(darunavir · DailyMed)
DARUNAVIR; RITONAVIR
DARUNAVIR; RITONAVIR
What it does
Darunavir is an antiviral medicine used to treat 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.
Medicine sourcing is available in Kenya only. We don't sell or dispense medicines - licensed pharmacies do.
Sourcing - Kenya onlyRegistration & product details
Source: Medicines Control Authority of Zimbabwe · fetched 2026-04-18 08:22:06 · updated 2026-09-16 04:30:05
Drug Interactions
64Severe (12)
Antipsychotics, Second Generation - affects exposure
Ritonavir is predicted to affect the exposure to antipsychotics, second generation (clozapine). Avoid.
Benzodiazepines - increases exposure
Ritonavir is predicted to increase the exposure to benzodiazepines (diazepam, flurazepam). Avoid.
Clopidogrel - decreases efficacy
Ritonavirmightdecreasetheefficacyofclopidogrel.Avoid. oTheoretical
Clozapine - affects exposure
Ritonavir is predicted to affect the exposure to antipsychotics, second generation (clozapine). Avoid.
Dabigatran - increases exposure
Ritonavir is predicted to increase the exposure to thrombin inhibitors (dabigatran). Avoid.
Moderate (11)
Antipsychotics, Second Generation - decreases exposure
Ritonavir is predicted to decrease the exposure to antipsychotics, second generation (olanzapine). Monitor and adjust dose.
Clarithromycin - increases exposure
Ritonavir increases the exposure to macrolides (clarithromycin). Adjust dose in renal impairment.
Deferasirox - decreases exposure
Ritonavir is predicted to decrease the exposure to iron chelators (deferasirox). Monitor serum ferritin and adjust dose.
Digoxin - increases concentration
Ritonavir increases the concentration of digoxin. Adjust dose and monitor concentration.
Ironchelators - decreases exposure
Ritonavir is predicted to decrease the exposure to iron chelators (deferasirox). Monitor serum ferritin and adjust dose.
Unknown (41)
Agomelatine - decreases exposure
Ritonavirispredictedtodecreasetheexposuretoagomelatine. oTheoretical
Albendazole - decreases exposure
Ritonavir decreases the exposure to albendazole.
Aliskiren - increases exposure
Ritonavirispredictedtoincreasetheexposuretoaliskiren. oTheoretical
Aminophylline - decreases exposure
Ritonavir decreases the exposure to aminophylline. Adjust dose.
Anaesthetics,local - decreases exposure
Ritonavir is predicted to decrease the exposure to anaesthetics, local (ropivacaine).
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About darunavir
Darunavir is an antiviral medicine used to treat HIV infection.
What it treats
- HIV infection
- human immunodeficiency virus (HIV)
How it works
It helps to control the virus, allowing the immune system to work better.
Who it's for
This medicine is for people living with HIV.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About ritonavir
Ritonavir is a medication primarily used to treat HIV infection. It helps boost the effectiveness of other HIV medications.
What it treats
- HIV infection
- Acquired Immunodeficiency Syndrome (AIDS)
How it works
Ritonavir works by inhibiting an enzyme that HIV needs to multiply, thus helping to control the virus in the body.
Who it's for
This medication is for individuals diagnosed with HIV or AIDS.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Darunavir
BNF-referencedDarunavir is a potent HIV protease inhibitor used in the treatment of HIV infection. It is utilized as part of highly active antiretroviral therapy (HAART) and is effective in suppressing viral replication, leading to improved immune function and reduced morbidity and mortality associated with HIV infection. Darunavir is typically administered in combination with other antiretroviral agents to enhance therapeutic efficacy.
Indications
- HIV infection in combination with other antiretroviral drugs in patients previously treated with antiretroviral therapy
- HIV infection in combination with other antiretroviral drugs in treatment-naive patients
Dosage
Children: For children weighing 14-20 kg: 0.5 tablet twice daily; for children weighing 30 kg and above: 1 tablet twice daily. Refer to BNF for Children for detailed dosing guidelines.
Adults: 800 mg once daily or 600 mg twice daily, depending on previous treatment history and viral load.
Mechanism of action
Darunavir functions by binding to the HIV-1 protease enzyme, which is critical for viral protein processing and maturation necessary for HIV replication. By inhibiting the protease, darunavir prevents the cleavage of Gag-Pol proteins in infected cells, thus halting the formation of mature and infectious virions. Its ability to interact with multiple sites on the protease enzyme contributes to its effectiveness, particularly against resistant strains of HIV.
