on sperm characteristics, healthy male subjects received pregabalin at a daily dose up to 600 mg (n=111) or placebo (n=109) for 13 weeks (one complete sperm cycle) followed by a 13-week washout period (off-drug). A total of 65 subjects in the pregabalin group (59%) and 62 subjects in the placebo group (57%) were included in the per protocol (PP) population. These subjects took study drug for at least 8 weeks, had appropriate timing of semen collections and did not have any significant protocol violations. Among these subjects, approximately 9% of the pregabalin group (6/65) vs. 3% in the placebo group (2/62) had greater than or equal to 50% reduction in mean sperm concentrations from baseline at Week 26 (the primary endpoint). The difference between pregabalin and placebo was within the pre-specified non-inferiority margin of 20%. There were no adverse effects of pregabalin on sperm morphology, sperm motility, serum FSH or serum testosterone levels as compared to placebo. In subjects in the PP population with greater than or equal to 50% reduction in sperm concentration from baseline, sperm concentrations were no longer reduced by greater than or equal to 50% in any affected subject after an additional 3 months off-drug. In one subject, however, subsequent semen analyses demonstrated reductions from baseline of greater than or equal to 50% at 9 and 12 months off-drug. The clinical relevance of these data is unknown. In the animal fertility study with pregabalin in male rats, adverse reproductive and developmental effects were observed [see Nonclinical Toxicology ( 13. 1 Neuropathic Pain Associated with Diabetic Peripheral Neuropathy, Postherpetic Neuralgia, and Neuropathic Pain Associated with Spinal Cord Injury Safety and effectiveness in pediatric patients have not been established. Fibromyalgia Safety and effectiveness in pediatric patients have not been established. A 15-week, placebo-controlled trial was conducted with 107 pediatric patients with fibromyalgia, ages 12 through 17 years, at pregabalin capsules total daily doses of 75-450 mg per day. The primary efficacy endpoint of change from baseline to Week 15 in mean pain intensity (derived from an 11-point numeric rating scale) showed numerically greater improvement for the pregabalin-treated patients compared to placebo-treated patients, but did not reach statistical significance. The most frequently observed adverse reactions in the clinical trial included dizziness, nausea, headache, weight increased, and fatigue. The overall safety profile in adolescents was similar to that observed in adults with fibromyalgia. Adjunctive Therapy for Partial-Onset Seizures Safety and effectiveness in pediatric patients below the age of 1 month have not been established. 4 to Less Than 17 Years of Age with Partial-Onset Seizures The safety and effectiveness of pregabalin capsules as adjunctive treatment for partial-onset seizures in pediatric patients 4 to less than 17 years of age have been established in a 12-week, double-blind, placebo-controlled study (n=295) [see Clinical Studies (14. 3)] Responder rates (50% or greater reduction in partial-onset seizure frequency) were a key secondary efficacy parameter and showed numerical improvement with pregabalin capsules compared with placebo: the responder rates were 40. 6%, for pregabalin capsules 10 mg/kg/day, pregabalin capsules 2. 5 mg/kg/day, and placebo, respectively. The most common adverse reactions (>=5%) with pregabalin capsules in this study were somnolence, weight increased, and increased appetite [see Adverse Reactions (6. 1)] The use of pregabalin capsules 2. 5 mg/kg/day in pediatric patients is further supported by evidence from adequate and well-controlled studies in adults with partial-onset seizures and pharmacokinetic data from adult and pediatric patients [see Clinical Pharmacology (12. 3)] 1 Month to Less than 4 Years of Age with Partial-Onset Seizures The safety and effectiveness of pregabalin capsules as adjunctive treatment for partial-onset seizures in pediatric patients 1 month to less than 4 years of age have been established in a 14-day double-blind, placebo-controlled study (N=175) [see Clinical Studies (14. The youngest subject evaluated was 3 months of age; use in patients 1 month to less than 3 months of age is supported by additional pharmacokinetic analyses. Patients treated with pregabalin capsules 14 mg/kg/day had, on average, 43. 