Atovaquone and Proguanil Hydrochloride 250 mg; 100 mg Tablet, Film Coated
🆔 Identity & classification
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🏷️ RxNorm drug class
This medicine belongs to the Antimalarial class.
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🏭 Manufacturer & labeler
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🩺 Clinical
- It actually does both, depending on why your doctor prescribed it. If you're traveling to an area where malaria is common, you take it starting a day or two before you leave, every...
- What exactly does this medicine do — does it prevent malaria or treat it?
- Yes, it genuinely matters. One of the two ingredients, atovaquone, is barely absorbed on an empty stomach — fat in food dramatically increases how much gets into your bloodstream,...
- Why do I have to take it with food? Does it really matter?
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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 1K09F3G675
Ferric oxide red is an inorganic iron compound used as a colorant in medicines. It gives tablets, capsules, or other dosage forms a red or reddish tint for identification and appearance.
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A plant-based thickener made from cellulose that helps control how quickly the medicine dissolves and releases its active ingredient. It also binds ingredients together and improves the tablet's texture and handling during manufacturing.
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Magnesium stearate is a salt made from magnesium and stearic acid, a fatty substance. It's used in tablets and capsules as a lubricant and glidant to help ingredients flow smoothly during manufacturing and prevent sticking.
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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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A synthetic polymer made by combining water-soluble compounds. It acts as a surfactant and solubilizer to help mix oil and water-based ingredients, improving the medicine's texture and how active ingredients dissolve.
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Polyethylene glycol 400 is a clear, thick liquid made from petroleum-derived polymers. It acts as a solvent and humectant in medicines, helping dissolve active ingredients and retain moisture in the formulation.
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Polyethylene glycol 8000 is a synthetic polymer made from ethylene oxide. It acts as a binder and filler in tablets and capsules, helping hold ingredients together and add bulk to the medicine.
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Povidone K30 is a synthetic polymer made from petroleum. It acts as a binder to hold tablet ingredients together and as a disintegrant to help the tablet break apart in the stomach so the medicine can be absorbed.
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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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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.
10 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 ea | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | $1.478 | $35.46 / 24 tablets |
| Medicaid paysCMS SDUD · 12 mo | $2.00 | $48.11 / 24 tablets |
| Medicare drug plans payPart D · Q2 2026 | $2.82 | $67.68 / 24 tablets |
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🔁 Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mg 00378-4162-01 | Mylan | 100 tablets | $1.478 | AB | Availability likely | — |
| Atovaquone and Proguanil HCl 250 mg/1; 100 mg 66993-0060-02 | Prasco | 100 tablets | $1.478 | AB | Availability likely | — |
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mgthis 68001-0245-15 | BluePoint | 12 tablets | $1.478 | AB | Availability likely | — |
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mg 68462-0404-01 | Glenmark | 100 tablets | $1.478 | AB | Availability likely | — |
| Malarone 250 mg/1; 100 mg 00173-0675-01 | GlaxoSmithKline | 100 tablets | — | AB | FDA listed | — |
| Atovaquone and Proguanil HCl 250 mg/1; 100 mg 50090-2980-00 | A-S | 7 tablets | — | AB | FDA listed | — |
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mg 51407-0869-01 | Golden | 100 tablets | — | AB | FDA listed | — |
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mg 63187-0879-24 | Proficient | 24 tablets | — | AB | FDA listed | — |
| Atovaquone and Proguanil Hydrochloride 250 mg/1; 100 mg 71335-3160-01 | Bryant | 10 tablets | — | 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.
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🗺️ Medicaid utilization & spend
💊 Medicaid utilization by pack size
📦 Packaging — all sizes for this product
| Package NDC | Description | Per unit | Per pack | Marketing start | Status |
|---|---|---|---|---|---|
| 68001-0245-00 | 100 TABLET, FILM COATED in 1 BOTTLE (68001-245-00) | $1.48 / ea | $147.77 | 2014-03-13 | Active |
| 68001-0245-15 You're viewing this | 2 BLISTER PACK in 1 CARTON (68001-245-15) / 12 TABLET, FILM COATED in 1 BLISTER PACK (68001-245-14) | $1.48 / ea | $35.46 | 2014-03-13 | Active |
This pack effectively ties for the lowest per-ea cost of the 2 priced pack sizes ($1.48 NADAC).
