divalproex sodium 125 mg Capsule, Coated Pellets
Other active recalls for Divalproex Sodium (different manufacturers) — 1 · tap to view
🆔 Identity & classification
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🏷️ RxNorm drug class
This medicine belongs to the Mood Stabilizer class.
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🏭 Manufacturer & labeler
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🩺 Clinical
Valproic acid is used to treat certain types of seizures. Valproic acid is also used to treat mania (episodes of frenzied, abnormally excited mood) in people with bipolar disorder (manic-depressive disorder; a disease that causes episodes of depression, episodes of mania, and other abnormal moods). It is also used to prevent migraine headaches, but not to relieve headaches that have already begun. Valproic acid is in a class of medications called anticonvulsants. It works by increasing the amount of a certain natural substance in the brain.
Read the full MedlinePlus article ↗- Divalproex is used for three main things: controlling certain types of seizures (epilepsy), treating acute manic or mixed episodes in bipolar disorder, and preventing migraines. Wh...
- What exactly is divalproex used for — my doctor prescribed it but I'm not totally sure why.
- That depends on your specific form. If you're taking the extended-release tablet, you take it once a day and should swallow it whole — don't crush or chew it. The delayed-release t...
- How should I take it — does it matter when during the day or whether I eat first?
Patient education
Supplement & herbal interactions
Some supplements/herbs that may interact with Divalproex Sodium — tap one for details:
Divalproex Sodium may be associated with lower levels of 1 nutrient — worth a chat with your pharmacist, not a cause for alarm.
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💊 What it looks like
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🧪 Inactive Ingredients / Excipients
Inactive ingredients, also called excipients, are components of the drug product other than the active ingredient. They may include fillers, dyes, coatings, preservatives, flavors, or other formulation ingredients.
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UNII 3K9958V90M
A liquid solvent derived from fermentation or chemical synthesis. In medicines, alcohol dissolves active ingredients, helps preserve the product, and improves how the body absorbs certain drugs.
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UNII 5138Q19F1X
Ammonia is a colorless gas made from nitrogen and hydrogen. It's used in medicines as a pH buffer to maintain the correct acidity level and help keep the product stable.
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Butyl alcohol is a clear liquid organic solvent derived from petroleum or natural sources. In medicines, it helps dissolve active ingredients and serves as a solvent in liquid formulations and some topical products.
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Microcrystalline cellulose is a purified form of cellulose, a natural fiber from plant sources. It acts as a binder and filler in tablets and capsules, helping hold ingredients together and give the medicine its shape and size.
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FD&C Blue No. 1 is a synthetic blue dye approved for use in foods and medicines. It serves as a colorant to give the medication its distinctive appearance and help with product identification.
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A dark iron oxide compound that gives medicines their black or dark color. It's used as a colorant in tablets and capsules to help identify the product and make it visually distinctive.
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Gelatin is a protein derived from animal collagen, commonly used in medicines as a gelling agent and capsule material. It helps create soft or hard capsule shells that hold and release medication, and can also thicken liquid formulations.
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Hypromellose is a plant-based thickener made from cellulose. It's used in medicines as a binder to hold ingredients together, a coating for tablets, and a thickener for liquids.
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UNII ND2M416302
Isopropyl alcohol is a clear liquid solvent derived from petroleum. In medicines, it dissolves active ingredients and other components, helps the product flow smoothly, and aids in sterilization during manufacturing.
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UNII 1CS02G8656
Methacrylic acid is a synthetic polymer used as a coating material and binder in tablets and capsules. It helps control how and where the medication releases in the digestive system.
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UNII WZH3C48M4T
Potassium hydroxide is a strong alkaline chemical used in medicines to adjust and maintain the pH level of liquid formulations, helping keep the product stable and the active ingredients effective.
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UNII 6DC9Q167V3
Propylene glycol is a clear liquid derived from petroleum or vegetable sources. It acts as a solvent, humectant, and preservative in medicines, helping dissolve active ingredients and maintain product stability.
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UNII 46N107B71O
Shellac is a natural resin secreted by the lac beetle. It's used as a coating on tablets and capsules to control how quickly the medicine dissolves and to improve appearance and stability.
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Silicon dioxide is a naturally occurring mineral used as a glidant and anti-caking agent. It helps powder ingredients flow smoothly and prevents clumping during manufacturing and storage.
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A detergent and foaming agent derived from coconut or palm oil. In medications, it helps break down and mix oil and water-based ingredients, aids in tablet disintegration, and improves how the drug dissolves and spreads in the mouth or digestive system.
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UNII 7SEV7J4R1U
A powder made from a naturally occurring mineral. In medicines, talc works as a glidant and anti-caking agent, helping tablets and capsules flow smoothly during manufacturing and preventing clumping.
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UNII 15FIX9V2JP
Titanium dioxide is a bright white mineral powder commonly used as a colorant and opacifying agent. It makes pills and tablets white or lighter in color and helps make coatings non-transparent.
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Triethyl citrate is a clear liquid derived from citric acid. It acts as a plasticizer and solvent in tablet coatings and film formulations, helping the coating remain flexible and adhere properly to the medicine.
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UNII 059QF0KO0R
Water is a liquid solvent that dissolves and mixes ingredients together in liquid medicines, syrups, and injections. It helps distribute the active drug evenly throughout the product.
19 inactive ingredients listed in the exact product block matched to this NDC.
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ingredient classCode="IACT" elements from the exact product block matched by this NDC. Label-section narrative from DailyMed / the openFDA label index is shown separately when available.Inactive ingredient FAQ
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💲 Pricing
A drug doesn't have one price. Each row is a different public payment system, and none is what you'd pay at the counter — that depends on your insurance. The ⓘ on each row explains what it measures.
