Lopinavir And Ritonavir
PrescriptionNoms de marque : Lopinavir and Ritonavir
About This Medication
11 DESCRIPTION Lopinavir and ritonavir tablets is a co-formulation of lopinavir and ritonavir. Lopinavir is an inhibitor of the HIV-1 protease. As co-formulated in lopinavir and ritonavir, ritonavir inhibits the CYP3A-mediated metabolism of lopinavir, thereby providing increased plasma levels of lopinavir. Lopinavir, USP is chemically designated as [1S-[1R*,(R*), 3R*, 4R*]]-N-[4-[[(2,6dimethylphenoxy)acetyl]amino]-3-hydroxy-5-phenyl-1-(phenylmethyl)pentyl]tetrahydro-alpha(1-methylethyl)-2-oxo-1(2H)-pyrimidineacetamide. Its molecular formula is C37H48N4O5, and its molecular weight is 628.80. Lopinavir is a white to light tan powder. It is freely soluble in methanol and ethanol, soluble in isopropanol and practically insoluble in water. Lopinavir has the following structural formula: Ritonavir, USP is chemically designated as 10-hydroxy-2-methyl-5-(1-methylethyl)-1-[2-(1methylethyl)-4-thiazolyl]-3,6-dioxo-8,11-bis(phenylmethyl)-2,4,7,12-tetraazatridecan-13-oic acid, 5-thiazolylmethyl ester, [5S-(5R*,8R*,10R*,11R*)]. Its molecular formula is C37H48N6O5S2, and its molecular weight is 720.95. Ritonavir is a white to light tan powder. It is freely soluble in methanol and ethanol, soluble in isopropanol and practically insoluble in water. Ritonavir has the following structural formula: Lopinavir and ritonavir tablets, USP are available for oral administration in two strengths: Yellow tablets containing 200 mg of lopinavir and 50 mg of ritonavir Pale yellow tablets containing 100 mg of lopinavir and 25 mg of ritonavir. The yellow, 200 mg lopinavir and 50 mg ritonavir, tablets contain the following inactive ingredients: copovidone, sorbiton monolaurate, colloidal silicon dioxide, anhydrous dibasic calcium phosphate, sodium stearyl fumarate. The coating consists of titanium dioxide, polyethylene glycol 3350, talc, iron oxide yellow. The pale yellow, 100 mg lopinavir and 25 mg ritonavir, tablets contain the following inactive ingredients: copovidone, sorbiton monolaurate, colloidal silicon dioxide, anhydrous dibasic calcium phosphate, sodium stearyl fumarate. The coating consists of titanium dioxide, polyethylene glycol 3350, talc, iron oxide yellow. str-rito str-lopi
Principes Actifs
| Ingrédient | Dosage |
|---|---|
| Lopinavir | - |
| Ritonavir | - |
Indications et Utilisation
Comment ça marche
Posologie et Administration
Side Effects Overview
Mises en Garde et Précautions
5 WARNINGS AND PRECAUTIONS The following have been observed in patients receiving lopinavir and ritonavir: The concomitant use of lopinavir and ritonavir and certain other drugs may result in known or potentially significant drug interactions. Consult the full prescribing information prior to and during treatment for potential drug interactions. ( 5.1 , 7.3 ) Toxicity in preterm neonates: Lopinavir and ritonavir oral solution should not be used in preterm neonates in the immediate postnatal period because of possible toxicities. A safe and effective dose of lopinavir and ritonaviroral solution in this patient population has not been established. ( 2.4 , 5.2) Pancreatitis: Fatalities have occurred; suspend therapy as clinically appropriate. ( 5.3 ) Hepatotoxicity: Fatalities have occurred. Monitor liver function before and during therapy, especially in patients with underlying hepatic disease, including hepatitis B and hepatitis C, or marked transaminase elevations. ( 5.4 , 8.6 ) QT interval prolongation and isolated cases of torsade de pointes have been reported although causality could not be established. Avoid use in patients with congenital long QT syndrome, those with hypokalemia, and with other drugs that prolong the QT interval. ( 5.1 , 5.5 , 12.3 ) PR interval prolongation may occur in some patients. Cases of second and third degree heart block have been reported. Use with caution in patients with pre-existing conduction system disease, ischemic heart disease, cardiomyopathy, underlying structural heart disease or when administering with other drugs that