Pharmacodynamics
As a protease inhibitor, darunavir effectively lowers HIV viral load and enhances CD4 cell counts when used in combination with ritonavir and other antiretroviral medications. This mechanism leads to a significant decrease in morbidity and mortality rates in patients with HIV infection, improving overall health outcomes.
Pharmacokinetics
Darunavir is well-absorbed following oral administration. It has a high protein binding rate, primarily to albumin and alpha-1 acid glycoprotein. The drug undergoes hepatic metabolism, primarily via the cytochrome P450 system, particularly CYP3A4, and has a half-life that allows for once or twice daily dosing. The pharmacokinetics may vary based on the presence of food and other medications.
Adverse effects
- rash
- nausea
- diarrhea
- headache
- fatigue
- hepatotoxicity
- gastrointestinal disorders
- depression
- memory loss
- gynaecomastia
- nephrolithiasis
- severe cutaneous adverse reactions (SCARs)
Interactions
- darunavir + cobicistat: increased risk of adverse reactions
- darunavir + ritonavir: synergistic effect on HIV suppression
- darunavir + raltegravir: unknown interaction, increased risk of rash
Precautions
- monitor liver function tests
- watch for signs of severe skin reactions
- caution in patients with a history of drug allergies
- monitor for signs of nephrolithiasis
- consider potential drug interactions with other antiretrovirals
Pregnancy
Darunavir is generally considered safe to use during pregnancy; however, it should be used under the guidance of a healthcare provider as part of a comprehensive antiretroviral therapy plan.
Breast-feeding
Darunavir is excreted in breast milk; the decision to breastfeed while on darunavir should involve a risk-benefit assessment with a healthcare provider.
Storage
Store at room temperature, protect from moisture and light. Keep out of reach of children.
Formulations
- Darunavir oral suspension 100 mg/ml
- Darunavir 400 mg tablets
- Darunavir 600 mg tablets
- Darunavir 800 mg tablets
- Darunavir 75 mg tablets
- Darunavir 150 mg tablets
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: Ritonavir
BNF-referencedRitonavir is an antiretroviral medication primarily used in the treatment of HIV infection. It functions as a protease inhibitor, impeding the HIV protease enzyme's ability to cleave viral polyproteins, resulting in the production of immature and non-infectious viral particles. Ritonavir is often used in combination with other antiretroviral agents to enhance efficacy and improve therapeutic outcomes.
Indications
- HIV infection in combination with other antiretroviral drugs
Dosage
Children: For children over 2 years of age
Adults: The typical adult dose of ritonavir is 100–200 mg taken 1–2 times a day. For high-dose ritonavir used as a booster, the recommended dose is 800/200 mg once daily, but this should only be used in patients with an HIV strain that has fewer than 3 mutations to protease inhibitors.
Mechanism of action
Ritonavir inhibits the HIV protease enzyme, which is crucial for the cleavage of the viral polyprotein precursors into functional proteins essential for the formation of infectious HIV particles. By binding to the active site of the protease, ritonavir prevents this cleavage, leading to the production of non-infectious viral particles. Additionally, ritonavir is a potent inhibitor of the cytochrome P450 CYP3A4 isoenzyme, which enhances the pharmacokinetic profile of other protease inhibitors by reducing their metabolism.
Pharmacodynamics
Ritonavir exhibits antiviral activity specifically against HIV-1 by preventing the function of the viral protease. This inhibition disrupts the normal life cycle of HIV, resulting in immature viral particles that cannot propagate infection. Ritonavir is generally administered in conjunction with other antiretroviral therapies to achieve a synergistic effect, enhancing the overall antiviral activity and therapeutic success.
Pharmacokinetics
Ritonavir is well-absorbed when taken orally, with peak plasma concentrations occurring approximately 2 to 4 hours post-administration. Its bioavailability is influenced by food intake. The drug is extensively metabolized in the liver, primarily by the CYP3A4 enzyme. Ritonavir has a half-life of about 3 to 5 hours in adults, requiring multiple daily doses to maintain effective plasma levels. The drug is excreted mainly in feces, with minimal renal excretion.