| Price system | Per each | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | Not in the retail survey — common for institutional, discontinued, or low-volume packs. | |
| Medicaid paysCMS SDUD · 12 mo | No recent Medicaid claims on file for this NDC — rare and low-volume NDCs are suppressed in the public data. | |
| Medicare drug plans payPart D · Q2 2026 | $0.2885 | $28.85 / 100 capsule |
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🔁 Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Divalproex sodium 125 mg 00904-6615-61 | Major | 100 capsules | $0.202 | AB | Availability likely | — |
| Divalproex sodium 125 mg 27241-0115-01 | Ajanta | 100 capsules | $0.202 | AB | Availability likely | — |
| Divalproex sodium 125 mg 55111-0532-01 | Dr. | 100 capsules | $0.202 | AB | Availability likely | — |
| Divalproex Sodium 125 mg 68084-0313-01 | American | 1 capsule | $0.202 | AB | Availability likely | — |
| divalproex sodium 125 mg 68382-0106-01 | Zydus | 100 capsules | $0.202 | AB | Availability likely | — |
| divalproex sodium 125 mg 70756-0447-11 | Lifestar | 100 capsules | $0.202 | AB | Availability likely | — |
| Divalproex sodium 125 mg 72603-0260-01 | NorthStar | 100 capsules | $0.202 | AB | Availability likely | — |
| Depakote Sprinkles 125 mg 00074-6114-13 | AbbVie | 100 capsules | $1.966 | AB | Availability likely | — |
| Divalproex sodium 125 mg 00615-8237-05 | NCS | 15 capsules | — | AB | FDA listed | — |
| divalproex sodium 125 mgthis 17856-0109-01 | ATLANTIC | 1 capsule | — | AB | FDA listed | — |
| Divalproex sodium 125 mg 46708-0821-10 | Alembic | 10 capsules | — | AB | FDA listed | — |
| Divalproex sodium 125 mg 55154-3552-00 | Cardinal | 10 capsules | — | AB | FDA listed | — |
| Divalproex Sodium 125 mg 55154-4759-00 | Cardinal | 1 capsule | — | AB | FDA listed | — |
| Divalproex sodium 125 mg 62332-0821-10 | Alembic | 10 capsules | — | AB | FDA listed | — |
| divalproex sodium 125 mg 65841-0639-01 | Zydus | 100 capsules | — | AB | FDA listed | — |
| divalproex sodium 125 mg 70518-1749-01 | REMEDYREPACK | 1 capsule | — | AB | FDA listed | — |
| Divalproex sodium 125 mg 70518-3457-00 | REMEDYREPACK | 1 capsule | — | AB | Discontinued | — |
| divalproex sodium 125 mg 81469-0492-01 | First | 100 capsules | — | AB | FDA listed | — |
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⏳ Availability & generic status
This product is an FDA-approved generic. Other versions of the same drug are listed under Therapeutic equivalents, least expensive first.
Where does this data come from?
📊 Medicare Part D spend CMS · PART D · 2026 (Q1)
🔬 Reported adverse events (FAERS)
Top reported reactions
Age at onset
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Serious outcomes
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📦 Packaging — all sizes for this product
| Package NDC | Description | Marketing start | Status |
|---|---|---|---|
| 17856-0109-01 You're viewing this | 100 POUCH in 1 BOX (17856-0109-1) / 1 CAPSULE, COATED PELLETS in 1 POUCH | 2021-01-28 | Active |
🧭 About this NDC listing & data coverage
What data is (and isn’t) available for this NDC — tap to expand
| NDC identity (package / product / labeler codes) | ✓ Available |
| Labeler | ✓ Available |
| Product & package description | ✓ Available |
| Marketing category & status | ✓ Available |
| Active ingredient / dosage form / route | ✓ Available |
| FDA label (SPL via DailyMed) | ✓ Available |
| Package photos | ✓ Available |
| Inactive ingredients (structured) | ✓ Available |
| NADAC pharmacy acquisition price (CMS) | — Not published for this NDC CMS publishes NADAC only for NDCs reported in its retail-pharmacy survey. |
| Orange Book / therapeutic-equivalence data | ✓ Available |
| HCPCS J-code billing crosswalk | — Not published for this NDC Most self-administered / retail products have no J-code — that is normal. |
| Medicaid utilization (CMS SDUD) | — Not published for this NDC CMS reports utilization only for NDCs with Medicaid claims above its privacy threshold. |
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📄 Full prescribing information FDA SPL
🚨 Boxed Warning ▾
WARNING: LIFE THREATENING ADVERSE REACTIONS WARNING: LIFE THREATENING ADVERSE REACTIONS See full prescribing information for complete boxed warning. Hepatotoxicity, including fatalities, usually during the first 6 months of treatment. Children under the age of two years and patients with mitochondrial disorders are at higher risk.
Monitor patients closely, and perform serum liver testing prior to therapy and at frequent intervals thereafter ( 5.1 ) Fetal Risk, particularly neural tube defects other major malformations, and decreased IQ ( 5.2 , 5.3 , 5.4 ) Pancreatitis, including fatal hemorrhagic cases ( 5.5 ) Hepatotoxicity General Population: Hepatic failure resulting in fatalities has occurred in patients receiving valproate and its derivatives. These incidents usually have occurred during the first six months of treatment. Serious or fatal hepatotoxicity may be preceded by non-specific symptoms such as malaise, weakness, lethargy, facial edema, anorexia, and vomiting.
In patients with epilepsy, a loss of seizure control may also occur. Patients should be monitored closely for appearance of these symptoms. Serum liver tests should be performed prior to therapy and at frequent intervals thereafter, especially during the first six months [see WARNINGS AND PRECAUTIONS ( 5.1 )].
Children under the age of two years are at a considerably increased risk of developing fatal hepatotoxicity, especially those on multiple anticonvulsants, those with congenital metabolic disorders, those with severe seizure disorders accompanied by mental retardation, and those with organic brain disease. When divalproex sodium delayed-release capsules (sprinkle) are used in this patient group, they should be used with extreme caution and as a sole agent. The benefits of therapy should be weighed against the risks.
The incidence of fatal hepatotoxicity decreases considerably in progressively older patient groups. Patients with Mitochondrial Disease: There is an increased risk of valproate-induced acute liver failure and resultant deaths in patients with hereditary neurometabolic syndromes caused by DNA mutations of the mitochondrial DNA Polymerase γ (POLG) gene (e.g. Alpers Huttenlocher Syndrome).
Divalproex sodium delayed-release capsules (Sprinkle) are contraindicated in patients known to have mitochondrial disorders caused by POLG mutations and children under two years of age who are clinically suspected of having a mitochondrial disorder [see CONTRAINDICATIONS ( 4 )]. In patients over two years of age who are clinically suspected of having a hereditary mitochondrial disease, divalproex sodium delayed-release capsules (sprinkle) should only be used after other anticonvulsants have failed. This older group of patients should be closely monitored during treatment with divalproex sodium delayed-release capsules (sprinkle) for the development of acute liver injury with regular clinical assessments and serum liver testing.
POLG mutation screening should be performed in accordance with current clinical practice [see WARNINGS AND PRECAUTIONS ( 5.1 )]. Fetal Risk Valproate can cause major congenital malformations, particularly neural tube defects (e.g., spina bifida). In addition, valproate can cause decreased IQ scores following in utero exposure.
Valproate should only be used to treat pregnant women with epilepsy if other medications have failed to control their symptoms or are otherwise unacceptable. Valproate should not be administered to a woman of childbearing potential unless the drug is essential to the management of her medical condition. This is especially important when valproate use is considered for a condition not usually associated with permanent injury or death (e.g., migraine).
Women should use effective contraception while using valproate [see WARNINGS AND PRECAUTIONS ( 5.2 , 5.3 , 5.4 )]. A Medication Guide describing the risks of valproate is available for patients [see PATIENT COUNSELING INFORMATION ( 17 )]. Pancreatitis Cases of life-th…
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE Divalproex sodium delayed-release capsules (sprinkle) are anti-epileptic drug indicated for: Monotherapy and adjunctive therapy of complex partial seizures and simple and complex absence seizures; adjunctive therapy in patients with multiple seizure types that include absence seizures ( 1 )
1.1Epilepsy Divalproex sodium delayed-release capsules (sprinkle) are indicated as monotherapy and adjunctive therapy in the treatment of adult patients and pediatric patients down to the age of 10 years with complex partial seizures that occur either in isolation or in association with other types of seizures. Divalproex sodium delayed-release capsules (sprinkle) are also indicated for use as sole and adjunctive therapy in the treatment of simple and complex absence seizures, and adjunctively in patients with multiple seizure types that include absence seizures.
