Clinical medicine profile
Artemether/Lumefantrine
Artemisinin-based combination therapy (ACT)
- Route
- ORAL / PARENTERAL (severe malaria)
- Schedule
- POM
- ATC
- Not assigned
- PPB status
- registered
Safety essentials
The information most likely to change a prescribing or dispensing decision.
Contraindications
- 4 CONTRAINDICATIONS Hypersensitivity Known hypersensitivity to artemether, lumefantrine, or to any of the excipients of Coartem Tablets [see Adverse Reactions (6.2)] .
- Strong CYP3A4 Inducers Coadministration of strong inducers of CYP3A4 such as rifampin, carbamazepine, phenytoin, and St.
- John’s wort with Coartem Tablets can result in decreased concentrations of artemether and/or lumefantrine and loss of antimalarial efficacy [see Warnings and Precautions (5.3), Drug Interactions (7.1), and Clinical Pharmacology (12.3)] .
- Known hypersensitivity to artemether, lumefantrine, or to any of the excipients.
- ( 4 ) Coadministration of strong inducers of CYP3A4 such as rifampin, carbamazepine, phenytoin, and St.
- John’s wort with Coartem Tablets.
- ( 4 , 7.1 , 12.3 )
Precautions
- prolongation, those with hypokalemia or hypomagnesemia, and those taking other drugs that prolong the QT interval.
- ( 5.1 , 12.6 ) Halofantrine and Coartem Tablets should not be administered within one month of each other due to potential additive effects on the QT interval.
- ( 5.1 , 5.2 , 12.3 ) Antimalarials should not be given concomitantly, unless there is no other treatment option, due to limited safety data.
- ( 5.2 ) QT prolonging drugs, including quinine and quinidine, should be used cautiously following Coartem Tablets.
- ( 5.1 , 5.2 , 7.7 , 12.3 ) Substrates, inhibitors, or inducers of CYP3A4, including antiretroviral medications, should be used cautiously with Coartem Tablets, due to a potential loss of efficacy of the concomitant drug or additive QT prolongation.
- ( 5.3 , 7.2 , 7.3 ) 5.1 Prolongation of the QT Interval Some antimalarials (e.g., halofantrine, quinine, quinidine) including Coartem Tablets have been associated with prolongation of the QT interval on the electrocardiogram (ECG).
- Coartem Tablets should be avoided in patients: With congenital prolongation of the QT interval (e.g., long QT syndrome) or any other clinical condition known to prolong the QTc interval such as patients with a history of symptomatic cardiac arrhythmias, with clinically relevant bradycardia or with severe cardiac disease.
- With a family history of congenital prolongation of the QT interval or sudden death.
- With known disturbances of electrolyte balance, e.g., hypokalemia or hypomagnesemia.
- Receiving other medications that prolong the QT interval, such as Class IA (quinidine, procainamide, disopyramide), or Class III (amiodarone, sotalol) antiarrhythmic agents
- antipsychotics (pimozide, ziprasidone)
- antidepressants
Dosing matrix
Population and organ-function guidance, shown together for faster comparison.