Contra-indications
- Severe hepatic impairment
- Severe renal impairment
- History of pancreatitis
Adverse effects
- Nausea
- Diarrhea
- Vomiting
- Abdominal pain
- Increased risk of infections
- Pancreatitis
- Hyperlipidemia
- Fat redistribution
- Liver enzyme elevation
- Cardiac conduction disorders
- Visual impairment
- Peripheral neuropathy
- Hypersensitivity reactions
Interactions
- Ritonavir + antipsychotics (second-generation): Severe (affects exposure)
- Ritonavir + clozapine: Severe (affects exposure)
- Ritonavir + benzodiazepines: Severe (increases exposure)
- Ritonavir + diazepam: Severe (increases exposure)
- Ritonavir + flurazepam: Severe (increases exposure)
- Ritonavir + clopidogrel: Severe (decreases efficacy)
- Ritonavir + glecaprevir: Severe (increases exposure)
- Ritonavir + opioids: Severe (increases risk of central nervous system toxicity)
- Ritonavir + pethidine: Severe (increases risk of central nervous system toxicity)
- Ritonavir + tepotinib: Severe (increases exposure)
Precautions
- Monitor liver function tests regularly
- Use with caution in patients with a history of cardiac conduction disorders
- Evaluate signs of pancreatitis, discontinue if diagnosed
- Avoid use in severe impairment of hepatic or renal function
- Consider potential for drug interactions due to CYP3A4 inhibition
Pregnancy
Use during pregnancy only if the potential benefit justifies the potential risk to the fetus. Ritonavir is classified as Category B.
Breast-feeding
Ritonavir is excreted in breast milk. Weigh the benefits of breastfeeding against the potential risks of HIV transmission or adverse effects to the infant.
Storage
Store at room temperature, away from moisture and heat. Keep out of reach of children.
Formulations
- Ritonavir 50 mg tablets
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: Darunavir
PubChem CID 213039Molecular formula: C27H37N3O7S
Mechanism of action
The HIV-1 protease enzyme is necessary for viral precursor protein processing and viral maturation in preparation for infection, and is therefore a target for antiretroviral therapy for HIV. Protease inhibitors are used as a part of highly active antiretroviral therapy (HAART) in patients diagnosed with HIV infection. It has been shown to effectively suppress the virus, leading to significantly decreased morbidity and mortality rates. Darunavir, a HIV protease inhibitor, prevents HIV replication through binding to the enzyme, stopping the dimerization and the catalytic activity of HIV-1 protease. In particular, it inhibits the cleavage of HIV encoded Gag-Pol proteins in cells that have been infected with the virus, halting the formation of mature virus particles, which spread the infection. The close contact that darunavir makes with the primary chains of the active site amino acids (Asp-29 and Asp-30) on the protease likely contributes to its potency and efficacy against resistant variants of HIV-1. Darunavir is known to bind to different sites on the enzyme: the active site cavity and the surface of one of the flexible flaps in the protease dimer. Darunavir can adapt to changes in the shape of a protease enzyme due to its molecular flexibility. Darunavir as a protease inhibitor inhibits the cleavage of HIV encoded gag-pol polyproteins in virus infected cells, thereby preventing the formation of mature and infectious new virions. It was selected for its potency against wild type HIV-1 and HIV strains resistant to currently approved protease inhibitors. Darunavir is an inhibitor of the HIV-1 protease. It selectively inhibits the cleavage of HIV encoded Gag-Pol polyproteins in infected cells, thereby preventing the formation of mature virus particles.