Simple absence is defined as very brief clouding of the sensorium or loss of consciousness accompanied by certain generalized epileptic discharges without other detectable clinical signs. Complex absence is the term used when other signs are also present.
1.2Important Limitations Because of the risk to the fetus of decreased IQ, neural tube defects, and other major congenital malformations, which may occur very early in pregnancy, valproate should not be administered to a woman of childbearing potential unless the drug is essential to the management of her medical condition [ see WARNINGS AND PRECAUTIONS ( 5.2 , 5.3 , 5.4 ), USE IN SPECIFIC POPULATIONS ( 8.1 ), AND PATIENT COUNSELING INFORMATION ( 17 )].
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION Divalproex sodium delayed-release capsules (sprinkle) may be swallowed whole or the contents may be sprinkled on soft food. The drug/food mixture should be swallowed immediately (avoid chewing) ( 2.2 ) Safety of doses above 60 mg/kg/day is not established ( 2.1 ), ( 2.2 ) Complex Partial Seizures: Start at 10 to 15 mg/kg/day, increasing at 1 week intervals by 5 to 10 mg/kg/day to achieve optimal clinical response; if response is not satisfactory, check valproate plasma level; see full prescribing information for conversion to monotherapy ( 2.1 ) Absence Seizures: Start at 15 mg/kg/day, increasing at 1 week intervals by 5 to 10 mg/kg/day until seizure control or limiting side effects ( 2.1 )
2.1Epilepsy Divalproex sodium delayed-release capsules (sprinkle) are administered orally. As divalproex sodium dosage is titrated upward, concentrations of clonazepam, diazepam, ethosuximide, lamotrigine, tolbutamide, phenobarbital, carbamazepine, and/or phenytoin may be affected [see DRUG INTERACTIONS ( 7.2 ) ] . Complex Partial Seizures For adults and children 10 years of age or older.
Monotherapy (Initial Therapy) Divalproex sodium has not been systematically studied as initial therapy. Patients should initiate therapy at 10 to 15 mg/kg/day. The dosage should be increased by 5 to 10 mg/kg/week to achieve optimal clinical response.
Ordinarily, optimal clinical response is achieved at daily doses below 60 mg/kg/day. If satisfactory clinical response has not been achieved, plasma levels should be measured to determine whether or not they are in the usually accepted therapeutic range (50 to 100 mcg/mL). No recommendation regarding the safety of valproate for use at doses above 60 mg/kg/day can be made.
The probability of thrombocytopenia increases significantly at total trough valproate plasma concentrations above 110 mcg/mL in females and 135 mcg/mL in males. The benefit of improved seizure control with higher doses should be weighed against the possibility of a greater incidence of adverse reactions. Conversion to Monotherapy Patients should initiate therapy at 10 to 15 mg/kg/day.
The dosage should be increased by 5 to 10 mg/kg/week to achieve optimal clinical response. Ordinarily, optimal clinical response is achieved at daily doses below 60 mg/kg/day. If satisfactory clinical response has not been achieved, plasma levels should be measured to determine whether or not they are in the usually accepted therapeutic range (50 to 100 mcg/mL).
No recommendation regarding the safety of valproate for use at doses above 60 mg/kg/day can be made. Concomitant antiepilepsy drug (AED) dosage can ordinarily be reduced by approximately 25% every 2 weeks. This reduction may be started at initiation of divalproex sodium therapy, or delayed by 1 to 2 weeks if there is a concern that seizures are likely to occur with a reduction.
The speed and duration of withdrawal of the concomitant AED can be highly variable, and patients should be monitored closely during this period for increased seizure frequency. Adjunctive Therapy Divalproex sodium may be added to the patient's regimen at a dosage of 10 to 15 mg/kg/day. The dosage may be increased by 5 to 10 mg/kg/week to achieve optimal clinical response.
Ordinarily, optimal clinical response is achieved at daily doses below 60 mg/kg/day. If satisfactory clinical response has not been achieved, plasma levels should be measured to determine whether or not they are in the usually accepted therapeutic range (50 to 100 mcg/mL). No recommendation regarding the safety of valproate for use at doses above 60 mg/kg/day can be made.
If the total daily dose exceeds 250 mg, it should be given in divided doses. In a study of adjunctive therapy for complex partial seizures in which patients were receiving either carbamazepine or phenytoin in addition to valproate, no adjustment of carbamazepine or phenytoin dosage was needed [see CLINICAL STUDIES ( 14 ) ]. However, since valproate may interact with…
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS Capsules: 125 mg ( 3 ) Divalproex sodium delayed-release capsules, USP (sprinkle) are for oral administration. Divalproex sodium delayed-release capsules, USP (sprinkle) contain specially coated particles of divalproex sodium equivalent to 125 mg of valproic acid in a hard gelatin capsule.
⛔ Contraindications ▾
4 CONTRAINDICATIONS Hepatic disease or significant hepatic dysfunction ( 4 , 5.1 ) Known mitochondrial disorders caused by mutations in mitochondrial DNA polymerase γ (POLG) ( 4 , 5.1 ) Suspected POLG-related disorder in children under two years of age ( 4 , 5.1 ) Known hypersensitivity to the drug ( 4 , 5.12 ) Urea cycle disorders ( 4 , 5.6 ) Divalproex sodium delayed-release capsules (sprinkle) should not be administered to patients with hepatic disease or significant hepatic dysfunction [see WARNINGS AND PRECAUTIONS ( 5.1 ) ].
Divalproex sodium delayed-release capsules (sprinkle) are contraindicated in patients known to have mitochondrial disorders caused by mutations in mitochondrial DNA polymerase γ (POLG; e.g., Alpers-Huttenlocher Syndrome) and children under two years of age who are suspected of having a POLG-related disorder [see WARNINGS AND PRECAUTIONS ( 5.1 )]. Divalproex sodium delayed-release capsules (sprinkle) are contraindicated in patients with known hypersensitivity to the drug [see WARNINGS AND PRECAUTIONS ( 5.12 ) ]. Divalproex sodium delayed-release capsules (sprinkle) are contraindicated in patients with known urea cycle disorders [see WARNINGS AND PRECAUTIONS ( 5.6 ) ].