Pack size FAQ
What quantity is in NDC 68001-0245-15?
What NDC number is used to bill for this package of Atovaquone and Proguanil Hydrochloride 250 mg; 100 mg Tablet, Film Coated?
Prices are the latest CMS NADAC pharmacy acquisition cost per NDC; per-pack figures are per-unit × pack quantity, shown only when the pack is denominated in the same measure NADAC prices.
📄 Full prescribing information FDA SPL
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE Atovaquone and proguanil hydrochloride tablets are an antimalarial indicated for: prophylaxis of Plasmodium falciparum (P. falciparum) malaria, including in areas where chloroquine resistance has been reported ( 1.1 ) treatment of acute, uncomplicated P. falciparum malaria ( 1.2 )
1.1Prevention of Malaria Atovaquone and proguanil hydrochloride tablets are indicated for the prophylaxis of Plasmodium falciparum (P. falciparum) malaria, including in areas where chloroquine resistance has been reported.
1.2Treatment of Malaria Atovaquone and proguanil hydrochloride tablets are indicated for the treatment of acute, uncomplicated P. falciparum malaria. Atovaquone and proguanil hydrochloride tablets have been shown to be effective in regions where the drugs chloroquine, halofantrine, mefloquine, and amodiaquine may have unacceptable failure rates, presumably due to drug resistance.
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION The daily dose should be taken at the same time each day with food or a milky drink. In the event of vomiting within 1 hour after dosing, a repeat dose should be taken. Atovaquone and proguanil hydrochloride tablets may be crushed and mixed with condensed milk just prior to administration to patients who may have difficulty swallowing tablets.
Atovaquone and proguanil hydrochloride tablets should be taken with food or a milky drink. Prophylaxis ( 2.1 ): Start prophylaxis 1 or 2 days before entering a malaria-endemic area and continue daily during the stay and for 7 days after return. Adults: One adult strength tablet per day.
Pediatric Patients: Dosage based on body weight (see Table 1) Treatment ( 2.2 ): Adults: Four adult strength tablets as a single daily dose for 3 days. Pediatric Patients: Dosage based on body weight (see Table 2) Renal Impairment ( 2.3 ): Do not use for prophylaxis of malaria in patients with severe renal impairment. Use with caution for treatment of malaria in patients with severe renal impairment.
2.1Prevention of Malaria Start prophylactic treatment with atovaquone and proguanil hydrochloride tablets 1 or 2 days before entering a malaria-endemic area and continue daily during the stay and for 7 days after return. Adults: One atovaquone and proguanil hydrochloride tablet (adult strength = 250 mg atovaquone/100 mg proguanil hydrochloride) per day. Pediatric Patients The dosage for prevention of malaria in pediatric patients is based upon body weight (Table 1) Table 1
2.2Treatment of Acute Malaria Adults: Four atovaquone and proguanil hydrochloride tablets (adult strength; total daily dose 1 g atovaquone/400 mg proguanil hydrochloride) as a single daily dose for 3 consecutive day. Pediatric Patients The dosage for treatment of acute malaria in pediatric patients is based upon body weight (Table 2) Table 2
2.3Renal Impairment Do not use atovaquone and proguanil hydrochloride tablets for malaria prophylaxis in patients with severe renal impairment (creatinine clearance <30 mL/min) [See Contraindications (4)] . Use with caution for the treatment of malaria in patients with severe renal impairment, only if the benefits of the 3 day treatment regimen outweigh the potential risks associated with increased drug exposure. No dosage adjustments are needed in patients with mild (creatinine clearance 50 to 80 mL/min) or moderate (creatinine clearance 30 to 50 mL/min) renal impairment. [See Clinical Pharmacology ( 12.3 ).