may prolong the PR interval. ( 5.1 , 5.6 , 12.3 ) Patients may develop new onset or exacerbations of diabetes mellitus, hyperglycemia ( 5.7 ), immune reconstitution syndrome. ( 5.8 ), redistribution/accumulation of body fat. ( 5.10 ) Total cholesterol and triglycerides elevations. Monitor prior to therapy and periodically thereafter. ( 5.9 ) Hemophilia: Spontaneous bleeding may occur, and additional factor VIII may be required. ( 5.11 ) 5.1 Risk of Serious Adverse Reactions Due to Drug Interactions Initiation of lopinavir and ritonavir, a CYP3A inhibitor, in patients receiving medications metabolized by CYP3A or initiation of medications metabolized by CYP3A in patients already receiving lopinavir and ritonavir, may increase plasma concentrations of medications metabolized by CYP3A. Initiation of medications that inhibit or induce CYP3A may increase or decrease concentrations of lopinavir and ritonavir, respectively. These interactions may lead to: Clinically significant adverse reactions, potentially leading to severe, life-threatening, or fatal events from greater exposures of concomitant medications. Clinically significant adverse reactions from greater exposures of lopinavir and ritonavir. Loss of therapeutic effect of lopinavir and ritonavir and possible development of resistance. See Table 12 for steps to prevent or manage these possible and known significant drug interactions, including dosing recommendations [see Drug Interactions ( 7 )]. Consider the potential for drug interactions prior to and during lopinavir and ritonavir therapy; review concomitant medications during lopinavir and ritonavir therapy, and monitor for the adverse reactions associated with the concomitant medications [see Contraindications ( 4 ) and Drug Interactions ( 7 )]. 5.2 Toxicity in Preterm Neonates Lopinavir and ritonavir oral solution contains the excipients ethanol, approximately 42% (v/v) and propylene glycol, approximately 15% (w/v). When administered concomitantly with propylene glycol, ethanol competitively inhibits the metabolism of propylene glycol, which may lead to elevated concentrations. Preterm neonates may be at increased risk of propylene glycol-associated adverse events due to diminished ability to metabolize propylene glycol, thereby leading to accumulation and potential adverse events. Postmarketing life-threatening cases of cardiac toxicity (including complete AV block, bradycardia, and cardiomyopathy), lactic acidosis, acute renal failure, CNS depression and respiratory complications leading to death have been reported, predominantly in preterm neonates receiving lopinavir and ritonavir oral solution. Lopinavir and ritonavir oral solution should not be used in preterm neonates in the immediate postnatal period because of possible toxicities. A safe and effective dose of Lopinavir and ritonavir oral solution in this patient population has not been established. However, if the benefit of using Lopinavir and ritonavir oral solution to treat HIV infection in infants immediately after birth outweighs the potential risks, infants should be monitored closely for increases in serum osmolality and serum creatinine, and for toxicity related to Lopinavir and ritonavir oral solution including: hyperosmolality, with or without lactic acidosis, renal toxicity, CNS depression (including stupor, coma, and apnea), seizures, hypotonia, cardiac arrhythmias and ECG changes, and hemolysis. Total amounts of ethanol and propylene glycol from all medicines that are to be given to infants should be taken into account in order to avoid toxicity from these excipients [ see Dosage and Administration ( 2.4 ) and Overdosage ( 10)]. 