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS Hepatotoxicity; evaluate high risk populations and monitor serum liver tests ( 5.1 ) Birth defects and decreased IQ following in utero exposure; only use to treat pregnant women with epilepsy if other medications are unacceptable; should not be administered to a woman of childbearing potential unless essential ( 5.2 , 5.3 , 5.4 ) Pancreatitis; divalproex sodium delayed-release capsules (sprinkle) should ordinarily be discontinued ( 5.5 ) Suicidal behavior or ideation; Antiepileptic drugs, including divalproex sodium increase the risk of suicidal thoughts or behavior ( 5.7 ) Bleeding and other hematopoietic disorders; monitor platelet counts and coagulation tests ( 5.8 ) Hyperammonemia and hyperammonemic encephalopathy; measure ammonia level if unexplained lethargy and vomiting or changes in mental status, and also with concomitant topiramate use; consider discontinuation of valproate therapy ( 5.6 , 5.9 , 5.10 ) Hypothermia; Hypothermia has been reported during valproate therapy with or without associated hyperammonemia.
This adverse reaction can also occur in patients using concomitant topiramate ( 5.11 ) Drug Reaction with Eosinophilia and Systemic Symptoms (DRESS)/Multiorgan hypersensitivity reaction; discontinue divalproex sodium sprinkle capsules ( 5.12 ) Somnolence in the elderly can occur. Divalproex sodium delayed-release capsules (sprinkle) dosage should be increased slowly and with regular monitoring for fluid and nutritional intake ( 5.14 )
5.1Hepatotoxicity General Information on Hepatotoxicity Hepatic failure resulting in fatalities has occurred in patients receiving valproate. These incidents usually have occurred during the first six months of treatment. Serious or fatal hepatotoxicity may be preceded by non-specific symptoms such as malaise, weakness, lethargy, facial edema, anorexia, and vomiting.
In patients with epilepsy, a loss of seizure control may also occur. Patients should be monitored closely for appearance of these symptoms. Serum liver tests should be performed prior to therapy and at frequent intervals thereafter, especially during the first six months of valproate therapy.
However, healthcare providers should not rely totally on serum biochemistry since these tests may not be abnormal in all instances, but should also consider the results of careful interim medical history and physical examination. Caution should be observed when administering valproate products to patients with a prior history of hepatic disease. Patients on multiple anticonvulsants, children, those with congenital metabolic disorders, those with severe seizure disorders accompanied by mental retardation, and those with organic brain disease may be at particular risk.
See below, "Patients with Known or Suspected Mitochondrial Disease." Experience has indicated that children under the age of two years are at a considerably increased risk of developing fatal hepatotoxicity, especially those with the aforementioned conditions. When divalproex sodium is used in this patient group, it should be used with extreme caution and as a sole agent. The benefits of therapy should be weighed against the risks.
In progressively older patient groups experience in epilepsy has indicated that the incidence of fatal hepatotoxicity decreases considerably. Patients with Known or Suspected Mitochondrial Disease Divalproex sodium delayed-release capsules (sprinkle) are contraindicated in patients known to have mitochondrial disorders caused by POLG mutations and children under two years of age who are clinically suspected of having a mitochondrial disorder [see CONTRAINDICATIONS ( 4 )] . Valproate-induced acute liver failure and liver-related deaths have been reported in patients with hereditary neurometabolic syndromes caused by mutations in the gene for mitochondrial DNA polymerase γ (POLG) (e.g., Alpers-Huttenlocher Syndrome) at a higher rate than those without these syndromes.
Most of the reported cases of liver failure i…
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS Most common adverse reactions (reported >5%) are abdominal pain, alopecia, amblyopia/blurred vision, amnesia, anorexia, asthenia, ataxia, bronchitis, constipation, depression, diarrhea, diplopia, dizziness, dyspnea, dyspepsia, ecchymosis, emotional lability, fever, flu syndrome, headache, increased appetite, infection, insomnia, nausea, nervousness, nystagmus, thrombocytopenia, somnolence, vomiting, tremor, weight gain, weight loss, peripheral edema, pharyngitis, rhinitis, thinking abnormal, tinnitus ( 6.1 ) The safety and tolerability of valproate in pediatric patients were shown to be comparable to those in adults ( 8.4 ).
To report SUSPECTED ADVERSE REACTIONS, contact Zydus Pharmaceuticals (USA) Inc. at 1-877-993-8779 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. The following serious adverse reactions are described below and elsewhere in the labeling: Hepatic failure [see Warnings and Precautions ( 5.1 )] Birth defects [see Warnings and Precautions ( 5.2 )] Decreased IQ following in utero exposure [see Warnings and Precautions ( 5.3 )] Pancreatitis [see Warnings and Precautions ( 5.5 )] Hyperammonemic encephalopathy [see Warnings and Precautions ( 5.6 , 5.9 , 5.10 )] Suicidal behavior and ideation [see Warnings and Precautions ( 5.7 )] Bleeding and other hematopoietic disorders [see Warnings and Precautions ( 5.8 )] Hypothermia [see Warnings and Precautions ( 5.11 )] Drug Reaction with Eosinophilia and Systemic Symptoms (DRESS)/Multiorgan hypersensitivity reactions [see Warnings and Precautions ( 5.12 )] Somnolence in the elderly [see Warnings and Precautions ( 5.14 )] Because clinical studies are conducted under widely varying conditions, adverse reaction rates observed in the clinical studies of a drug cannot be directly compared to rates in the clinical studies of another drug and may not reflect the rates observed in practice.
6.1Epilepsy Based on a placebo-controlled trial of adjunctive therapy for treatment of complex partial seizures, divalproex sodium delayed-release tablets was generally well tolerated with most adverse reactions rated as mild to moderate in severity. Intolerance was the primary reason for discontinuation in the divalproex sodium delayed-release tablets-treated patients (6%), compared to 1% of placebo-treated patients. In a long term (12 month) safety study in pediatric patients (n=169) between the ages of 3 and 10 years old, no clinically meaningful differences in the adverse event profile were observed when compared to adults.
Table 2 lists treatment-emergent adverse reactions which were reported by ≥ 5% of divalproex sodium delayed-release tablets-treated patients and for which the incidence was greater than in the placebo group, in the placebo-controlled trial of adjunctive therapy for treatment of complex partial seizures. Since patients were also treated with other antiepilepsy drugs, it is not possible, in most cases, to determine whether the following adverse reactions can be ascribed to divalproex sodium delayed-release tablets alone, or the combination of divalproex sodium delayed-release tablets and other antiepilepsy drugs.
