(dolutegravir · DailyMed)
FDA/SD.255-111995
Abacavir Sulfate/Dolutegravir Sodium/Lamivudine
What it does
Abacavir is a medicine used to help manage HIV infection.
Commonly used for: HIV infection, Human Immunodeficiency Virus (HIV)
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.
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Sourcing - Kenya onlyRegistration & product details
Source: Food and Drugs Authority · fetched 2026-04-18 08:37:11 · updated 2026-09-18 04:00:07
Drug Interactions
22Pharmacodynamic Warnings
Lamivudine appears in TABLE 12: Drugs that cause peripheral neuropathy
Moderate (5)
Dolutegravir - increases exposure
Atazanavir (alone or boosted with ritonavir) slightly increases the exposure to dolutegravir. Adjust dose-consult product literature.
Dopamine Receptor Agonists - increases exposure
Dolutegravir is predicted to increase the exposure to dopamine receptor agonists (pramipexole). Adjust dose.
Metformin - increases exposure
Dolutegravir increases the exposure to metformin. Adjust dose.
Pramipexole - increases exposure
Dolutegravir is predicted to increase the exposure to dopamine receptor agonists (pramipexole). Adjust dose.
Riociguat - increases exposure
Abacavir might increase the exposure to riociguat. Adjust dose and monitor blood pressure.
Unknown (17)
Dolutegravir - decreases exposure
Antiepileptics (fosphenytoin, phenobarbital, phenytoin, primidone) are predicted to decrease the exposure to dolutegravir. Adjust dolutegravir dose, p. 705.
Dolutegravir - decreases exposure
Carbamazepine decreases the exposure to dolutegravir. Adjust dolutegravir dose, p. 705.
Dolutegravir - decreases exposure
Oxcarbazepine is predicted to decrease the exposure to dolutegravir. Adjust dolutegravir dose, p. 705.
Dolutegravir - decreases exposure
Dabrafenib is predicted to decrease the exposure to dolutegravir.
Dolutegravir - increases exposure
Encorafenibispredictedtoincreasetheexposureto dolutegravir.oTheoretical
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About abacavir
Abacavir is a medicine used to help manage HIV infection.
What it treats
- HIV infection
- Human Immunodeficiency Virus (HIV)
How it works
Abacavir works by preventing the virus from multiplying in the body, helping to control the infection.
Who it's for
This medication is for adults and children who are living with HIV.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About dolutegravir
Dolutegravir is an antiviral medication used to treat HIV (human immunodeficiency virus).
What it treats
- HIV infection
- human immunodeficiency virus (HIV)
How it works
It helps to control HIV by preventing the virus from multiplying in the body.
Who it's for
This medication is for adults and children who are infected with HIV.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About lamivudine
Lamivudine is an antiviral medication used to treat certain viral infections.
What it treats
- HIV infection
- Chronic hepatitis B
How it works
It works by stopping the virus from multiplying in the body.
Who it's for
This medication is for adults and children who are infected with HIV or hepatitis B.
Cautions
- • Be careful if you are taking other medications that can cause nerve problems.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Dolutegravir
BNF-referencedDolutegravir is an antiretroviral medication classified as an HIV integrase inhibitor. It is primarily used in the management of HIV infection, where it demonstrates potent antiviral activity by inhibiting the HIV integrase enzyme, crucial for viral replication. This drug has shown effectiveness both in treatment-naive patients and those with HIV-1 strains that exhibit resistance to other integrase inhibitors.
Indications
- HIV infection without resistance to other inhibitors of HIV integrase
- HIV infection in patients with resistance to other inhibitors of HIV integrase (specialist use only)
Dosage
Children: Refer to BNF for Children for appropriate dosing.
Adults: 50 mg once daily.
Mechanism of action
Dolutegravir inhibits the HIV integrase enzyme by binding to its active site, blocking the strand transfer step of retroviral DNA integration into the host cell genome. This step is essential for the replication of HIV, and by preventing this integration, dolutegravir effectively inhibits viral activity and replication.