food. ( 2.1 , 5.2 ) Tablets may be crushed and mixed with 1 to 2 teaspoons of water immediately prior to administration to patients, including children. ( 2.1 ) Coartem Tablets should be administered over 3 days for a total of 6 doses: an initial dose, second dose after 8 hours, and then twice-daily (morning and evening) for the following 2 days. ( 2.2 , 2.3 ) The adult dosage for patients with bodyweight of 35 kg and above is 4 tablets per dose for a total of 6 doses. ( 2.2 ) The number of tablets per dose for children is determined by bodyweight, as shown in the chart below. ( 2.3 ) Tablets per dose by bodyweight; total of 6 doses over 3 days 5 to < 15 kg 1 tablet 15 to < 25 kg 2 tablets 25 to < 35 kg 3 tablets 35 kg and over 4 tablets 2.1 Administration Instructions Coartem Tablets should be taken with food. Patients with acute malaria are frequently averse to food. Patients should be encouraged to resume normal eating as soon as food can be tolerated since this improves absorption of artemether and lumefantrine. For patients who are unable to swallow the tablets such as infants and children, Coartem Tablets may be crushed and mixed with a small amount of water (1 to 2 teaspoons) in a clean container for administration immediately prior to use. The container can be rinsed with more water and the contents swallowed by the patient. The crushed tablet preparation should be followed whenever possible by food/drink (e.g., milk, formula, pudding, broth, and porridge). In the event of vomiting within 1 to 2 hours after administration, a repeat dose should be taken. If the repeat dose is vomited, the patient should be given an alternative antimalarial for treatment. 2.2 Dosage in Adult Patients (greater than 16 years of age) A 3-day treatment schedule with a total of 6 doses is recommended for adult patients with a bodyweight of 35 kg and above: Four tablets as a single initial dose, 4 tablets again after 8 hours, and then 4 tablets twice-daily (morning and evening) for the following 2 days (total course of 24 tablets). For patients weighing less than 35 kg, [see Dosage and Administration (2.3)] . 2.3 Dosage in Pediatric Patients A 3-day treatment schedule with a total of 6 doses is recommended as below: 5 kg to less than 15 kg bodyweight : One tablet as an initial dose, 1 tablet again after 8 hours, and then 1 tablet twice daily (morning and evening) for the following 2 days (total course of 6 tablets). 15 kg to less than 25 kg bodyweight : Two tablets as an initial dose, 2 tablets again after 8 hours, and then 2 tablets twice daily (morning and evening) for the following 2 days (total course of 12 tablets). 25 kg to less than 35 kg bodyweight : Three tablets as an initial dose, 3 tablets again after 8 hours, and then 3 tablets twice daily (morning and evening) for the following 2 days (total course of 18 tablets). 35 kg bodyweight and above : Four tablets as a single initial dose, 4 tablets again after 8 hours, and then 4 tablets twice daily (morning and evening) for the following 2 days (total course of 24 tablets). 2.4 Dosage in Patients With Hepatic or Renal Impairment No specific pharmacokinetic studies have been carried out in patients with hepatic or renal impairment. Most patients with acute malaria present with some degree of related hepatic and/or renal impairment. In clinical studies, the adverse event profile did not differ in patients with mild or moderate hepatic impairment compared to patients with normal hepatic function. No specific dose adjustments are needed for patients with mild or moderate hepatic impairment. In clinical studies, the adverse event profile did not differ in patients with mild or moderate renal impairment compared to patients with normal renal function. There were few patients with severe renal impairment in clinical studies. There is no significant renal excretion of lumefantrine, artemether, and dihydroartemisinin (DHA) in healthy volunteers and while clinical experience in this population is limited, no dose adjustment is recommended. Caution should be exercised when administering Coartem Tablets in patients with severe hepatic or renal impairment [see Warnings and Precautions (5.6)] .
8.4 Pediatric Use The safety and effectiveness of Coartem Tablets have been established in pediatric patients aged 2 months and older with a bodyweight of 5 kg and above for the treatment of acute, uncomplicated malaria [see Clinical Studies (14.1)] . The safety and effectiveness of Coartem Tablets have not been established in pediatric patients younger than 2 months old or who weigh less than 5 kg. Pediatric patients from non-endemic countries were not included in clinical trials.
No routine adjustment for uncomplicated malaria treatment duration.
- CrCl 0–120: Standard weight-banded 6-dose AL course for uncomplicated malaria.
Caution in severe hepatic impairment; limited data.
Use, effects & interactions
Indications
- acute, uncomplicated malaria infections due to Plasmodium falciparum (P. falciparum) in patients 2 months of age and older with a bodyweight of 5 kg and above.
- Coartem Tablets have been shown to be effective in geographical regions where resistance to chloroquine has been reported [see Clinical Studies (14.1)] .
- Limitations of Use : Coartem Tablets are not approved for patients with severe or complicated P. falciparum malaria.
- Coartem Tablets are not approved for the prevention of malaria.
- Coartem Tablets are a combination of artemether and lumefantrine, both antimalarials, indicated for treatment of acute, uncomplicated malaria infections due to Plasmodium falciparum (P. falciparum) in patients 2 months of age and older with a bodyweight of 5 kg and above.
- ( 1 ) Coartem Tablets have been shown to be effective in geographical regions where resistance to chloroquine has been reported.