Table 2 Adverse Reactions Reported by > 5% of Patients Treated with Valproate During Placebo-Controlled Trial of Adjunctive Therapy for Complex Partial Seizures Body System/Event Divalproex Sodium Delayed-release Tablets (%) Placebo (%) (n = 77) (n = 70) Body as a Whole Headache 31 21 Asthenia 27 7 Fever 6 4 Gastrointestinal System Nausea 48 14 Vomiting 27 7 Abdominal Pain 23 6 Diarrhea 13 6 Anorexia 12 0 Dyspepsia 8 4 Constipation 5 1 Nervous System Somnolence 27 11 Tremor 25 6 Dizziness 25 13 Diplopia 16 9 Amblyopia/Blurred Vision 12 9 Ataxia 8 1 Nystagmus 8 1 Emotional Lability 6 4 Thinking Abnormal 6 0 Amnesia 5 1 Respiratory System Flu Syndrome 12 9 Infection 12 6 Bronchitis 5 1 Rhinitis 5 4 Other Alopecia 6 1 Weight Loss 6 0 Table 3 lists treatment-emergent adverse reactions which were reported by ≥ 5% of patients in the high dose valp…
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Hepatic enzyme-inducing drugs (e.g., phenytoin, carbamazepine, phenobarbital, primidone, rifampin) can increase valproate clearance, while enzyme inhibitors (e.g., felbamate) can decrease valproate clearance. Therefore increased monitoring of valproate and concomitant drug concentrations and dosage adjustment are indicated whenever enzyme-inducing or inhibiting drugs are introduced or withdrawn ( 7.1 ) Aspirin, carbapenem antibiotics, estrogen-containing hormonal contraceptives: Monitoring of valproate concentrations is recommended ( 7.1 ) Coadministration of valproate can affect the pharmacokinetics of other drugs (e.g., diazepam, ethosuximide, lamotrigine, phenytoin) by inhibiting their metabolism or protein binding displacement ( 7.2 ) Patients stabilized on rufinamide should begin valproate therapy at a low dose, and titrate to clinically effective dose ( 7.2 ) Dosage adjustment of amitriptyline/nortriptyline, propofol, warfarin, and zidovudine may be necessary if used concomitantly with divalproex sodium delayed-release capsules (sprinkle) ( 7.2 ) Topiramate: Hyperammonemia and encephalopathy ( 5.10 , 7.3 )
7.1Effects of Coadministered Drugs onValproate Clearance Drugs that affect the level of expression of hepatic enzymes, particularly those that elevate levels of glucuronosyltransferases (such as ritonavir), may increase the clearance of valproate. For example, phenytoin, carbamazepine, and phenobarbital (or primidone) can double the clearance of valproate. Thus, patients on monotherapy will generally have longer half-lives and higher concentrations than patients receiving polytherapy with antiepilepsy drugs.
In contrast, drugs that are inhibitors of cytochrome P450 isozymes, e.g., antidepressants, may be expected to have little effect on valproate clearance because cytochrome P450 microsomal mediated oxidation is a relatively minor secondary metabolic pathway compared to glucuronidation and beta-oxidation. Because of these changes in valproate clearance, monitoring of valproate and concomitant drug concentrations should be increased whenever enzyme inducing drugs are introduced or withdrawn. The following list provides information about the potential for an influence of several commonly prescribed medications on valproate pharmacokinetics.
The list is not exhaustive nor could it be, since new interactions are continuously being reported. Drugs for which a potentially important interaction has been observed Aspirin A study involving the coadministration of aspirin at antipyretic doses (11 to 16 mg/kg) with valproate to pediatric patients (n=6) revealed a decrease in protein binding and an inhibition of metabolism of valproate. Valproate free fraction was increased 4-fold in the presence of aspirin compared to valproate alone.
The β-oxidation pathway consisting of 2-E-valproic acid, 3-OH-valproic acid, and 3-keto valproic acid was decreased from 25% of total metabolites excreted on valproate alone to 8.3% in the presence of aspirin. Caution should be observed if valproate and aspirin are to be coadministered. Carbapenem Antibiotics A clinically significant reduction in serum valproic acid concentration has been reported in patients receiving carbapenem antibiotics (for example, ertapenem, imipenem, meropenem; this is not a complete list) and may result in loss of seizure control.
The mechanism of this interaction is not well understood. Serum valproic acid concentrations should be monitored frequently after initiating carbapenem therapy. Alternative antibacterial or anticonvulsant therapy should be considered if serum valproic acid concentrations drop significantly or seizure control deteriorates [see WARNINGS AND PRECAUTIONS ( 5.13 ) ].
Estrogen-Containing Hormonal Contraceptives Estrogen-containing hormonal contraceptives may increase the clearance of valproate, which may result in decreased concentration of valproate and potentially increased seizure frequency. Prescribers should monitor serum val…
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS Pregnancy: Divalproex sodium delayed-release capsules (sprinkle) can cause congenital malformations including neural tube defects and decreased IQ ( 5.2 , 5.3 , 8.1 ) Pediatric: Children under the age of two years are at considerably higher risk of fatal hepatotoxicity ( 5.1 , 8.4 ) Geriatric: Reduce starting dose; increase dosage more slowly; monitor fluid and nutritional intake, and somnolence ( 5.14 , 8.5 )
8.1Pregnancy Pregnancy Category D for epilepsy [see WARNINGS AND PRECAUTIONS ( 5.2 , 5.3 )]. Pregnancy Registry To collect information on the effects of in utero exposure to divalproex sodium, physicians should encourage pregnant patients taking divalproex sodium to enroll in the North American Antiepileptic Drug (NAAED) Pregnancy Registry. This can be done by calling toll free 1-888-233-2334, and must be done by the patients themselves.
Information on the registry can be found at the website, http://www.aedpregnancyregistry.org/. Fetal Risk Summary All pregnancies have a background risk of birth defects (about 3%), pregnancy loss (about 15%), or other adverse outcomes regardless of drug exposure. Maternal valproate use during pregnancy for any indication increases the risk of congenital malformations, particularly neural tube defects, but also malformations involving other body systems (e.g., craniofacial defects, cardiovascular malformations, hypospadias, limb malformations).
The risk of major structural abnormalities is greatest during the first trimester; however, other serious developmental effects can occur with valproate use throughout pregnancy. The rate of congenital malformations among babies born to epileptic mothers who used valproate during pregnancy has been shown to be about four times higher than the rate among babies born to epileptic mothers who used other anti-seizure monotherapies [see WARNINGS AND PRECAUTIONS ( 5.3 ) ]. Several published epidemiological studies have indicated that children exposed to valproate in utero have lower IQ scores than children exposed to either another antiepileptic drug in utero or to no antiepileptic drugs in utero [see WARNINGS AND PRECAUTIONS ( 5.3 ) ].
An observational study has suggested that exposure to valproate products during pregnancy may increase the risk of autism spectrum disorders. In this study, children born to mothers who had used valproate products during pregnancy had 2.9 times the risk (95% confidence interval [CI]: 1.7 to 4.9) of developing autism spectrum disorders compared to children born to mothers not exposed to valproate products during pregnancy. The absolute risks for autism spectrum disorders were 4.4% (95% CI: 2.6% to 7.5%) in valproate-exposed children and 1.5% (95% CI: 1.5% to 1.6%) in children not exposed to valproate products.
Because the study was observational in nature, conclusions regarding a causal association between in utero valproate exposure and an increased risk of autism spectrum disorder cannot be considered definitive. In animal studies, offspring with prenatal exposure to valproate had structural malformations similar to those seen in humans and demonstrated neuro behavioral deficits. Clinical Considerations Neural tube defects are the congenital malformation most strongly associated with maternal valproate use.