5.3 Pancreatitis Pancreatitis has been observed in patients receiving lopinavir and ritonavir therapy, including those who developed marked triglyceride elevations. In some cases, fatalities have been observed. Although a causal relationship to lopinavir and ritonavir have not been established, marked triglyceride elevations are a risk factor for development of pancreatitis [see Warnings and Precautions (5.9)]. Patients with advanced HIV-1 disease may be at increased risk of elevated triglycerides and pancreatitis, and patients with a history of pancreatitis may be at increased risk for recurrence during lopinavir and ritonavir therapy. Pancreatitis should be considered if clinical symptoms (nausea, vomiting, abdominal pain) or abnormalities in laboratory values (such as increased serum lipase or amylase values) suggestive of pancreatitis occur. Patients who exhibit these signs or symptoms should be evaluated and lopinavir and ritonavir and/or other antiretroviral therapy should be suspended as clinically appropriate. 5.4 Hepatotoxicity Patients with underlying hepatitis B or C or marked elevations in transaminase prior to treatment may be at increased risk for developing or worsening of transaminase elevations or hepatic decompensation with use of lopinavir and ritonavir. There have been postmarketing reports of hepatic dysfunction, including some fatalities. These have generally occurred in patients with advanced HIV-1 disease taking multiple concomitant medications in the setting of underlying chronic hepatitis or cirrhosis. A causal relationship with lopinavir and ritonavir therapy has not been established. Elevated transaminases with or without elevated bilirubin levels have been reported in HIV-1 mono-infected and uninfected patients as early as 7 days after the initiation of lopinavir and ritonavir in conjunction with other antiretroviral agents. In some cases, the hepatic dysfunction was serious; however, a definitive causal relationship with lopinavir and ritonavir therapy has not been established. Appropriate laboratory testing should be conducted prior to initiating therapy with lopinavir and ritonavir and patients should be monitored closely during treatment. Increased AST/ALT monitoring should be considered in the patients with underlying chronic hepatitis or cirrhosis, especially during the first several months of lopinavir and ritonavir treatment [see Use in Specific Populations ( 8.6) ]. 5.5 QT Interval Prolongation Postmarketing cases of QT interval prolongation and torsade de pointes have been reported although causality of lopinavir and ritonavir could not be established. Avoid use in patients with congenital long QT syndrome, those with hypokalemia, and with other drugs that prolong the QT interval [see Clinical Pharmacology ( 12.3 )]. 5.6 PR Interval Prolongation Lopinavir/ritonavir prolongs the PR interval in some patients. Cases of second or third degree atrioventricular block have been reported. Lopinavir and ritonavir should be used with caution in patients with underlying structural heart disease, pre-existing conduction system abnormalities, ischemic heart disease or cardiomyopathies, as these patients may be at increased risk for developing cardiac conduction abnormalities. The impact on the PR interval of co-administration of lopinavir and ritonavir with other drugs that prolong the PR interval (including calcium channel blockers, beta-adrenergic blockers, digoxin and atazanavir) has not been evaluated. As a result, co-administration of lopinavir and ritonavir with these drugs should be undertaken with caution, particularly with those drugs metabolized by CYP3A. Clinical monitoring is recommended [see Clinical Pharmacology ( 12.3 )]. 5.7 Diabetes Mellitus/Hyperglycemia New onset diabetes mellitus, exacerbation of pre-existing diabetes mellitus, and hyperglycemia have been reported during post-marketing surveillance in HIV-1 infected patients receiving protease inhibitor therapy. Some patients required either initiation or dose adjustments of insulin or oral hypoglycemic agents for treatment of these events. In some cases, diabetic ketoacidosis has occurred. In those patients who discontinued protease inhibitor therapy, hyperglycemia persisted in some cases. Because these events have been reported voluntarily during clinical practice, estimates of frequency cannot be made and a causal relationship between protease inhibitor therapy and these events has not been established. Consider monitoring for hyperglycemia, new onset diabetes mellitus or an exacerbation of diabetes mellitus in patients treated with lopinavir and ritonavir. 