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS Each atovaquone and proguanil hydrochloride tablets (adult strength) contains 250 mg atovaquone USP and 100 mg proguanil hydrochloride USP. Atovaquone and proguanil hydrochloride tablets are pinkish brown to brown colored, circular, biconvex beveled edge, film-coated tablets with ‘404’ debossed on one side and ‘G’ debossed on the other side. Tablets (adult strength): 250 mg atovaquone and 100 mg proguanil hydrochloride. ( 3 )
⛔ Contraindications ▾
4 CONTRAINDICATIONS Atovaquone and proguanil hydrochloride is contraindicated in individuals with known hypersensitivity reactions (e.g., anaphylaxis, erythema multiforme or Stevens-Johnson syndrome, angioedema, vasculitis) to atovaquone or proguanil hydrochloride or any component of the formulation Atovaquone and proguanil hydrochloride is contraindicated for prophylaxis of P. falciparum malaria in patients with severe renal impairment (creatinine clearance <30 mL/min) because of pancytopenia in patients with severe renal impairment treated with proguanil [see Use in Specific Populations ( 8.6 ), and Clinical Pharmacology ( 12.3 )] Known serious hypersensitivity reactions to atovaquone or proguanil hydrochloride or any component of the formulation.
( 4 ) Prophylaxis of P. falciparum malaria in patients with severe renal impairment (creatinine clearance <30 mL/min). (4)
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS . Atovaquone absorption may be reduced in patients with diarrhea or vomiting. If used in patients who are vomiting, parasitemia should be closely monitored and the use of an antiemetic considered.
In patients with severe or persistent diarrhea or vomiting, alternative antimalarial therapy may be required. ( 5.1 ) In mixed P. falciparum and Plasmodium vivax (P. vivax) infection, P. vivax relapse occurred commonly when patients were treated with atovaquone and proguanil hydrochloride alone. ( 5.2 ) In the event of recrudescent P. falciparum infections after treatment or prophylaxis failure, patients should be treated with a different blood schizonticide.
( 5.2 ) Elevated liver laboratory tests and cases of hepatitis and hepatic failure requiring liver transplantation have been reported with prophylactic use. ( 5.3 ) Atovaquone and proguanil hydrochloride has not been evaluated for the treatment of cerebral malaria or other severe manifestations of complicated malaria. Patients with severe malaria are not candidates for oral therapy.
( 5.4 )
5.1Vomiting and Diarrhea Absorption of atovaquone may be reduced in patients with diarrhea or vomiting. If atovaquone and proguanil hydrochloride is used in patients who are vomiting, parasitemia should be closely monitored and the use of an antiemetic considered. [See Dosage and Administration ( 2 ).] Vomiting occurred in up to 19% of pediatric patients given treatment doses of atovaquone and proguanil hydrochloride. In the controlled clinical trials, 15.3% of adults received an antiemetic when they received atovaquone/proguanil and 98.3% of these patients were successfully treated.
In patients with severe or persistent diarrhea or vomiting, alternative antimalarial therapy may be required.
5.2Relapse of Infection In mixed P. falciparum and Plasmodium vivax (P. vivax) infections, P. vivax parasite relapse occurred commonly when patients were treated with atovaquone and proguanil hydrochloride alone. In the event of recrudescent P. falciparum infections after treatment with atovaquone and proguanil hydrochloride or failure of chemoprophylaxis with atovaquone and proguanil hydrochloride, patients should be treated with a different blood schizonticide.
5.3Hepatotoxicity Elevated liver laboratory tests and cases of hepatitis and hepatic failure requiring liver transplantation have been reported with prophylactic use of atovaquone and proguanil hydrochloride.
5.4Severe Cutaneous Adverse Reactions Cases of severe cutaneous adverse reactions (SCARs), including Stevens-Johnson syndrome (SJS), drug reaction with eosinophilia and systemic symptoms (DRESS), and erythema multiforme (EM) have been reported in patients treated with atovaquone and proguanil hydrochloride [see Adverse Reactions (6.2)]. SCARs can be life-threatening or fatal. If symptoms or signs of SCARs develop, discontinue atovaquone and proguanil hydrochloride immediately and institute appropriate therapy.
Patients who have developed SCARs with the use of atovaquone and proguanil hydrochloride must not receive atovaquone and proguanil hydrochloride [see Contraindications ( 4 )].
5.5Severe or Complicated Malaria Atovaquone and proguanil hydrochloride has not been evaluated for the treatment of cerebral malaria or other severe manifestations of complicated malaria, including hyperparasitemia, pulmonary edema, or renal failure. Patients with severe malaria are not candidates for oral therapy
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS . Prophylaxis: Common adverse reactions (≥4%) in adults were diarrhea, dreams, oral ulcers, and headache; these events occurred in a similar or lower proportion of subjects receiving atovaquone and proguanil hydrochloride than an active comparator. Common adverse reactions (≥5%) in pediatric patients included abdominal pain, headache, cough, and vomiting.