The risk of spina bifida following in utero valproate exposure is generally estimated as 1 to 2%, compared to an estimated general population risk for spina bifida of about 0.06 to 0.07% (6 to 7 in 10,000 births). Valproate can cause decreased IQ scores in children whose mothers were treated with valproate during pregnancy. Because of the risks of decreased IQ, neural tube defects, and other fetal adverse events, which may occur very early in pregnancy: Valproate should not be administered to a woman of childbearing potential unless the drug is essential to the management of her medical condition.
This is especially important when valproate use is considered for a condition not usually…
🤰 Pregnancy ▾
8.1Pregnancy Pregnancy Category D for epilepsy [see WARNINGS AND PRECAUTIONS ( 5.2 , 5.3 )]. Pregnancy Registry To collect information on the effects of in utero exposure to divalproex sodium, physicians should encourage pregnant patients taking divalproex sodium to enroll in the North American Antiepileptic Drug (NAAED) Pregnancy Registry. This can be done by calling toll free 1-888-233-2334, and must be done by the patients themselves.
Information on the registry can be found at the website, http://www.aedpregnancyregistry.org/. Fetal Risk Summary All pregnancies have a background risk of birth defects (about 3%), pregnancy loss (about 15%), or other adverse outcomes regardless of drug exposure. Maternal valproate use during pregnancy for any indication increases the risk of congenital malformations, particularly neural tube defects, but also malformations involving other body systems (e.g., craniofacial defects, cardiovascular malformations, hypospadias, limb malformations).
The risk of major structural abnormalities is greatest during the first trimester; however, other serious developmental effects can occur with valproate use throughout pregnancy. The rate of congenital malformations among babies born to epileptic mothers who used valproate during pregnancy has been shown to be about four times higher than the rate among babies born to epileptic mothers who used other anti-seizure monotherapies [see WARNINGS AND PRECAUTIONS ( 5.3 ) ]. Several published epidemiological studies have indicated that children exposed to valproate in utero have lower IQ scores than children exposed to either another antiepileptic drug in utero or to no antiepileptic drugs in utero [see WARNINGS AND PRECAUTIONS ( 5.3 ) ].
An observational study has suggested that exposure to valproate products during pregnancy may increase the risk of autism spectrum disorders. In this study, children born to mothers who had used valproate products during pregnancy had 2.9 times the risk (95% confidence interval [CI]: 1.7 to 4.9) of developing autism spectrum disorders compared to children born to mothers not exposed to valproate products during pregnancy. The absolute risks for autism spectrum disorders were 4.4% (95% CI: 2.6% to 7.5%) in valproate-exposed children and 1.5% (95% CI: 1.5% to 1.6%) in children not exposed to valproate products.
Because the study was observational in nature, conclusions regarding a causal association between in utero valproate exposure and an increased risk of autism spectrum disorder cannot be considered definitive. In animal studies, offspring with prenatal exposure to valproate had structural malformations similar to those seen in humans and demonstrated neuro behavioral deficits. Clinical Considerations Neural tube defects are the congenital malformation most strongly associated with maternal valproate use.
The risk of spina bifida following in utero valproate exposure is generally estimated as 1 to 2%, compared to an estimated general population risk for spina bifida of about 0.06 to 0.07% (6 to 7 in 10,000 births). Valproate can cause decreased IQ scores in children whose mothers were treated with valproate during pregnancy. Because of the risks of decreased IQ, neural tube defects, and other fetal adverse events, which may occur very early in pregnancy: Valproate should not be administered to a woman of childbearing potential unless the drug is essential to the management of her medical condition.
This is especially important when valproate use is considered for a condition not usually associated with permanent injury or death (e.g., migraine). Divalproex sodium delayed-release capsules (sprinkle) should not be used to treat women with epilepsy who are pregnant or who plan to become pregnant unless other treatments have failed to provide adequate symptom control or are otherwise unacceptable. In such women, the benefits of treatment with valproate during pregnancy may still outweigh the risks.
When treating a pregnant wom…
🧒 Pediatric Use ▾
8.4Pediatric Use Experience has indicated that pediatric patients under the age of two years are at a considerably increased risk of developing fatal hepatotoxicity, especially those with the aforementioned conditions [see BOXED WARNING , WARNING AND PRECAUTIONS ( 5.1 ) ]. When divalproex sodium is used in this patient group, it should be used with extreme caution and as a sole agent. The benefits of therapy should be weighed against the risks.
Above the age of 2 years, experience in epilepsy has indicated that the incidence of fatal hepatotoxicity decreases considerably in progressively older patient groups. Younger children, especially those receiving enzyme inducing drugs, will require larger maintenance doses to attain targeted total and unbound valproate concentrations. Pediatric patients (i.e., between 3 months and 10 years) have 50% higher clearances expressed on weight (i.e., mL/min/kg) than do adults.
Over the age of 10 years, children have pharmacokinetic parameters that approximate those of adults. The variability in free fraction limits the clinical usefulness of monitoring total serum valproic acid concentrations. Interpretation of valproic acid concentrations in children should include consideration of factors that affect hepatic metabolism and protein binding.
Pediatric Clinical Trials Divalproex sodium was studied in seven pediatric clinical trials. Two of the pediatric studies were doubleblinded placebo-controlled trials to evaluate the efficacy of divalproex sodium extended-release tablets for the indications of mania (150 patients aged 10 to 17 years, 76 of whom were on divalproex sodium extended-release tablets) and migraine (304 patients aged 12 to 17 years, 231 of whom were on divalproex sodium extended-release tablets). Efficacy was not established for either the treatment of migraine or the treatment of mania.
The most common drug-related adverse reactions (reported > 5% and twice the rate of placebo) reported in the controlled pediatric mania study were nausea, upper abdominal pain, somnolence, increased ammonia, gastritis and rash. The remaining five trials were long term safety studies. Two six month pediatric studies were conducted to evaluate the long-term safety of divalproex sodium extended-release tablets for the indication of mania (292 patients aged 10 to 17 years).
Two twelve month pediatric studies were conducted to evaluate the long-term safety of divalproex sodium extended-release tablets for the indication of migraine (353 patients aged 12 to 17 years). One twelve month study was conducted to evaluate the safety of divalproex sodium delayed-release capsules (sprinkle) in the indication of partial seizures (169 patients aged 3 to 10 years). In these seven clinical trials, the safety and tolerability of divalproex sodium in pediatric patients were shown to be comparable to those in adults [see ADVERSE REACTIONS ( 6 ) ].
Juvenile Animal Toxicology In studies of valproate in immature animals, toxic effects not observed in adult animals included retinal dysplasia in rats treated during the neonatal period (from postnatal day 4) and nephrotoxicity in rats treated during the neonatal and juvenile (from postnatal day 14) periods. The no-effect dose for these findings was less than the maximum recommended human dose on a mg/m 2 basis.