9% greater reduction in partial-onset seizures than patients treated with placebo (p=0. In addition, pediatric patients treated with pregabalin capsules 14 mg/kg/day showed numerical improvement in responder rates (>=50% reduction in partial-onset seizure frequency) compared with placebo (53. 6% versus 41. Patients treated with pregabalin capsules 7 mg/kg/day did not show improvement relative to placebo for either endpoint. The most common dose-related adverse reactions (>5%) with pregabalin capsules in this study were somnolence, pneumonia, and viral infection [see Adverse Reactions (6. 1)] Juvenile Animal Data In studies in which pregabalin (50 mg/kg to 500 mg/kg) was orally administered to young rats from early in the postnatal period (Postnatal Day 7) through sexual maturity, neurobehavioral abnormalities (deficits in learning and memory, altered locomotor activity, decreased auditory startle responding and habituation) and reproductive impairment (delayed sexual maturation and decreased fertility in males and females) were observed at doses greater than or equal to 50 mg/kg. The neurobehavioral changes of acoustic startle persisted at greater than or equal to 250 mg/kg and locomotor activity and water maze performance at greater than or equal to 500 mg/kg in animals tested after cessation of dosing and, thus, were considered to represent long-term effects. The low effect dose for developmental neurotoxicity and reproductive impairment in juvenile rats (50 mg/kg) was associated with a plasma pregabalin exposure (AUC) approximately equal to human exposure at the maximum recommended dose of 600 mg/day. A no-effect dose was not established. In controlled clinical studies of pregabalin capsules in neuropathic pain associated with diabetic peripheral neuropathy, 246 patients were 65 to 74 years of age, and 73 patients were 75 years of age or older. In controlled clinical studies of pregabalin capsules in neuropathic pain associated with postherpetic neuralgia, 282 patients were 65 to 74 years of age, and 379 patients were 75 years of age or older. In controlled clinical studies of pregabalin capsules in epilepsy, there were only 10 patients 65 to 74 years of age, and 2 patients who were 75 years of age or older. No overall differences in safety and efficacy were observed between these patients and younger patients. In controlled clinical studies of pregabalin capsules in fibromyalgia, 106 patients were 65 years of age or older. Although the adverse reaction profile was similar between the two age groups, the following neurological adverse reactions were more frequent in patients 65 years of age or older: dizziness, vision blurred, balance disorder, tremor, confusional state, coordination abnormal, and lethargy. Pregabalin is known to be substantially excreted by the kidney, and the risk of toxic reactions to pregabalin may be greater in patients with impaired renal function. Because pregabalin is eliminated primarily by renal excretion, adjust the dose for elderly patients with renal impairment [see Dosage and Administration ( 2. 7 Pregabalin is eliminated primarily by renal excretion and dose adjustment is recommended for adult patients with renal impairment [see Dosage and Administration ( 2.
Drug Interactions
Since pregabalin is predominantly excreted unchanged in the urine, undergoes negligible metabolism in humans (less than 2% of a dose recovered in urine as metabolites), and does not bind to plasma proteins, its pharmacokinetics are unlikely to be affected by other agents through metabolic interactions or protein binding displacement. In vitro in vivo [see Clinical Pharmacology ( 12 Pharmacodynamics Multiple oral doses of pregabalin capsules were co-administered with oxycodone, lorazepam, or ethanol. Although no pharmacokinetic interactions were seen, additive effects on cognitive and gross motor functioning were seen when pregabalin capsules were co-administered with these drugs. No clinically important effects on respiration were seen.