( 6.1 ) Treatment: Common adverse reactions (≥5%) in adolescents and adults were abdominal pain, nausea, vomiting, headache, diarrhea, asthenia, anorexia, and dizziness. Common adverse reactions (≥6%) in pediatric patients included vomiting, pruritus, and diarrhea. ( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Glenmark Pharmaceuticals Inc., USA at 1 (888)721-7115 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch.
6.1Clinical 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 rates observed in practice. Because atovaquone and proguanil hydrochloride tablets contain atovaquone and proguanil hydrochloride, the type and severity of adverse reactions associated with each of the compounds may be expected. The lower prophylactic doses of atovaquone and proguanil hydrochloride were better tolerated than the higher treatment doses.
Prophylaxis of P. falciparum Malaria: In 3 clinical trials (2 of which were placebo-controlled) 381 adults (mean age 31 years) received atovaquone and proguanil hydrochloride for the prophylaxis of malaria; the majority of adults were black (90%) and 79% were male. In a clinical trial for the prophylaxis of malaria, 125 pediatric patients (mean age 9 years) received atovaquone and proguanil hydrochloride; all subjects were black and 52% were male. Adverse experiences reported in adults and pediatric patients considered attributable to therapy occurred in similar proportions of subjects receiving atovaquone and proguanil hydrochloride or placebo in all studies.
Prophylaxis with atovaquone and proguanil hydrochloride was discontinued prematurely due to a treatment-related adverse experience in 3 of 381 (0.8%) adults and 0 of 125 pediatric patients. In a placebo-controlled study of malaria prophylaxis with atovaquone and proguanil hydrochloride involving 330 pediatric patients (aged 4 to 14 years) in Gabon, a malaria-endemic area, the safety profile of atovaquone and proguanil hydrochloride was consistent with that observed in the earlier prophylactic studies in adults and pediatric patients.
The most common treatment-emergent adverse events with atovaquone and proguanil hydrochloride were abdominal pain (13%), headache (13%), and cough (10%). Abdominal pain (13% vs. 8%) and vomiting (5% vs.
3%) were reported more often with atovaquone and proguanil hydrochloride than with placebo. No patient withdrew from the study due to an adverse experience with atovaquone and proguanil hydrochloride. No routine laboratory data were obtained during this study.
Non-immune travelers visiting a malaria-endemic area received MALARONE (n = 1,004) for prophylaxis of malaria in 2 active-controlled clinical trials. In one study (n = 493), the mean age of subjects was 33 years and 53% were male; 90% of subjects were white, 6% of subjects were black and the remaining were of other racial/ethnic groups. In the other study (n = 511), the mean age of subjects was 36 years and 51% were female; the majority of subjects (97%) were white.
Adverse experiences occurred in a similar or lower proportion of subjects receiving atovaquone and proguanil hydrochloride tablets than an active comparator (Table 3). Fewer neuropsychiatric adverse experiences occurred in subjects who received atovaquone and proguanil hydrochloride tablets than mefloquine. Fewer gastrointestinal adverse experiences occurred in subjects receiving atovaquone and proguanil hydrochloride tablets t…
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Administration with rifampin or rifabutin is known to reduce atovaquone concentrations; concomitant use with atovaquone and proguanil hydrochloride is not recommended. ( 7.1 ) Proguanil may potentiate anticoagulant effect of warfarin and other coumarin-based anticoagulants. Caution advised when initiating or withdrawing atovaquone and proguanil hydrochloride in patients on anticoagulants; coagulation tests should be closely monitored.
( 7.2 ) Tetracycline may reduce atovaquone concentrations; parasitemia should be closely monitored. ( 7.3 )
7.1Rifampin/Rifabutin Concomitant administration of rifampin or rifabutin is known to reduce atovaquone concentrations [see Clinical Pharmacology ( 12.3 )] . The concomitant administration of atovaquone and proguanil hydrochloride and rifampin or rifabutin is not recommended.
7.2Anticoagulants Proguanil may potentiate the anticoagulant effect of warfarin and other coumarin-based anticoagulants. The mechanism of this potential drug interaction has not been established. Caution is advised when initiating or withdrawing malaria prophylaxis or treatment with atovaquone and proguanil hydrochloride in patients on continuous treatment with coumarin-based anticoagulants.