🧓 Geriatric Use ▾
8.5Geriatric Use No patients above the age of 65 years were enrolled in doubleblind prospective clinical trials of mania associated with bipolar illness. In a case review study of 583 patients, 72 patients (12%) were greater than 65 years of age. A higher percentage of patients above 65 years of age reported accidental injury, infection, pain, somnolence, and tremor.
Discontinuation of valproate was occasionally associated with the latter two events. It is not clear whether these events indicate additional risk or whether they result from preexisting medical illness and concomitant medication use among these patients. A study of elderly patients with dementia revealed drug related somnolence and discontinuation for somnolence [see WARNINGS AND PRECAUTIONS ( 5.14 ) ].
The starting dose should be reduced in these patients, and dosage reductions or discontinuation should be considered in patients with excessive somnolence [see DOSAGE AND ADMINISTRATION ( 2.2 ) ]. The capacity of elderly patients (age range: 68 to 89 years) to eliminate valproate has been shown to be reduced compared to younger adults (age range: 22 to 26 years) [see CLINICAL PHARMACOLOGY ( 12.3 ) ].
🆘 Overdosage ▾
10 OVERDOSAGE Overdosage with valproate may result in somnolence, heart block, deep coma and hypernatremia. Fatalities have been reported; however patients have recovered from valproate levels as high as 2120 mcg/mL. In overdose situations, the fraction of drug not bound to protein is high and hemodialysis or tandem hemodialysis plus hemoperfusion may result in significant removal of drug.
The benefit of gastric lavage or emesis will vary with the time since ingestion. General supportive measures should be applied with particular attention to the maintenance of adequate urinary output. Naloxone has been reported to reverse the CNS depressant effects of valproate over dosage.
Because naloxone could theoretically also reverse the antiepileptic effects of valproate, it should be used with caution in patients with epilepsy.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY
12.1Mechanism of Action Divalproex sodium dissociates to the valproate ion in the gastrointestinal tract. The mechanisms by which valproate exerts its therapeutic effects have not been established. It has been suggested that its activity in epilepsy is related to increased brain concentrations of gamma-aminobutyric acid (GABA).
12.2Pharmacodynamics The relationship between plasma concentration and clinical response is not well documented. One contributing factor is the nonlinear, concentration dependent protein binding of valproate which affects the clearance of the drug. Thus, monitoring of total serum valproate may not provide a reliable index of the bioactive valproate species.
For example, because the plasma protein binding of valproate is concentration dependent, the free fraction increases from approximately 10% at 40 mcg/mL to 18.5% at 130 mcg/mL. Higher than expected free fractions occur in the elderly, in hyperlipidemic patients, and in patients with hepatic and renal diseases. Epilepsy The therapeutic range in epilepsy is commonly considered to be 50 to 100 mcg/mL of total valproate, although some patients may be controlled with lower or higher plasma concentrations.
12.3Pharmacokinetics Absorption/Bioavailability Although the rate of valproate ion absorption may vary with the formulation administered (liquid, solid, or sprinkle), conditions of use (e.g., fasting or postprandial) and the method of administration (e.g., whether the contents of the capsule are sprinkled on food or the capsule is taken intact), these differences should be of minor clinical importance under the steady state conditions achieved in chronic use in the treatment of epilepsy. However, it is possible that differences among the various valproate products in T max and C max could be important upon initiation of treatment.
For example, in single dose studies, the effect of feeding had a greater influence on the rate of absorption of the tablet (increase in T max from 4 to 8 hours) than on the absorption of the sprinkle capsules (increase in T max from 3.3 to 4.8 hours). While the absorption rate from the G.I. tract and fluctuation in valproate plasma concentrations vary with dosing regimen and formulation, the efficacy of valproate as an anticonvulsant in chronic use is unlikely to be affected. Experience employing dosing regimens from once-a-day to four-times-a-day, as well as studies in primate epilepsy models involving constant rate infusion, indicate that total daily systemic bioavailability (extent of absorption) is the primary determinant of seizure control and that differences in the ratios of plasma peak to trough concentrations between valproate formulations are inconsequential from a practical clinical standpoint.
Coadministration of oral valproate products with food should cause no clinical problems in the management of patients with epilepsy [see Dosage and Administration ( 2.1 )] . Distribution Protein Binding The plasma protein binding of valproate is concentration dependent and the free fraction increases from approximately 10% at 40 mcg/mL to 18.5% at 130 mcg/mL. Protein binding of valproate is reduced in the elderly, in patients with chronic hepatic diseases, in patients with renal impairment, and in the presence of other drugs (e.g., aspirin).
Conversely, valproate may displace certain protein-bound drugs (e.g., phenytoin, carbamazepine, warfarin, and tolbutamide) [see DRUG INTERACTIONS ( 7 ) for more detailed information on the pharmacokinetic interactions of valproate with other drugs]. CNS Distribution Valproate concentrations in cerebrospinal fluid (CSF) approximate unbound concentrations in plasma (about 10% of total concentration). Metabolism Valproate is metabolized almost entirely by the liver.
In adult patients on monotherapy, 30 to 50% of an administered dose appears in urine as a glucuronide conjugate. Mitochondrial β-oxidation is the other major metabolic pathway, typically accounting for…
🧬 Mechanism of Action ▾
12.1Mechanism of Action Divalproex sodium dissociates to the valproate ion in the gastrointestinal tract. The mechanisms by which valproate exerts its therapeutic effects have not been established. It has been suggested that its activity in epilepsy is related to increased brain concentrations of gamma-aminobutyric acid (GABA).
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING NDC 17856-0109-01 in a box of 100 Capsules Divalproex sodium delayed-release capsules, USP (sprinkle) RX Only 100 capsules Storage : Store at 20° to 25°C (68° to 77°F) [See USP Controlled Room Temperature]. Dispense in a tight, light-resistant container.
📋 Description ▾
11 DESCRIPTION Divalproex sodium is a stable co-ordination compound comprised of sodium valproate and valproic acid in a 1:1 molar relationship. Chemically it is designated as sodium hydrogen bis(2-propylpentanoate). Divalproex sodium has the following structure: Divalproex sodium, USP occurs as a white powder with a characteristic odor.
Each divalproex sodium delayed-release capsules, USP (sprinkle) intended for oral administration contains divalproex sodium equivalent to 125 mg of valproic acid. In addition, each capsule contains the following inactive ingredients: colloidal silicon dioxide, FD &C blue # 1, gelatin, hypromellose, methacrylic acid copolymer dispersion, microcrystalline cellulose spheres, sodium lauryl sulfate, talc, titanium dioxide and triethyl citrate. Each capsule is printed with black pharmaceutical ink which contains: ammonia solution, butyl alcohol, dehydrated alcohol, ferrosoferric oxide, isopropyl alcohol, propylene glycol, potassium hydroxide, purified water and shellac.