Pharmacodynamics
Clinical trials have demonstrated that dolutegravir leads to a rapid and dose-dependent reduction of HIV-1 RNA in infected subjects. The antiviral response can be sustained for several days following the last dose, indicating its long half-life and strong binding affinity. This characteristic contributes to a high barrier to the development of resistance, making dolutegravir a potent option in combination therapy regimens.
Pharmacokinetics
Dolutegravir exhibits favorable pharmacokinetics, with a mean elimination half-life of approximately 14 hours. It is well absorbed following oral administration, with food enhancing its bioavailability. The drug is metabolized primarily by UGT1A1 and UGT1A9 enzymatic pathways, and it is excreted mainly via feces. Drug interactions may occur, particularly with medications that induce or inhibit UGT enzymes.
Contra-indications
- Hypersensitivity to dolutegravir or any of its excipients
Adverse effects
- Nausea
- Vomiting
- Drowsiness
- Increased weight
- Skin reactions
- Sleep disorders
- Hepatotoxicity
- Pancreatitis
- Osteonecrosis
Interactions
- Moderate increase in exposure with dopaminergic receptor agonists
- Moderate increase in exposure with pramipexole
- Moderate increase in exposure with metformin
- Moderate increase in exposure with atazanavir
- Unknown decrease in exposure with carbamazepine
- Unknown decrease in exposure with oxcarbazepine
- Unknown decrease in exposure with phenytoin
- Unknown decrease in exposure with primidone
- Unknown increase in exposure with encorafenib
- Unknown increase in concentration with fampridine
Precautions
- Use with caution in patients with HIV-1 subtype A6/A1, or BMI of 30 kg/m2 or more
- Caution in severe hepatic impairment
- Patients or carers should be advised on how to recognize signs of hypersensitivity
Pregnancy
Avoid unless potential benefit outweighs risk, no information available.
Breast-feeding
Avoid; may be present in milk for up to 12 months or longer after last prolonged-release injection.
Storage
Store in a cool, dry place, away from direct light.
Formulations
- Tablets: 50 mg and 30 mg
- Powder and solvent for solution for injection
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: Lamivudine
BNF-referencedLamivudine is a synthetic nucleoside analogue primarily used in the treatment of Human Immunodeficiency Virus (HIV) infections and chronic hepatitis B virus (HBV) infections. It is marketed under the brand name Epivir and functions as a nucleoside reverse transcriptase inhibitor (NRTI). By interfering with viral DNA synthesis, lamivudine plays a critical role in antiviral therapy, particularly in combination therapies for HIV.
Indications
- HIV infection in combination with other antiretroviral drugs
- Chronic hepatitis B infection with evidence of viral replication and active liver inflammation or fibrosis
Dosage
Children: For children aged 3 months to
Adults: For HIV infection, the adult dose is 150 mg every 12 hours or alternatively 300 mg once daily. For chronic hepatitis B, the recommended dose is 300 mg once daily.
Mechanism of action
Lamivudine is phosphorylated intracellularly to its active form, lamivudine triphosphate (L-TP). This active metabolite is incorporated into viral DNA by HIV reverse transcriptase and HBV polymerase, leading to DNA chain termination. Lamivudine competes with deoxycytidine triphosphate for binding to reverse transcriptase, and its incorporation into DNA results in the disruption of DNA synthesis due to the absence of a 3'-OH group necessary for chain elongation.
Pharmacodynamics
As a nucleoside reverse transcriptase inhibitor (NRTI), lamivudine disrupts the viral DNA synthesis pathway, particularly for HIV-1 and HBV. The active metabolite formed competes with natural nucleotides and incorporates into the growing viral DNA chain, ultimately leading to chain termination. This action inhibits the replication of the virus, thereby reducing viral load in infected individuals.