- ( 1 ) Limitations of Use: ( 1 ) Coartem Tablets are not approved for patients with severe or complicated P. falciparum malaria .
- Coartem Tablets are not approved for the prevention of malaria.
Adverse effects
- labeling: Hypersensitivity Reactions [see Contraindications (4)] Prolongation of the QT Interval [see Warnings and Precautions (5.1)] Use of QT Prolonging Drugs and Other Antimalarials [see Warnings and Precautions (5.2)] Drug Interactions with CYP3A4 [see Warnings and Precautions (5.3)] Drug Interactions with CYP2D6 [see Warnings and Precautions (5.4)] The most common adverse reactions in adults (greater than 30%) are headache, anorexia, dizziness, asthenia, arthralgia, and myalgia.
- The most common adverse reactions in children (greater than 12%) are pyrexia, cough, vomiting, anorexia, and headache.
- ( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Novartis Pharmaceuticals Corporation at 1-888-669-6682 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch . 6.1 Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rate observed in practice.
- The data described below reflect exposure to a 6-dose regimen of Coartem Tablets in 1979 patients including 647 adults (older than 16 years) and 1332 children (16 years and younger).
- For the 6-dose regimen, Coartem Tablets was studied in active-controlled (366 patients) and noncontrolled, open-label trials (1613 patients).
- The 6-dose Coartem Tablets population was patients with malaria between ages 2 months and 71 years: 67% (1332) were 16 years and younger and 33% (647) were older than 16 years.
- Males represented 73% and 53% of the adult and pediatric populations, respectively.
- The majority of adult patients were enrolled in studies in Thailand, while the majority of pediatric patients were enrolled in Africa.
- Tables 1 and 2 show the most frequently reported adverse reactions (greater than or equal to 3%) in adults and children respectively who received the 6-dose regimen of Coartem Tablets.
- Adverse reactions collected in clinical trials included signs and symptoms at baseline, but only treatment emergent adverse events, defined as events that appeared or worsened after the start of treatment, are presented below.
- In adults, the most frequently reported adverse reactions were headache, anorexia, dizziness, and asthenia.
- In children, the adverse reactions were pyrexia, cough, vomiting, anorexia, and headache.
- Most adverse reactions were mild, did not lead to discontinuation of study medication, and resolved.
- In limited comparative studies, the adverse reaction profile of Coartem Tablets appeared similar to that of another antimalarial regimen.
Drug interactions
Open multi-drug checker ↗- Cornerstone Kenya outpatient falciparum treatment.
- Emphasise fat-containing meal with each dose.
- Fixed-dose/multi-ingredient product.
- Clinical details partially inherited from component monographs: Artemether.
- Confirm combination SmPC for exact dosing.
Mechanism & disposition
12.
Read complete mechanism
12.1 Mechanism of Action Coartem Tablets, a fixed dose combination of artemether and lumefantrine in the ratio of 1:6, is an antimalarial agent [see Microbiology (12.4)] .
Rapid parasite clearance (hours–days)
3-day supervised/self-administered course
ORAL / PARENTERAL (severe malaria)
Following administration of Coartem Tablets to healthy volunteers and patients with malaria, artemether is absorbed with peak plasma concentrations reached about 2 hours after dosing. Absorption of lumefantrine, a highly lipophilic compound, starts after a lag-time of up to 2 hou...
Artemether and lumefantrine are both highly bound to human serum proteins in vitro (95.4% and 99.7%, respectively). Dihydroartemisinin (DHA) is also bound to human serum proteins (47% to 76%). Protein binding to human plasma proteins is linear. Biotransformation In human liver mi...
of artemether was catalyzed predominantly by CYP3A4/5. Dihydroartemisinin (DHA) is an active metabolite of artemether. The metabolism of artemether was also catalyzed to a lesser extent by CYP2B6, CYP2C9 and CYP2C19. In vitro studies with artemether at therapeutic concentrations...