The Product meets USP Dissolution Test 4. Chemical Structure
💬 Information for Patients ▾
17 PATIENT COUNSELING INFORMATION Advise the patient to read the FDA-approved patient labeling (Medication Guide). Hepatotoxicity Warn patients and guardians that nausea, vomiting, abdominal pain, anorexia, diarrhea, asthenia, and/or jaundice can be symptoms of hepatotoxicity and, therefore, require further medical evaluation promptly [see WARNINGS AND PRECAUTIONS ( 5.1 ) ]. Pancreatitis Warn patients and guardians that abdominal pain, nausea, vomiting, and/or anorexia can be symptoms of pancreatitis and, therefore, require further medical evaluation promptly [see WARNINGS AND PRECAUTIONS ( 5.
5 ) ]. Birth Defects and Decreased IQ Inform pregnant women and women of childbearing potential that use of valproate during pregnancy increases the risk of birth defects and decreased IQ in children who were exposed. Advise women to use effective contraception while using valproate.
When appropriate, counsel these patients about alternative therapeutic options. This is particularly important when valproate use is considered for a condition not usually associated with permanent injury or death. Advise patients to read the Medication Guide, which appears as the last section of the labeling [ see WARNINGS AND PRECAUTIONS ( 5.2 , 5.3 , 5.4 ) AND USE IN SPECIFIC POPULATIONS ( 8.1 )] .
Advise women of childbearing potential to discuss pregnancy planning with their doctor and to contact their doctor immediately if they think they are pregnant. Encourage patients to enroll in the NAAED Pregnancy Registry if they become pregnant. This registry is collecting information about the safety of antiepileptic drugs during pregnancy.
To enroll, patients can call the toll free number 1-888-233-2334 [see USE IN SPECIFIC POPULATIONS ( 8.1 ) ]. Suicidal Thinking and Behavior Counsel patients, their caregivers, and families that AEDs, including divalproex sodium, may increase the risk of suicidal thoughts and behavior and to be alert for the emergence or worsening of symptoms of depression, any unusual changes in mood or behavior, or the emergence of suicidal thoughts, behavior, or thoughts about self-harm. Instruct patients, caregivers, and families to report behaviors of concern immediately to the healthcare providers [see WARNINGS AND PRECAUTIONS ( 5.7 ) ].
Hyperammonemia Inform patients of the signs and symptoms associated with hyperammonemic encephalopathy and to notify the prescriber if any of these symptoms occur [see WARNINGS AND PRECAUTIONS ( 5.9 , 5.10 ) ]. CNS Depression Since valproate products may produce CNS depression, especially when combined with another CNS depressant (e.g., alcohol), advise patients not to engage in hazardous activities, such as driving an automobile or operating dangerous machinery, until it is known that they do not become drowsy from the drug.
Multiorgan Hypersensitivity Reactions Instruct patients that a fever associated with other organ system involvement (rash, lymphadenopathy, etc.) may be drug-related and should be reported to the physician immediately [see WARNINGS AND PRECAUTIONS ( 5.12 ) ]. Medication Residue in the Stool Instruct patients to notify their healthcare provider if they notice a medication residue in the stool [see WARNINGS AND PRECAUTIONS ( 5.18 )]. Administration Guide Divalproex sodium delayed-release capsules (sprinkle) Divalproex sodium delayed-release capsules (sprinkle) may be swallowed whole or the capsule contents may be sprinkled onto soft food such as applesauce or pudding.
Serving suggestions Divalproex sodium delayed-release capsules (sprinkle) provide the medicine that your healthcare provider has prescribed. The sprinkles are flavorless. Soft foods such as applesauce or pudding are best to use for mixing and taking divalproex sodium delayed-release capsules (sprinkle).
TO ADMINISTER WITH FOOD: Make sure this medicine is taken exactly as your healthcare provider prescribed it. If you have any questions, please contact your healthcare provider or pharmacist. Keep all of your healthcare…
💬 Medication Guide ▾
MEDICATION GUIDE Divalproex Sodium (dye val PRO ex sew dee uhm) Delayed-release Capsules , USP (Sprinkle) Read this Medication Guide before you start taking divalproex sodium delayed-release capsules (sprinkle) and each time you get a refill. There may be new information. This information does not take the place of talking to your healthcare provider about your medical condition or treatment.
What is the most important information I should know about divalproex sodium delayed-release capsules (sprinkle)? Do not stop taking divalproex sodium delayed-release capsules (sprinkle) without first talking to your healthcare provider. Stopping divalproex sodium delayed-release capsules (sprinkle) suddenly can cause serious problems.
Divalproex sodium delayed-release capsules (sprinkle) can cause serious side effects, including: Serious liver damage that can cause death, especially in children younger than 2 years old. The risk of getting this serious liver damage is more likely to happen within the first 6 months of treatment. Call your healthcare provider right away if you get any of the following symptoms: nausea or vomiting that does not go away loss of appetite pain on the right side of your stomach (abdomen) dark urine swelling of your face yellowing of your skin or the whites of your eyes In some cases, liver damage may continue despite stopping the drug.
2 Divalproex sodium delayed-release capsules (sprinkle) may harm your unborn baby. If you take divalproex sodium delayed-release capsules (sprinkle) during pregnancy for any medical condition, your baby is at risk for serious birth defects that affect the brain and spinal cord and are called spina bifida or neural tube defects. These defects occur in 1 to 2 out of every 100 babies born to mothers who use this medicine during pregnancy.
These defects can begin in the first month, even before you know you are pregnant. Other birth defects that affect the structures of the heart, head, arms, legs, and the opening where the urine comes out (urethra) on the bottom of the penis can also happen. Birth defects may occur even in children born to women who are not taking any medicines and do not have other risk factors.
Taking folic acid supplements before getting pregnant and during early pregnancy can lower the chance of having a baby with a neural tube defect. If you take divalproex sodium delayed-release capsules (sprinkle) during pregnancy for any medical condition, your child is at risk for having a lower IQ. There may be other medicines to treat your condition that have a lower chance of causing birth defects and decreased IQ in your child.
Women who are pregnant must not take divalproex sodium delayed-release capsules (sprinkle) to prevent migraine headaches. All women of childbearing age should talk to their healthcare provider about using other possible treatments instead of divalproex sodium delayed-release capsules (sprinkle). If the decision is made to use divalproex sodium delayed-release capsules (sprinkle), you should use effective birth control (contraception).
Tell your healthcare provider right away if you become pregnant while taking divalproex sodium delayed-release capsules (sprinkle). You and your healthcare provider should decide if you will continue to take divalproex sodium delayed-release capsules (sprinkle) while you are pregnant. Pregnancy Registry : If you become pregnant while taking divalproex sodium delayed-release capsules (sprinkle), talk to your healthcare provider about registering with the North American Antiepileptic Drug Pregnancy Registry.
You can enroll in this registry by calling 1-888-233-2334. The purpose of this registry is to collect information about the safety of antiepileptic drugs during pregnancy. 3 Inflammation of your pancreas that can cause death.
Call your healthcare provider right away if you have any of these symptoms: severe stomach pain that you may also feel in your back nausea or vomiting that does not go away 4 Like other anti…