5.8 Immune Reconstitution Syndrome Immune reconstitution syndrome has been reported in patients treated with combination antiretroviral therapy, including lopinavir and ritonavir. During the initial phase of combination antiretroviral treatment, patients whose immune system responds may develop an inflammatory response to indolent or residual opportunistic infections (such as Mycobacterium avium infection, cytomegalovirus, Pneumocystis jirovecii pneumonia [PCP], or tuberculosis) which may necessitate further evaluation and treatment. Autoimmune disorders (such as Graves’ disease, polymyositis, and Guillain-Barré syndrome) have also been reported to occur in the setting of immune reconstitution, however, the time to onset is more variable, and can occur many months after initiation of treatment. 5.9 Lipid Elevations Treatment with lopinavir and ritonavir has resulted in large increases in the concentration of total cholesterol and triglycerides [see Adverse Reactions ( 6.1 )]. Triglyceride and cholesterol testing should be performed prior to initiating lopinavir and ritonavir therapy and at periodic intervals during therapy. Lipid disorders should be managed as clinically appropriate, taking into account any potential drug-drug interactions with lopinavir and ritonavir and HMG-CoA reductase inhibitors [see Contraindications ( 4 ) and Drug Interactions ( 7.3 )]. 5.10 Fat Redistribution Redistribution/accumulation of body fat including central obesity, dorsocervical fat enlargement (buffalo hump), peripheral wasting, facial wasting, breast enlargement, and "cushingoid appearance" have been observed in patients receiving antiretroviral therapy. The mechanism and long-term consequences of these events are currently unknown. A causal relationship has not been established. 5.11 Patients with Hemophilia Increased bleeding, including spontaneous skin hematomas and hemarthrosis have been reported in patients with hemophilia type A and B treated with protease inhibitors. In some patients additional factor VIII was given. In more than half of the reported cases, treatment with protease inhibitors was continued or reintroduced. A causal relationship between protease inhibitor therapy and these events has not been established. 5.12 Resistance/Cross-resistance Because the potential for HIV cross-resistance among protease inhibitors has not been fully explored in lopinavir and ritonavir -treated patients, it is unknown what effect therapy with lopinavir and ritonavir will have on the activity of subsequently administered protease inhibitors [see Microbiology ( 12.4 )].
Contre-indications
4 CONTRAINDICATIONS Lopinavir and ritonavir is contraindicated in patients with previously demonstrated clinically significant hypersensitivity (e.g., toxic epidermal necrolysis, Stevens-Johnson syndrome, erythema multiforme, urticaria, angioedema) to any of its ingredients, including ritonavir. Lopinavir and ritonavir is contraindicated with drugs that are highly dependent on CYP3A for clearance and for which elevated plasma concentrations are associated with serious and/or lifethreatening reactions [see Drug Interactions ( 7.1 ) and Clinical Pharmacology ( 12.3 )]. o Alpha 1-Adrenoreceptor Antagonist : alfuzosin o Antianginal: ranolazine o Antiarrhythmic: dronedarone o Anti-gout: colchicine o Antipsychotics: lurasidone, pimozide o Ergot Derivatives: dihydroergotamine, ergotamine, methylergonovine o GI Motility Agent: cisapride o Hepatitis C direct acting antiviral: elbasvir/grazoprevir o HMG-CoA Reductase Inhibitors: lovastatin, simvastatin o Microsomal triglyceride transfer protein (MTTP) Inhibitor: lomitapide o PDE5 Inhibitor: sildenafil (Revatio®) when used for the treatment of pulmonary arterial hypertension o Sedative/Hypnotics: triazolam, orally administered midazolam Lopinavir and ritonavir is contraindicated with drugs that are potent CYP3A inducers where significantly reduced lopinavir plasma concentrations may be