Artemether and DHA are cleared from plasma with an elimination
of about 2 hours. Lumefantrine is eliminated more slowly, with an
Pregnancy, lactation & diet
8.1 Pregnancy Risk Summary Published data from clinical studies and pharmacovigilance data have not established an association with artemether/lumefantrine use during pregnancy and major birth defects, miscarriage, or adverse maternal or fetal outcomes (see Data) . The estimated background risk of major birth defects and miscarriage for the indicated population is unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2% to 4% and 15% to 20%, respectively. Clinical Considerations Disease-Associated Maternal and/or Embryo/Fetal Risk Malaria during and after pregnancy increases the risk for adverse pregnancy and neonatal outcomes, including maternal anemia, severe malaria, spontaneous abortion, stillbirths, preterm delivery, low birth weight, intrauterine growth restriction, congenital malaria, and maternal and neonatal mortality. Data Human Data While available studies cannot definitively establish the absence of risk, a meta-analysis of observational studies including over 500 artemether-lumefantrine exposed women in their first trimester of pregnancy, data from observational, and open label studies including more than 1200 pregnant women in their second- or third trimester exposed to artemether-lumefantrine compared to other antimalarials, and pharmacovigilance data have not demonstrated an increase in major birth defects, miscarriage, or adverse maternal or fetal outcomes. Published epidemiologic studies have important methodological limitations which hinder interpretation of data, including inability to control for confounders, such as underlying maternal disease, and maternal use of concomitant medications and missing information on the dose and duration of use. Animal Data Pregnant rats dosed orally during the period of organogenesis [gestational days (GD) 7 through 17] at 50 mg/kg/day artemether-lumefantrine combination (corresponding to 7 mg/kg/day artemether or higher, a dose of less than half the maximum recommended human dose (MRHD) of 1120 mg artemether-lumefantrine per day (based on body surface area (BSA) comparisons), showed increases in fetal loss, early resorptions, and postimplantation loss. No adverse effects were observed in animals dosed at 25 mg/kg/day artemether-lumefantrine (corresponding to 3.6 mg/kg/day of artemether), about one-third the MRHD (based on BSA comparison). Similarly, oral dosing in pregnant rabbits during organogenesis (GD 7 through GD 19) at 175 mg/kg/day, (corresponding to 25 mg/kg/day artemether) about 3 times the MRHD (based on BSA comparisons) resulted in abortions, preimplantation loss, post implantation loss and decreases in the number of live fetuses. No adverse reproductive effects were detected in rabbits at 105 mg/kg/day artemether-lumefantrine (corresponding to 15 mg/kg/day artemether), about 2 times the MRHD. Artemether and other artemisinins are associated with maternal toxicity and embryotoxicity and malformations in animals at clinically relevant exposures; however, lumefantrine doses as high as 1000 mg/kg/day, showed no evidence to suggest maternal, embryo- or fetotoxicity or teratogenicity in rats and rabbits. The relevance of the findings from the animal reproductive studies to human risk is unclear.
8.1 Pregnancy Risk Summary Published data from clinical studies and pharmacovigilance data have not established an association with artemether/lumefantrine use during pregnancy and major birth defects, miscarriage, or adverse maternal or fetal outcomes (see Data) . The estimated background risk of major birth defects and miscarriage for the indicated population is unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2% to 4% and 15% to 20%, respectively. Clinical Considerations Disease-Associated Maternal and/or Embryo/Fetal Risk Malaria during and after pregnancy increases the risk for adverse pregnancy and neonatal outcomes, including maternal anemia, severe malaria, spontaneous abortion, stillbirths, preterm delivery, low birth weight, intrauterine growth restriction, congenital malaria, and maternal and neonatal mortality. Data Human Data While available studies cannot definitively establish the absence of risk, a meta-analysis of observational studies including over 500 artemether-lumefantrine exposed women in their first trimester of pregnancy, data from observational, and open label studies including more than 1200 pregnant women in their second- or third trimester exposed to artemether-lumefantrine compared to other antimalarials, and pharmacovigilance data have not demonstrated an increase in major birth defects, miscarriage, or adverse maternal or fetal outcomes. Published epidemiologic studies have important methodological limitations which hinder interpretation of data, including inability to control for confounders, such as