Pharmacokinetics
Lamivudine is absorbed via passive diffusion and is rapidly phosphorylated to its active triphosphate form within cells. Its bioavailability is approximately 80-85% when taken orally. The drug has a half-life of about 5-7 hours in plasma and is primarily eliminated via the kidneys through glomerular filtration and active tubular secretion. Renal impairment necessitates dose adjustments, particularly in patients with creatinine clearance below 50 mL/min.
Contra-indications
- Severe hypersensitivity to lamivudine or any of its excipients
- Patients with decompensated liver disease when used for chronic hepatitis B
Adverse effects
- Peripheral neuropathy
- Headache
- Nausea
- Diarrhea
- Fatigue
- Insomnia
- Malaise
- Cough
- Pharyngitis
- Respiratory tract infections
- Alopecia
- Arthralgia
Interactions
- Trimethoprim may increase exposure to lamivudine
- Concomitant use with other antiretroviral drugs should be evaluated for cross-resistance
Precautions
- Monitor liver function tests every 3 months in patients with chronic hepatitis B
- Recurrent hepatitis may occur upon discontinuation in chronic hepatitis B patients
- Use with caution in renal impairment; dose adjustments may be necessary if creatinine clearance is less than 50 mL/min
Pregnancy
Lamivudine is classified as category B, indicating that there are no known risks in humans, but caution should be exercised. It may be used during pregnancy if deemed necessary by the healthcare provider.
Breast-feeding
Lamivudine can be used with caution while breastfeeding, provided adequate measures are taken to prevent hepatitis B infection in infants.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Lamivudine 150 mg tablets
- Lamivudine 300 mg tablets
- Epivir oral solution
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: Abacavir
BNF-referencedAbacavir is an antiretroviral medication used in the treatment of HIV infection. It is a nucleoside reverse transcriptase inhibitor (NRTI) that helps to reduce the viral load in patients and improve immune function.
Indications
- HIV infection
- HIV-1 infection
Dosage
Children: For children aged 12–17 years, the recommended dose is 25 mg once daily.
Adults: The usual adult dosage of abacavir is 600 mg once daily or 300 mg twice daily.
Mechanism of action
Abacavir inhibits the reverse transcriptase enzyme, which is essential for the replication of HIV. By incorporating itself into the viral DNA, it prevents the synthesis of viral RNA and DNA, thereby halting viral replication.
Pharmacodynamics
The pharmacodynamic effects of abacavir include a reduction in the viral load of HIV in plasma, leading to improved immune function and a decrease in the risk of HIV-related complications.
Pharmacokinetics
Abacavir is rapidly absorbed after oral administration and reaches peak plasma concentrations within 1-2 hours. It is primarily metabolized in the liver through glucuronidation and has a half-life of about 1.5 hours. It is excreted mainly in urine as metabolites.
Contra-indications
- Hypersensitivity to abacavir or any component of the formulation
- Severe hepatic impairment
Adverse effects
- Hypersensitivity reactions
- Abdominal pain
- Anaemia
- Decreased appetite
- Dizziness
- Fatigue
- Headache
- Nausea
- Rash
- Vomiting
- Immune reconstitution inflammatory syndrome
- Mitochondrial dysfunction
Interactions
- Increased exposure when used with riociguat
Precautions
- Caution in patients with chronic hepatitis B or C (increased risk of hepatic side-effects)
- Monitoring of liver function required in patients with hepatic disease
- Patients should be monitored for signs of hypersensitivity reactions
Pregnancy
Manufacturer advises to avoid unless essential-no information available.
Breast-feeding
Use with caution; limited information on the excretion in breast milk.
Storage
Store in a cool, dry place away from direct sunlight.