Other Information
OVERDOSAGE
Signs, Symptoms and Laboratory Findings of Acute Overdosage in Humans In the postmarketing experience, the most commonly reported adverse events observed with pregabalin when taken in overdose include reduced consciousness, depression/anxiety, confusional state, agitation, and restlessness. Seizures and heart block have also been reported. Deaths have been reported in the setting of lone pregabalin capsule overdose and in combination with other CNS depressants. Treatment or Management of Overdose There is no specific antidote for overdose with pregabalin capsules. If indicated, elimination of unabsorbed drug may be attempted by emesis or gastric lavage; observe usual precautions to maintain the airway. General supportive care of the patient is indicated including monitoring of vital signs and observation of the clinical status of the patient. Contact a Certified Poison Control Center for up-to-date information on the management of overdose with pregabalin capsules. Pregabalin capsules can be removed by hemodialysis. Standard hemodialysis procedures result in significant clearance of pregabalin (approximately 50% in 4 hours).
NONCLINICAL TOXICOLOGY
Carcinogenesis A dose-dependent increase in the incidence of malignant vascular tumors (hemangiosarcomas) was observed in two strains of mice (B6C3F1 and CD-1) given pregabalin (200, 1,000, or 5,000 mg/kg) in the diet for two years. Plasma pregabalin exposure (AUC) in mice receiving the lowest dose that increased hemangiosarcomas was approximately equal to the human exposure at the maximum recommended dose (MRD) of 600 mg/day. A no-effect dose for induction of hemangiosarcomas in mice was not established. No evidence of carcinogenicity was seen in two studies in Wistar rats following dietary administration of pregabalin for two years at doses (50, 150, or 450 mg/kg in males and 100, 300 or 900 mg/kg in females) that were associated with plasma exposures in males and females up to approximately 14 and 24 times, respectively, human exposure at the MRD. Mutagenesis Pregabalin was not mutagenic in bacteria or in mammalian cells in vitro in vitro in vivo Impairment of Fertility In fertility studies in which male rats were orally administered pregabalin (50 mg/kg to 2,500 mg/kg) prior to and during mating with untreated females, a number of adverse reproductive and developmental effects were observed. These included decreased sperm counts and sperm motility, increased sperm abnormalities, reduced fertility, increased preimplantation embryo loss, decreased litter size, decreased fetal body weights, and an increased incidence of fetal abnormalities. Effects on sperm and fertility parameters were reversible in studies of this duration (3 to 4 months). The no-effect dose for male reproductive toxicity in these studies (100 mg/kg) was associated with a plasma pregabalin exposure (AUC) approximately 3 times human exposure at the maximum recommended dose (MRD) of 600 mg/day. In addition, adverse reactions on reproductive organ (testes, epididymides) histopathology were observed in male rats exposed to pregabalin (500 mg/kg to 1,250 mg/kg) in general toxicology studies of four weeks or greater duration. The no-effect dose for male reproductive organ histopathology in rats (250 mg/kg) was associated with a plasma exposure approximately 8 times human exposure at the MRD. In a fertility study in which female rats were given pregabalin (500, 1,250, or 2,500 mg/kg) orally prior to and during mating and early gestation, disrupted estrous cyclicity and an increased number of days to mating were seen at all doses, and embryolethality occurred at the highest dose. The low dose in this study produced a plasma exposure approximately 9 times that in humans receiving the MRD. A no-effect dose for female reproductive toxicity in rats was not established. Dermatopathy Skin lesions ranging from erythema to necrosis were seen in repeated-dose toxicology studies in both rats and monkeys. The etiology of these skin lesions is unknown. At the maximum recommended human dose (MRD) of 600 mg/day, there is a 2-fold safety margin for the dermatological lesions. The more severe dermatopathies involving necrosis were associated with pregabalin exposures (as expressed by plasma AUCs) of approximately 3 to 8 times those achieved in humans given the MRD. No increase in incidence of skin lesions was observed in clinical studies. Ocular Lesions Ocular lesions (characterized by retinal atrophy [including loss of photoreceptor cells] and/or corneal inflammation/mineralization) were observed in two lifetime carcinogenicity studies in Wistar rats. These findings were observed at plasma pregabalin exposures (AUC) greater than or equal to 2 times those achieved in humans given the maximum recommended dose of 600 mg/day. A no-effect dose for ocular lesions was not established. Similar lesions were not observed in lifetime carcinogenicity studies in two strains of mice or in monkeys treated for 1 year.