Pharmacodynamics
Darunavir is an inhibitor of the human immunodeficiency virus (HIV) protease, which prevents HIV viral replication. When administered with ritonavir in combination antiretroviral therapy, darunavir significantly decreases viral load and increases CD4 cell counts, decreasing the morbidity and mortality of HIV infection.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Ritonavir
PubChem CID 392622Molecular formula: C37H48N6O5S2
Mechanism of action
Ritonavic inhibits the HIV viral proteinase enzyme that normally cleaves the structural and replicative proteins that arise from major HIV genes, such as *gag* and *pol*. *Gag* encodes proteins involved in the core and the nucleocapsid, while *pol* encodes the the HIV reverse transcriptase, ribonuclease H, integrase, and protease. The *pol*-encoded proteins are initially translated in the form of a larger precursoe polypeptide, *gag-pol*, and needs to be cleaved by HIV protease to form other complement proteins. Ritonavir prevents the cleavage of the *gag-pol* polyprotein, which results in noninfectious, immature viral particles. Ritonavir is a potent inhibitor of cytochrome P450 CYP3A4 isoenzyme present both in the intestinal tract and liver. It is a type II ligand that perfectly fits into the CYP3A4 active site cavity and irreversibly binds to the heme iron via the thiazole nitrogen, which decreases the redox potential of the protein and precludes its reduction with the redox partner, cytochrome P450 reductase. Ritonavir may also play a role in limiting cellular transport and efflux of other protease inhibitors via the P-glycoprotein and MRP efflux channels. Unlike nucleoside antiretroviral agents, the antiviral activity of ritonavir does not depend on intracellular conversion to an active metabolite. Ritonavir and other HIV protease inhibitors (e.g., amprenavir, indinavir, lopinavir, nelfinavir, saquinavir) act at a different stage of the HIV replication cycle than nucleoside and nonnucleoside reverse transcriptase inhibitors, and results of in vitro studies indicate that the antiretroviral effects of HIV protease inhibitors and some nucleoside or nonnucleoside antiretroviral agents may be additive or synergistic. Ritonavir is a selective, competitive, reversible inhibitor of HIV protease. HIV protease, an aspartic endopeptidase that functions as a homodimer, plays an essential role in the HIV replication cycle and the formation of infectious virus. During HIV replication, HIV protease cleaves viral polypeptide products of the gag and gag-pol genes (i.e., p55 and p160) to form structural proteins of the virion core (i.e., p17, p24, p9, and p7) and essential viral enzymes (i.e., reverse transcriptase, integrase, and protease). By interfering with the formation of these essential proteins and enzymes, ritonavir blocks maturation of the virus and causes formation of nonfunctional, immature, noninfectious virions. Ritonavir is active in both acutely and chronically infected cells since it targets the HIV replication cycle after translation and before assembly. Thus, the drug is active in chronically infected cells (e.g., monocytes and macrophages) that generally are not affected by nucleoside reverse transcriptase inhibitors (e.g., didanosine, lamivudine, stavudine, zalcitabine, zidovudine). Ritonavir does not affect early stages of the HIV replication cycle; however, the drug interferes with production of infectious HIV and limits further infectious spread of the virus. While the complete mechanisms of antiviral activity of ritonavir have not been fully elucidated, ritonavir apparently inhibits replication of retroviruses, including human immunodeficiency virus type 1 (HIV-1) and 2 (HIV-2), by interfering with HIV protease. The drug, therefore, exerts a virustatic effect against retroviruses by acting as an HIV protease inhibitor.
Pharmacodynamics
Ritonavir is a protease inhibitor with activity against Human Immunodeficiency Virus Type 1 (HIV-1). Protease inhibitors block the part of HIV called protease. HIV-1 protease is an enzyme required for the proteolytic cleavage of the viral polyprotein precursors into the individual functional proteins found in infectious HIV-1. Ritonavir binds to the protease active site and inhibits the activity of the enzyme. This inhibition prevents cleavage of the viral polyproteins resulting in the formation of immature non-infectious viral particles. Protease inhibitors are almost always used in combination with at least two other anti-HIV drugs. Modern protease inhibitors require the use of low-dose ritonavir to boost pharmacokinetic exposure through inhibition of metabolism via the cytochrome P450 3A4 enzyme pathway.
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, LOPINAVIR AND RITONAVIR GRANULES 30 MG/15 MG/40 MG/10 MG · Phillips Healthcare
- ALUVIA 100/25 TABLETS · Harleys
- ALUVIA 200/50 TABLETS · Harleys
- ANZAVIR-R TABLETS · Surgilinks
- ATAVAZ · Sun Pharma
- ATAZANAVIR (AS SULFATE)/ RITONAVIR TABLETS 300 MG/ 100 MG · Sai Pharmaceuticals
- ALLTERA_50 40/10MG GRANULES
- ALUVIA 200/50MG TABLET
- ALUVIA-125 100/25MG TABLET
- ANZAVIR-R 300MG/100MG TABLET
- ATANAZAVIR+_RITONAVIR 300MG/100MG TABLET
- ATAZANAVIR&_RITONAVIR 300/100MG TABLET
- ANZAVIR-R TABLETS · Mylan Laboratories
- ATAZOR-R TABLETS · Emcure Pharmaceuticals
- DARUNAVIR+RITONAVIR TABLETS · Mylan Laboratories
- DURART TABLETS ( Darunavir 600mg) · Mylan Laboratories
- DURART TABLETS ( Darunavir 800mg) · Mylan Laboratories
- NIRMACOM TABLETS (Each tablet contains Nirmatrelvir/Ritonavir 150mg / 100mg) · Hetero Labs