Formulations
- Tablet
- Oral suspension
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: abacavirsulfate
BNF-referencedAbacavir sulfate is an antiretroviral medication used primarily in the treatment of HIV infection. It belongs to the class of drugs known as nucleoside reverse transcriptase inhibitors (NRTIs). Abacavir works by inhibiting the reverse transcriptase enzyme, which is essential for the replication of the HIV virus. It is often used in combination with other antiretroviral agents to achieve effective viral suppression.
Indications
- HIV infection
- HIV-1 infection
- HIV/AIDS treatment
Dosage
Children: For children aged 3 months to 16 years, the dosage of abacavir sulfate should be determined based on body weight. Refer to the B
Adults: The usual adult dose of abacavir sulfate is 300 mg twice daily or 600 mg once daily, taken with or without food.
Mechanism of action
Abacavir is converted intracellularly to its active form, carbovir triphosphate, which competes with the natural nucleotides for incorporation into viral DNA. This incorporation leads to termination of the DNA chain, thereby inhibiting viral replication. The conversion process involves several steps and enzymes, primarily adenosine phosphotransferase and cellular kinases, which phosphorylate abacavir to its active metabolite. Importantly, this activation occurs in both infected and uninfected cells.
Pharmacodynamics
As an NRTI, abacavir exhibits dose-dependent antiviral activity against HIV-1. The drug is effective in reducing viral load and increasing CD4 cell counts in patients with HIV. Resistance may develop through mutations in the reverse transcriptase enzyme, reducing the efficacy of abacavir. Adverse effects can include hypersensitivity reactions, which are significant and require immediate discontinuation of the drug.
Pharmacokinetics
Abacavir is well absorbed following oral administration, with peak plasma concentrations occurring approximately 1.5 hours post-dose. The drug has a half-life of about 1.5 hours, and its elimination is primarily hepatic, with metabolites excreted in the urine. It has good tissue distribution, including penetration into the central nervous system. The pharmacokinetics can be influenced by genetic factors, particularly the presence of the HLA-B*5701 allele, which is associated with an increased risk of hypersensitivity reactions.
Contra-indications
- Hypersensitivity to abacavir or any component of the formulation
- Severe hepatic impairment
- History of hypersensitivity reaction to abacavir
Adverse effects
- Hypersensitivity reactions
- Nausea
- Vomiting
- Diarrhea
- Fatigue
- Headache
- Rash
- Liver enzyme abnormalities
- Lactic acidosis
- Fat redistribution
Interactions
- May interact with other antiretroviral agents
- Alcohol may increase the risk of hypersensitivity reactions
- Other medications metabolized by the liver may influence abacavir levels
Precautions
- Monitor for signs of hypersensitivity reactions
- Assess liver function prior to initiation and during therapy
- Consider HLA-B*5701 testing before starting treatment to reduce the risk of hypersensitivity
- Use caution in patients with cardiovascular disease
Pregnancy
Abacavir is categorized as a Category C drug. Use during pregnancy only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Abacavir is excreted in breast milk. A decision should be made whether to discontinue nursing or to discontinue the drug, considering the importance of the drug to the mother.
Storage
Store at room temperature, away from light and moisture. Keep out of reach of children.
Formulations
- Abacavir sulfate 300 mg film-coated tablets
- Abacavir sulfate 20 mg/ml oral solution
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: Abacavir
PubChem CID 441300Molecular formula: C14H18N6O
Mechanism of action
Abacavir is a carbocyclic synthetic nucleoside analogue and an antiviral agent. Intracellularly, abacavir is converted by cellular enzymes to the active metabolite carbovir triphosphate, an analogue of deoxyguanosine-5'-triphosphate (dGTP). Carbovir triphosphate inhibits the activity of HIV-1 reverse transcriptase (RT) both by competing with the natural substrate dGTP and by its incorporation into viral DNA. Viral DNA growth is terminated because the incorporated nucleotide lacks a 3'-OH group, which is needed to form the 5′ to 3′ phosphodiester linkage essential for DNA chain elongation.