CLINICAL STUDIES
The efficacy of the maximum recommended dose of pregabalin capsules for the management of neuropathic pain associated with diabetic peripheral neuropathy was established in three double-blind, placebo-controlled, multicenter studies with three times a day dosing, two of which studied the maximum recommended dose. Patients were enrolled with either Type 1 or Type 2 diabetes mellitus and a diagnosis of painful distal symmetrical sensorimotor polyneuropathy for 1 to 5 years. A total of 89% of patients completed Studies DPN 1 and DPN 2. The patients had a minimum mean baseline pain score of greater than or equal to 4 on an 11-point numerical pain rating scale ranging from 0 (no pain) to 10 (worst possible pain). The baseline mean pain scores across the two studies ranged from 6. Patients were permitted up to 4 grams of acetaminophen per day as needed for pain, in addition to pregabalin. Patients recorded their pain daily in a diary. Study DPN 1: [see Adverse Reactions ( 6. 1 Figure 1: Study DPN 2: Figure 2: The efficacy of pregabalin capsules for the management of postherpetic neuralgia was established in three double-blind, placebo-controlled, multicenter studies. These studies enrolled patients with neuralgia persisting for at least 3 months following healing of herpes zoster rash and a minimum baseline score of greater than or equal to 4 on an 11-point numerical pain rating scale ranging from 0 (no pain) to 10 (worst possible pain). Seventy-three percent of patients completed the studies. The baseline mean pain scores across the 3 studies ranged from 6 to 7. Study PHN 1: Figure 3: Study PHN 2: Figure 4: Study PHN 3: Figure 5: Adjunctive Therapy for Partial-Onset Seizures in Adult Patients The efficacy of pregabalin capsules as adjunctive therapy for partial-onset seizures in adult patients was established in three 12-week, randomized, double-blind, placebo-controlled, multicenter studies. Patients were enrolled who had partial-onset seizures with or without secondary generalization and were not adequately controlled with 1 to 3 concomitant antiepileptic drugs (AEDs). Patients taking gabapentin were required to discontinue gabapentin treatment 1 week prior to entering baseline. During an 8-week baseline period, patients had to experience at least 6 partial-onset seizures with no seizure-free period exceeding 4 weeks. The mean duration of epilepsy was 25 years in these 3 studies and the mean and median baseline seizure frequencies were 22. 5 and 10 seizures per month, respectively. Approximately half of the patients were taking 2 concurrent AEDs at baseline. Among the pregabalin capsules-treated patients, 80% completed the double-blind phase of the studies. Table 11 shows median baseline seizure rates and median percent reduction in seizure frequency by dose. Seizure Response in Controlled, Adjunctive Epilepsy Studies in Adults Daily Dose of Pregabalin Dosing Regimen N Baseline Seizure Frequency/mo Median % Change from Baseline p-value, vs. placebo Study E1 BID 100 9. 4230 Study E2 TID 96 9. 0007 Study E3 BID/TID 98 11 -1 0. 0001 In the first study (E1), there was evidence of a dose-response relationship for total daily doses of pregabalin capsules between 150 and 600 mg/day; a dose of 50 mg/day was not effective. In the first study (E1), each daily dose was divided into two equal doses (twice a day dosing). In the second study (E2), each daily dose was divided into three equal doses (three times a day dosing). In the third study (E3), the same total daily dose was divided into two equal doses for one group (twice a day dosing) and three equal doses for another group (three times a day dosing). While the three times a day dosing group in Study E3 performed numerically better than the twice a day dosing group, this difference was small and not statistically significant. A secondary outcome measure included the responder rate (proportion of patients with greater than or equal to 50% reduction from baseline in partial seizure frequency). The following figure