underlying maternal disease, and maternal use of concomitant medications and missing information on the dose and duration of use. Animal Data Pregnant rats dosed orally during the period of organogenesis [gestational days (GD) 7 through 17] at 50 mg/kg/day artemether-lumefantrine combination (corresponding to 7 mg/kg/day artemether or higher, a dose of less than half the maximum recommended human dose (MRHD) of 1120 mg artemether-lumefantrine per day (based on body surface area (BSA) comparisons), showed increases in fetal loss, early resorptions, and postimplantation loss. No adverse effects were observed in animals dosed at 25 mg/kg/day artemether-lumefantrine (corresponding to 3.6 mg/kg/day of artemether), about one-third the MRHD (based on BSA comparison). Similarly, oral dosing in pregnant rabbits during organogenesis (GD 7 through GD 19) at 175 mg/kg/day, (corresponding to 25 mg/kg/day artemether) about 3 times the MRHD (based on BSA comparisons) resulted in abortions, preimplantation loss, post implantation loss and decreases in the number of live fetuses. No adverse reproductive effects were detected in rabbits at 105 mg/kg/day artemether-lumefantrine (corresponding to 15 mg/kg/day artemether), about 2 times the MRHD. Artemether and other artemisinins are associated with maternal toxicity and embryotoxicity and malformations in animals at clinically relevant exposures; however, lumefantrine doses as high as 1000 mg/kg/day, showed no evidence to suggest maternal, embryo- or fetotoxicity or teratogenicity in rats and rabbits. The relevance of the findings from the animal reproductive studies to human risk is unclear. 8.2 Lactation Risk Summary There are no data on the presence of artemether or lumefantrine in human milk, the effects on the breastfed infant or the effects on milk production. Artemether and lumefantrine are transferred into rat milk. When a drug is transferred into animal milk, it is likely that the drug will also be transferred into human milk. The developmental and health benefits of breastfeeding should be considered along with the mother’s clinical need for Coartem and any potential adverse effects on the breastfed infant from Coartem or from the underlying maternal condition. 8.3 Females and Males of Reproductive Potential Contraception Use of Coartem may reduce the efficacy of hormonal contraceptives. Advise patients using hormonal contraceptives to use an alternative non-hormonal contraceptive method or add a barrier method of contraception during treatment with Coartem [see Drug Interactions (7.5)] . Infertility In animal fertility studies, administration of repeated doses of artemether-lumefantrine combination to female rats (for 2 to 4 weeks) resulted in pregnancy rates that were reduced by one half. In male rats dosed for approximately 3 months with artemether-lumefantrine combination, abnormal sperm cells, decreased sperm motility, and increased testes weight were observed [see Nonclinical Toxicology (13.1)] . 8.4 Pediatric Use The safety and effectiveness of Coartem Tablets have been established in pediatric patients aged 2 months and older with a bodyweight of 5 kg and above for the treatment of acute, uncomplicated malaria [see Clinical Studies (14.1)] . The safety and effectiveness of Coartem Tablets have not been established in pediatric patients younger than 2 months old or who weigh less than 5 kg. Pediatric patients from non-endemic countries were not included in clinical trials. 8.5 Geriatric Use Clinical studies of Coartem Tablets did not include sufficient numbers of subjects aged 65 years and over to determine whether they respond differently from younger subjects. In general, the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy in elderly patients should be considered when prescribing Coartem Tablets. 8.6 Hepatic and Renal Impairment No specific pharmacokinetic studies have been performed in patients with either hepatic or renal impairment. Coartem Tablets have not been studied for efficacy and safety in patients with severe hepatic and/or renal impairment. Based on the pharmacokinetic data in 16 healthy subjects showing no or insignificant renal excretion of lumefantrine, artemether, and DHA, no dose adjustment for the use of Coartem Tablets in patients with renal impairment is advised. No dosage adjustment is necessary in patients with mild-to-moderate hepatic impairment [see Dosage and Administration (2.4) and Warnings and Precautions (5.6)] .
Brands & loaded prices
| Brand | Manufacturer | Pack | Observed price |
|---|---|---|---|
| COARTEM 80/480 | Novartis Pharma Services Inc | Tablet | Unavailable |
| COFANART 20/120 | ZAIN PHARMA LIMITED | Tablet | Unavailable |
| COFANART SUSPENSION | ZAIN PHARMA LIMITED | Oral Suspension | Unavailable |
Sources & review state
Decision support only. Confirm patient-specific decisions against the current product SmPC, Kenya STG/EML, and professional judgement.