Pharmacodynamics
Abacavir is a nucleoside reverse transcriptase inhibitor (NRTI) with activity against Human Immunodeficiency Virus Type 1 (HIV-1). Abacavir is phosphorylated to active metabolites that compete for incorporation into viral DNA. They inhibit the HIV reverse transcriptase enzyme competitively and act as a chain terminator of DNA synthesis. The concentration of drug necessary to effect viral replication by 50 percent (EC50) ranged from 3.7 to 5.8 μM (1 μM = 0.28 mcg/mL) and 0.07 to 1.0 μM against HIV-1IIIB and HIV-1BaL, respectively, and was 0.26 ± 0.18 μM against 8 clinical isolates. Abacavir had synergistic activity in cell culture in combination with the nucleoside reverse transcriptase inhibitor (NRTI) zidovudine, the non-nucleoside reverse transcriptase inhibitor (NNRTI) nevirapine, and the protease inhibitor (PI) amprenavir; and additive activity in combination with the NRTIs didanosine, emtricitabine, lamivudine, stavudine, tenofovir, and zalcitabine.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Dolutegravir
PubChem CID 54726191Molecular formula: C20H19F2N3O5
Mechanism of action
Dolutegravir is an HIV-1 antiviral agent. It inhibits HIV integrase by binding to the active site and blocking the strand transfer step of retroviral DNA integration in the host cell. The strand transfer step is essential in the HIV replication cycle and results in the inhibition of viral activity. Dolutegravir has a mean EC50 value of 0.5 nM (0.21 ng/mL) to 2.1 nM (0.85 ng/mL) in peripheral blood mononuclear cells (PBMCs) and MT-4 cells. Dolutegravir inhibits HIV integrase by binding to the integrase active site and blocking the strand transfer step of retroviral deoxyribonucleic acid (DNA) integration which is essential for the HIV replication cycle. Strand transfer biochemical assays using purified HIV-1 integrase and pre-processed substrate DNA resulted in IC50 values of 2.7 nM and 12.6 nM.
Pharmacodynamics
HIV-1 infected subjects on dolutegravir monotherapy demonstrated rapid and dose-dependent reduction of antiviral activity with declines of HIV-1 RNA copies per ml. The antiviral response was maintained for 3 to 4 days after the last dose. The sustained response obtained in clinical trials indicates that dolutegravir has a tight binding and longer dissociative half-life providing it a high barrier to resistance. The combination therapy (ripivirine and dolutegravir) presented the same viral suppression found in previous three-drug therapies without integrase strand transfer inhibitor mutations or rilpivirine resistance.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Lamivudine
PubChem CID 60825Molecular formula: C8H11N3O3S
Mechanism of action
Lamivudine is a synthetic nucleoside analogue and is phosphorylated intracellularly to its active 5'-triphosphate metabolite, lamivudine triphosphate (L-TP). This nucleoside analogue is incorporated into viral DNA by HIV reverse transcriptase and HBV polymerase, resulting in DNA chain termination. Lamivudine enters cells by passive diffusion and is phosphorylated to its active metabolite, lamivudine triphosphate. Lamivudine triphosphate competes with deoxycytidine triphosphate for binding to reverse transcriptase, and incorporation into DNA results in chain termination. Lamivudine has very low affinity for human alpha and omega DNA polymerases, moderate affinity for beta DNA polymerase, and higher affinity for gamma DNA polymerase.