displays responder rate by dose for two of the studies. Figure 6: Figure 7: Subset evaluations of the antiseizure efficacy of pregabalin capsules showed no clinically important differences as a function of age, gender, or race. Adjunctive Therapy for Partial-Onset Seizures in Pediatric Patients 4 to Less Than 17 Years of Age The efficacy of pregabalin capsules as adjunctive therapy in partial-onset seizures was established in a 12-week, randomized, double-blind, placebo-controlled, multicenter study in pediatric patients 4 years to less than 17 years of age with partial-onset seizures with or without secondary generalization. The mean duration of epilepsy was 6 years and the mean and median baseline seizure frequencies were 57 and 18 seizures per month, respectively. Approximately 74% of the patients were taking 2 to 3 concurrent AEDs at baseline. Among the pregabalin capsules-treated patients, 87% completed the double-blind phase of the study. In this study, pregabalin capsules 2. 5 mg/kg/day (maximum 150 mg/day) and 10 mg/kg/day (maximum 600 mg/day) were compared to placebo. Administration of each daily dose was divided into two equal doses (twice a day dosing). Because of higher weight-normalized clearance in patients with body weight less than 30 kg [see Clinical Pharmacology (12. 3)], the pregabalin capsules dose was increased by 40% to 3. 5 mg/kg/day for patients weighing less than 30 kg randomized to the Table 12 shows median baseline seizure rates, median percent change from baseline in seizure rates, and percent difference relative to placebo (derived from the primary analysis model) by dose. Seizure Response in Controlled Adjunctive Partial-Onset Seizure Study in Pediatric Patients 4 to Less Than 17 Years of Age Abbreviations: BID=twice daily; N=number. Daily Dose of pregabalin capsules N Median Baseline Seizure Frequency/ 28 days Median % Change from Baseline % Difference Relative to Placebo p-value, versus placebo Placebo 93 16. 9 Not applicable 2. 5 mg/kg/day (BID)a 104 23. 2577 10 mg/kg/day (BID)b 97 17. 0185 There was evidence of a dose-response relationship for total daily doses of pregabalin capsules between 2. 5 mg/kg/day and 10 mg/kg/day. A significant improvement in seizure rate was observed for pregabaline capsules 10 mg/kg/day group compared with placebo. While the 2. 5 mg/kg/day group performed numerically better than placebo, this difference was not statistically significant. A key secondary efficacy measure, the responder rate (proportion of patients with greater than or equal to 50% reduction from baseline in partial seizure frequency) showed improvements for pregabalin capsules groups compared with placebo. The following figure displays responder rate by dose: Figure 8: Adjunctive Therapy for Partial-Onset Seizures in Pediatric Patients 1 Month to Less Than 4 Years of Age The efficacy of pregabalin capsules as adjunctive therapy in partial-onset seizures was established in a 14-day, randomized, double-blind, placebo-controlled, multicenter study in children 1 month to less than 4 years of age with partial-onset seizures with or without secondary generalization. The youngest patient evaluated was 3 months of age. During a 48- to 72-hour baseline video electroencephalogram (EEG), patients had to experience at least 2 partial-onset seizures. The mean duration of epilepsy at baseline was 1. 6 years and the mean and median baseline seizure frequencies were 12. 4 seizures per day, respectively. Approximately 33%, 50%, and 17% of patients were taking 1, 2, or 3 concurrent AEDs at baseline, respectively. Among the pregabalin capsules-treated patients, 97% completed the double-blind phase of the study. In this study, pregabalin capsules 7 mg/kg/day and 14 mg/kg/day were compared to placebo. Administration of each daily dose was divided into three equal doses (three times a day dosing). The primary endpoint was the 24-hour partial-onset seizure rate based on the comparison of the baseline video EEG to a repeat 48-72 hour video EEG performed at the end of 14 days of double-blind treatment. Table 13 shows median baseline seizure rates, median percent change from baseline in seizure rates, and percent difference relative to placebo (derived from the primary analysis model) by dose. Seizure Response in Controlled Adjunctive Partial-Onset Seizure Study in Pediatric Patients 1 Month to Less Than 4 Years of Age Daily Dose of pregabalin capsules N Median Baseline Seizure Frequency/ 24 hours Median % Change from Baseline % Difference Relative to Placebo p-value, versus placebo Placebo 53 2. 