When these products are administered concomitantly, coagulation tests should be closely monitored.
7.3Tetracycline Concomitant treatment with tetracycline has been associated with a reduction in plasma concentrations of atovaquone [see Clinical Pharmacology ( 12.3 )] . Parasitemia should be closely monitored in patients receiving tetracycline.
7.4Metoclopramide While antiemetics may be indicated for patients receiving atovaquone and proguanil hydrochloride, metoclopramide may reduce the bioavailability of atovaquone and should be used only if other antiemetics are not available [see Clinical Pharmacology ( 12.3 )] .
7.5Indinavir Concomitant administration of atovaquone and indinavir did not result in any change in the steady-state AUC and C max of indinavir but resulted in a decrease in the C trough of indinavir [see Clinical Pharmacology ( 12.3 )] . Caution should be exercised when prescribing atovaquone with indinavir due to the decrease in trough concentrations of indinavir
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS Renal impairment: contraindicated for prophylaxis of P. falciparum malaria in patients with severe renal impairment. ( 8.6 )
8.1Pregnancy Risk Summary Available data for published literature and postmarketing experience with the use of atovaquone and proguanil hydrochloride in pregnant women are insufficient to identify a drug-associated risk for major birth defects, miscarriage, or adverse maternal or fetal outcomes. The proguanil component of atovaquone and proguanil hydrochloride tablets acts to inhibit parasitic dihydrofolate reductase; however, pregnant women and females of reproductive potential should continue folate supplementation to prevent neural tube defects [see Clinical Pharmacology ( 12.4 )].
Pregnant women with malaria are at increased risk for adverse pregnancy outcomes (see Clinical Considerations). Atovaquone administered by oral gavage to pregnant rats and rabbits during the period of organogenesis was not associated with fetal malformations at plasma exposures approximately 7 times and equal to, respectively, the estimated human exposure for the treatment of malaria based on AUC. Proguanil administered to pregnant rats and rabbits during the period of organogenesis was not associated with embryo-fetal toxicity at maternally toxic plasma exposures approximately 0.07 and 0.8 times, respectively, the estimated human exposure for treatment of malaria based on AUC (see Data).
The combination of atovaquone and proguanil hydrochloride given orally by gavage during the period of organogenesis was not associated with embryo-fetal developmental effects in pregnant rats or rabbits at atovaquone: proguanil hydrochloride doses of 50:20 mg/kg/day and 100:40 mg/kg/day, respectively (1.7 and 0.1 times and 0.3 and 0.5 times, respectively, the estimated human exposure for treatment of malaria). In a pre-and post-natal study with atovaquone and another pre-and post-natal study with proguanil, neither compound impaired the growth, development, or reproductive ability of first generation offspring at maternal AUC exposures of approximately 7.3 and 0.04 times, respectively, the estimated human AUC exposure for treatment of malaria (see Data).
The estimated background risk of major birth defects and miscarriage for the indicates population in unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S general population, the 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 pregnancy increases the risk for adverse pregnancy outcomes, including maternal anemia, prematurity, spontaneous abortion, and stillbirth. Data Animal Data: Atovaquone: Atovaquone administered in oral doses of 250, 500, and 1,000 mg/kg/day during organogenesis (Gestation Day [GD] 6 to GD15) in pregnant rats did not cause maternal or embryo-fetal toxicity at doses up to 1,000 mg/kg/day corresponding to maternal plasma exposures up to 7.3 times the estimated human exposure for the treatment of malaria based on AUC.
In pregnant rabbits, atovaquone administered in oral doses of 300, 600, and 1,200 mg/kg/day by gavage during organogenesis (GD6 to GD18) was associated with decreased fetal body length at a maternally toxic dose of 1,200 mg/kg/day corresponding to plasmas exposures that were approximately 1.3 times the estimated human exposure during treatment of malaria based on AUC. In a pre- and pot-natal study in rats, atovaquone administered in oral doses of 250, 500 and 1,000 mg/day/day form GD15 until Lactation Day (LD) 20 did not impair the growth or development effects in the first generation offspring at dosed up to 1,000 mg/kg/day corresponding to AUC exposures of approximately 7.3 times the estimated human exposure during treatment of malaria.