Pharmacodynamics
Lamivudine is a nucleoside reverse transcriptase inhibitor (NRTI) with activity against Human Immunodeficiency Virus Type 1 (HIV-1) and hepatitis B (HBV) to disrupt viral DNA synthesis. When phosphorylated, lamivudine can form active metabolites that compete for incorporation into viral DNA. Via DNA incorporation, lamivudine metabolites competitively inhibit the activity of the HIV reverse transcriptase enzyme and act as a chain terminator of DNA synthesis. Due to the lack of a 3'-OH group, incorporated nucleoside analogues prevent the formation of a 5' to 3' phosphodiester linkage that is essential for DNA chain elongation.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: abacavirsulfate
PubChem CID 441384Molecular formula: C28H38N12O6S
Mechanism of action
Like dideoxynucleoside reverse transcriptase inhibitors (e.g., didanosine, lamivudine, stavudine, zalcitabine, zidovudine), the antiviral activity of abacavir appears to depend on intracellular conversion of the drug to a 5-triphosphate metabolite; thus, carbovir triphosphate (carbocyclic guanosine triphosphate) and not unchanged abacavir appears to be the pharmacologically active form of the drug. Substantial differences exist in the rates at which human cells phosphorylate various nucleoside antiviral agents and in the enzymatic pathways involved. Enzymatic conversion of abacavir to carbovir triphosphate appears to be complex and involves certain steps and enzymes that differ from those involved in the enzymatic conversion of dideoxynucleoside reverse transcriptase inhibitors. Abacavir is phosphorylated by adenosine phosphotransferase to abacavir monophosphate, which is converted to carbovir monophosphate by a cytosolic enzyme. Subsequently, carbovir monophosphate is phosphorylated by cellular kinases to carbovir triphosphate. Abacavir is not a substrate for enzymes (i.e., thymidine kinase, deoxycytidine kinase, adenosine kinase, mitochondrial deoxyguanosine kinase) known to phosphorylate other nucleoside analogs. Because phosphorylation of abacavir depends on cellular rather than viral enzymes, conversion of the drug to the active triphosphate derivative occurs in both virus-infected and uninfected cells. Carbovir triphosphate is a structural analog of deoxyguanosine-5-triphosphate (dGTP), the usual substrate for viral RNA-directed DNA polymerase. Although other mechanisms may be involved in the antiretroviral activity of the drug, carbovir triphosphate appears to compete with deoxyguanosine-5-triphosphate for viral RNA-directed DNA polymerase and incorporation into viral DNA. Following incorporation of carbovir triphosphate into the viral DNA chain instead of deoxyguanosine-5-triphosphate, DNA synthesis is prematurely terminated because the absence of the 3-hydroxy group on the drug prevents further 5 to 3 phosphodiester linkages. The complete mechanism(s) of antiviral activity of abacavir has not been fully elucidated. Following conversion to a pharmacologically active metabolite, abacavir apparently inhibits replication of retroviruses, including human immunodeficiency virus type 1 (HIV-1) and type 2 (HIV-2), by interfering with viral RNA-directed DNA polymerase (reverse transcriptase). The drug, therefore, exerts a virustatic effect against retroviruses by acting as a reverse transcriptase inhibitor.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
- ABACAVIR / LAMIVUDINE DISPERSIBLE TABLETS · Micro Labs
- ABACAVIR / LAMIVUDINE DISPERSIBLE TABLETS · Micro Labs Limited
- ABACAVIR AND LAMIVUDINE TABLETS USP · Macleods Pharmaceuticals
- ABLADO · Apl Health Care Limited
- ABLADO DT · Apl Health Care Limited
- ACRIPTEGA · Mylan Laboratories
- ABAC TABLETS 300MG · Sun Pharma
- ABAC-LZ TABLETS · Sun Pharma
- ABACAVIR (AS SULFATE) AND LAMIVUDINE DISPERSIBLE TABLETS 120/60 MG · Phillips Healthcare
- ABACAVIR (AS SULFATE), DOLUTEGRAVIR (AS SODIUM) AND LAMIVUDINE 60 MG/ 5 MG/ 30 MG DISPERSIBLE TABLETS · Phillips Healthcare
- ABACAVIR AND LAMIVUDINE DISPERSIBLE TABLETS 120 MG / 60 MG · Micro Labs
- ABACAVIR AND LAMIVUDINE TABLETS USP 600 MG/300 MG · Sai Pharmaceuticals