associated with the potential for loss of virologic response and possible resistance and cross-resistance [see Drug Interactions ( 7.2 ) and Clinical Pharmacology ( 12.3 )]. o Anticancer Agents: apalutamide o Antimycobacterial: rifampin o Herbal Products: St. John's Wort (hypericum perforatum) Hypersensitivity to lopinavir and ritonavir tablets (e.g., toxic epidermal necrolysis, Stevens-Johnson syndrome, erythema multiforme, urticaria, angioedema) or any of its ingredients, including ritonavir. ( 4 ) Co-administration with drugs highly dependent on CYP3A for clearance and for which elevated plasma levels may result in serious and/or lifethreatening events. ( 4 ) Co-administration with potent CYP3A inducers where significantly reduced lopinavir plasma concentrations may be associated with the potential for loss of virologic response and possible resistance and cross resistance. ( 4 )
Pharmacocinétique
Frequently Asked Questions
1 INDICATIONS AND USAGE Lopinavir and ritonavir is indicated in combination with other antiretroviral agents for the treatment of HIV1 infection in adults and pediatric patients 14 days and older. Limitations of Use: Genotypic or phenotypic testing and/or treatment history should guide the use of lopinavir and ritonavir. The number of baseline lopinavir resistance-associated substitutions affects the virologic response to lopinavir and ritonavir [see Microbiology ( 12.4 )]. Lopinavir and ritonavir is an HIV-1 protease inhibitor indicated in combination with …
2 DOSAGE AND ADMINISTRATION Tablets: May be taken with or without food, swallowed whole and not chewed, broken, or crushed. ( 2.1 ) Adults ( 2.3 ): Total recommended daily dosage is 800/200 mg given once or twice daily. Lopinavir and ritonavir can be given as once daily or twice daily regimen. See Full Prescribing Information for details. Lopinavir and ritonavir once daily dosing regimen is not recommended in: Adult patients with three or more of the following lopinavir resistance-associated …
5 WARNINGS AND PRECAUTIONS The following have been observed in patients receiving lopinavir and ritonavir: The concomitant use of lopinavir and ritonavir and certain other drugs may result in known or potentially significant drug interactions. Consult the full prescribing information prior to and during treatment for potential drug interactions. ( 5.1 , 7.3 ) Toxicity in preterm neonates: Lopinavir and ritonavir oral solution should not be used in preterm neonates in the immediate postnatal period because of possible toxicities. A …
4 CONTRAINDICATIONS Lopinavir and ritonavir is contraindicated in patients with previously demonstrated clinically significant hypersensitivity (e.g., toxic epidermal necrolysis, Stevens-Johnson syndrome, erythema multiforme, urticaria, angioedema) to any of its ingredients, including ritonavir. Lopinavir and ritonavir is contraindicated with drugs that are highly dependent on CYP3A for clearance and for which elevated plasma concentrations are associated with serious and/or lifethreatening reactions [see Drug Interactions ( 7.1 ) and Clinical Pharmacology ( 12.3 )]. o Alpha 1-Adrenoreceptor Antagonist : alfuzosin o Antianginal: …
Lopinavir And Ritonavir is a prescription medication. You will need a valid prescription from a licensed healthcare provider.
Similar Tablet Products
Browse all Tablet products →References & Data Sources
- • DailyMed — Lopinavir And Ritonavir drug label (National Library of Medicine)
- • openFDA — Lopinavir And Ritonavir label data (U.S. Food & Drug Administration)
- • RxNorm — RXCUI 597730 (NLM Normalized Drug Names)
- • NDC Directory — Lopinavir And Ritonavir (FDA National Drug Code)
Avertissement Médical
Les informations sur cette page sont destinées à des fins éducatives uniquement et ne doivent pas être utilisées en remplacement d'un avis médical professionnel, d'un diagnostic ou d'un traitement.
Consultez toujours votre médecin ou tout autre professionnel de santé qualifié pour toute question relative à une condition médicale ou à un médicament.
Sources des données : DailyMed (NLM), openFDA, MFDS