Atovaquone crossed the placenta and was present in fetal rat…
🤰 Pregnancy ▾
8.1Pregnancy Risk Summary Available data for published literature and postmarketing experience with the use of atovaquone and proguanil hydrochloride in pregnant women are insufficient to identify a drug-associated risk for major birth defects, miscarriage, or adverse maternal or fetal outcomes. The proguanil component of atovaquone and proguanil hydrochloride tablets acts to inhibit parasitic dihydrofolate reductase; however, pregnant women and females of reproductive potential should continue folate supplementation to prevent neural tube defects [see Clinical Pharmacology ( 12.4 )].
Pregnant women with malaria are at increased risk for adverse pregnancy outcomes (see Clinical Considerations). Atovaquone administered by oral gavage to pregnant rats and rabbits during the period of organogenesis was not associated with fetal malformations at plasma exposures approximately 7 times and equal to, respectively, the estimated human exposure for the treatment of malaria based on AUC. Proguanil administered to pregnant rats and rabbits during the period of organogenesis was not associated with embryo-fetal toxicity at maternally toxic plasma exposures approximately 0.07 and 0.8 times, respectively, the estimated human exposure for treatment of malaria based on AUC (see Data).
The combination of atovaquone and proguanil hydrochloride given orally by gavage during the period of organogenesis was not associated with embryo-fetal developmental effects in pregnant rats or rabbits at atovaquone: proguanil hydrochloride doses of 50:20 mg/kg/day and 100:40 mg/kg/day, respectively (1.7 and 0.1 times and 0.3 and 0.5 times, respectively, the estimated human exposure for treatment of malaria). In a pre-and post-natal study with atovaquone and another pre-and post-natal study with proguanil, neither compound impaired the growth, development, or reproductive ability of first generation offspring at maternal AUC exposures of approximately 7.3 and 0.04 times, respectively, the estimated human AUC exposure for treatment of malaria (see Data).
The estimated background risk of major birth defects and miscarriage for the indicates population in unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S general population, the 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 pregnancy increases the risk for adverse pregnancy outcomes, including maternal anemia, prematurity, spontaneous abortion, and stillbirth. Data Animal Data: Atovaquone: Atovaquone administered in oral doses of 250, 500, and 1,000 mg/kg/day during organogenesis (Gestation Day [GD] 6 to GD15) in pregnant rats did not cause maternal or embryo-fetal toxicity at doses up to 1,000 mg/kg/day corresponding to maternal plasma exposures up to 7.3 times the estimated human exposure for the treatment of malaria based on AUC.
In pregnant rabbits, atovaquone administered in oral doses of 300, 600, and 1,200 mg/kg/day by gavage during organogenesis (GD6 to GD18) was associated with decreased fetal body length at a maternally toxic dose of 1,200 mg/kg/day corresponding to plasmas exposures that were approximately 1.3 times the estimated human exposure during treatment of malaria based on AUC. In a pre- and pot-natal study in rats, atovaquone administered in oral doses of 250, 500 and 1,000 mg/day/day form GD15 until Lactation Day (LD) 20 did not impair the growth or development effects in the first generation offspring at dosed up to 1,000 mg/kg/day corresponding to AUC exposures of approximately 7.3 times the estimated human exposure during treatment of malaria.
Atovaquone crossed the placenta and was present in fetal rat and rabbit tissue. Proguanil: Proguanil administered orally to pregnant rats during organogenesis (GD6 to GD17) was not associated with fetal malformation…
🧒 Pediatric Use ▾
8.4Pediatric Use Prophylaxis of Malaria: Safety and effectiveness have not been established in pediatric patients who weigh less than 11 kg. The efficacy and safety of atovaquone and proguanil hydrochloride have been established for the prophylaxis of malaria in controlled trials involving weighing pediatric patients 11 kg or more [see Clinical Studies ( 14.1 )] . Treatment of Malaria: Safety and effectiveness have not been established in pediatric patients who weigh less than 5 kg.
The efficacy and safety of atovaquone and proguanil hydrochloride for the treatment of malaria have been established in controlled trials involving pediatric patients weighing 5 kg or more [see Clinical Studies ( 14.2 )] .