2 Not applicable 7 mg/kg/day 59 4. 4606 14 mg/kg/day 28 5. 0223 Abbreviations: N=number of patients A significant improvement in partial-onset seizure rate was observed for pregabalin capsules 14 mg/kg/day group compared with placebo. Patients treated with pregabalin capsules 7 mg/kg/day did not show improvement relative to placebo. Responder rates (>=50% or greater reduction in partial-onset seizure frequency) were a secondary efficacy parameter; patients treated with pregabalin capsules 14 mg/kg/day showed numerical improvement compared with placebo, while patients treated with pregabalin capsules 7 mg/kg/day did not show improvement relative to placebo: the responder rates were 53. 5% for pregabalin capsules 14 mg/kg/day, pregabalin capsules 7 mg/kg/day, and placebo, respectively. The efficacy of pregabalin capsules for management of fibromyalgia was established in one 14-week, double-blind, placebo-controlled, multicenter study (F1) and one six-month, randomized withdrawal study (F2). Studies F1 and F2 enrolled patients with a diagnosis of fibromyalgia using the American College of Rheumatology (ACR) criteria (history of widespread pain for 3 months, and pain present at 11 or more of the 18 specific tender point sites). The studies showed a reduction in pain by visual analog scale. In addition, improvement was demonstrated based on a patient global assessment (PGIC), and on the Fibromyalgia Impact Questionnaire (FIQ). Study F1 see Adverse Reactions ( 6. 1 For various levels of improvement in pain intensity from baseline to study endpoint, Figure 9 shows the fraction of patients achieving that level of improvement. The figure is cumulative. Patients who did not complete the study were assigned 0% improvement. Some patients experienced a decrease in pain as early as Week 1, which persisted throughout the study. Figure 9: Table 14. Patient Global Response in Fibromyalgia Study F1 Patient Global Impression of Change Treatment Group (mg/day) % Any Improvement 95% CI Placebo 47. 2) PGB 300 68. 3) PGB 450 77. 0) PGB 600 66. 1) PGB = Pregabalin Study F2 When considering return of pain or withdrawal due to adverse events as loss of response (LTR), treatment with pregabalin capsules resulted in a longer time to loss of therapeutic response than treatment with placebo. Fifty-three percent of the pregabalin-treated subjects compared to 33% of placebo patients remained on study drug and maintained a therapeutic response to Week 26 of the study. Treatment with pregabalin capsules also resulted in a longer time to loss of response based on the FIQ 1 2 1 2 Figure 10: The efficacy of pregabalin capsules for the management of neuropathic pain associated with spinal cord injury was established in two double-blind, placebo-controlled, multicenter studies. Patients were enrolled with neuropathic pain associated with spinal cord injury that persisted continuously for at least three months or with relapses and remissions for at least six months. A total of 63% of patients completed study 1 and 84% completed study 2. Patients were allowed to take opioids, non-opioid analgesics, antiepileptic drugs, muscle relaxants, and antidepressant drugs if the dose was stable for 30 days prior to screening. Patients were allowed to take acetaminophen and nonsteroidal anti-inflammatory drugs during the studies. Study SCI 1 Figure 11 : Study SCI 2 Figure 12 Image Image Image Image Image Image Image Image Image Image Image Image.
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