🧓 Geriatric Use ▾
8.5Geriatric Use Clinical trials of atovaquone and proguanil hydrochloride did not include sufficient numbers of subjects aged 65 years and older to determine whether they respond differently from younger subjects. In general, dose selection for an elderly patient should be cautious, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, the higher systemic exposure to cycloguanil, and the greater frequency of concomitant disease or other drug therapy. [See Clinical Pharmacology ( 12.3 ).]
🆘 Overdosage ▾
10 OVERDOSAGE There is no information on overdoses of atovaquone and proguanil hydrochloride substantially higher than the doses recommended for treatment. There is no known antidote for atovaquone, and it is currently unknown if atovaquone is dialyzable. Overdoses up to 31,500 mg of atovaquone have been reported.
In one such patient who also took an unspecified dose of dapsone, methemoglobinemia occurred. Rash has also been reported after overdose. Overdoses of proguanil hydrochloride as large as 1,500 mg have been followed by complete recovery, and doses as high as 700 mg twice daily have been taken for over 2 weeks without serious toxicity.
Adverse experiences occasionally associated with proguanil hydrochloride doses of 100 to 200 mg/day, such as epigastric discomfort and vomiting would be likely to occur with overdose. There are also reports of reversible hair loss and scaling of the skin on the palms and/or soles, reversible aphthous ulceration, and hematologic side effects.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY .
12.1Mechanism of Action Atovaquone and proguanil hydrochloride tablets, a fixed-dose combination of atovaquone and proguanil hydrochloride, is an antimalarial agent [see Microbiology ( 12.4 )].
12.2Pharmacodynamics Cardiac Effects The effect of atovaquone and proguanil hydrochloride on the QT interval is unknown in humans.
12.3Pharmacokinetics Absorption: Atovaquone is a highly lipophilic compound with low aqueous solubility. The bioavailability of atovaquone shows considerable inter-individual variability. Effect of Food: Atovaquone and proguanil hydrochloride should be taken with food or a milky drink.
Dietary fat taken with atovaquone increases the rate and extend of absorption, increasing AUC 2 to 3 times and Cmax 5 times over fasting. The absolute bioavailability of the tablet formulation of atovaquone when taken with food is 23%. Distribution: Atovaquone is highly protein bound (> 99%) over the concentration range of 1 to 90 mcg/mL.
A population pharmacokinetic analysis demonstrated that the apparent volume of distribution of atovaquone (V/F) in adult and pediatric patients after oral administration is approximately
8.8L/kg. Proguanil is 75% protein bound. A population pharmacokinetic analysis demonstrated that the apparent V/F of proguanil in adult and pediatric patients older than 15 years of age with body weights from 31 to 110 kg ranged from 1,617 to 2,502 L.
In pediatric patients 15 years and younger with body weights from 11 to 56 kg, the V/F of proguanil ranged from 462 to 966 L. In human plasma, the binding of atovaquone and proguanil was unaffected by the presence of the other. Elimination: The elimination half-life of atovaquone is about 2 to 3 days in adult patients.
The elimination half-life of proguanil is 12 to 21 hours in both adult patients and pediatric patients, but may be longer in individuals who are slow metabolizers. The main routes of elimination are hepatic biotransformation and renal excretion. Metabolism: In a study where 14 C-labeled atovaquone was administered to healthy volunteers, greater than 94% of the dose was recovered as unchanged atovaquone in the feces over 21 days.
There was little or no excretion of atovaquone in the urine (less than 0.6%). There is indirect evidence that atovaquone may undergo limited metabolism; however, a specific metabolite has not been identified. Between 40% to 60% of proguanil is excreted by the kidneys.
Proguanil is metabolized to cycloguanil (primarily via cytochrome [CYP2C19]) and 4-chlorophenylbiguanide. Excretion: A population pharmacokinetic analysis in adult and pediatric patients showed that the apparent clearance (CL/F) of both atovaquone and proguanil are related to the body weight. The values CL/F for both atovaquone and proguanil in subjects with body weight ≥11 kg are shown in Table 4.
Table 4. Apparent Clearance for Atovaquone and Proguanil in Patients as a Function of Body Weight Atovaquone Proguanil Body Weight N CL/F (L/hr) Mean ± SD a (range) n CL/F (L/hr) Mean ± SD a (range) 11 to 20 kg 159 1.34 ± 0.63 (0.52 to 4.26) 146 29.5 ± 6.5 (10.3 to 48.3) 21 to 30 kg 117 1.87 ± 0.81 (0.52 to 5.38) 113 40.0 ± 7.5 (15.9 to 62.7) 31 to 40 kg 95 2.76 ± 2.07 (0.97 to 12.5) 91 49.5 ± 8.30 (25.8 to 71.5) >40 kg 368 6.61 ± 3.92 (1.32 to 20.3) 282 67.9 ± 19.9 (14.0 to 145) a SD = standard deviation. The pharmacokinetics of atovaquone and proguanil in patients with body weight below 11 kg have not been adequately characterized.
Specific Populations Pediatrics Patients: The pharmacokinetics of proguanil and cycloguanil are similar in adult patients and pediatric patients. However, the elimination half-life of atovaquone is shorter in pediatric patients (1 to 2 days) than in adult patients (2 to 3 days). In clinical trials, plasma trough concentrations of atovaquone and proguanil in pediatric patients weighing 5 to 40 kg were within the range observed in adults after dosing by body weight.
Geriatrics Patients: In a single-dose stu…
🧬 Mechanism of Action ▾
12.1Mechanism of Action Atovaquone and proguanil hydrochloride tablets, a fixed-dose combination of atovaquone and proguanil hydrochloride, is an antimalarial agent [see Microbiology ( 12.4 )].
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING Atovaquone and proguanil hydrochloride tablets, containing 250 mg atovaquone USP and 100 mg proguanil hydrochloride USP, are pinkish brown to brown colored, circular, biconvex beveled edge, film-coated tablets with ‘404’ debossed on one side and ‘G’ debossed on the other side. Atovaquone and proguanil hydrochloride tablets 250 mg / 100 mg Bottle of 100 tablets (NDC 68001-245-00) Cartons of 24 tablets (NDC 68001-245-15) containing 2 x 12 Unit-Dose Blisters (NDC 68001-245-14). Storage Conditions Store at 25°C (77°F); excursions permitted to 15°C to 30°C (59°F to 86°F) (see USP Controlled Room Temperature).
📋 Description ▾
11 DESCRIPTION Atovaquone and proguanil hydrochloride tablets (adult strength) and Atovaquone and proguanil hydrochloride pediatric tablets, for oral administration, contain a fixed-dose combination of the antimalarial agents atovaquone USP and proguanil hydrochloride USP. The chemical name of atovaquone USP is trans -2-[4-(4-chlorophenyl)cyclohexyl]-3-hydroxy-1,4-naphthalenedione. Atovaquone USP is a yellow crystalline solid that is freely soluble in N-methyl-2-pyrrolidone and in tetrahydrofuran; soluble in chloroform; sparingly soluble in acetone and dimethyl sulfoxide; slightly soluble in octanol, ethyl acetate, polyethylene glycol 200; very slightly soluble in 0.1N sodium hydroxide; insoluble in water.
It has a molecular weight of 366.84 and the molecular formula C 22 H 19 ClO 3 . The compound has the following structural formula: The chemical name of proguanil hydrochloride USP is 1-(4-chlorophenyl)-5-isopropyl-biguanide hydrochloride. Proguanil hydrochloride USP is a white crystalline powder slightly soluble in water, sparingly soluble in alcohol, practically insoluble in methylene chloride.
It has a molecular weight of 290.22 g/mol and the molecular formula C 11 H 16 ClN 5 •HCl. The compound has the following structural formula: Each atovaquone and proguanil hydrochloride tablet (adult strength) contains 250 mg of atovaquone USP and 100 mg of proguanil hydrochloride USP (equivalent to 87.4mg of proguanil). The inactive ingredients are colloidal silicon dioxide, ferric oxide red, hypromellose 2910, low substituted hydroxypropyl cellulose, magnesium stearate, microcrystalline cellulose, poloxamer 188, polyethylene glycol 400, polyethylene glycol 8000, povidone K30, sodium starch glycolate and titanium dioxide.
Atovaquone Chemical Structure Proguanil HCl Chemical Structure
💬 Information for Patients ▾
17 PATIENT COUNSELING INFORMATION Patients should be instructed: to take atovaquone and proguanil hydrochloride tablets at the same time each day with food or a milky drink. to take a repeat dose of atovaquone and proguanil hydrochloride if vomiting occurs within 1 hour after dosing. to take a dose as soon as possible if a dose is missed, then return to their normal dosing schedule. However, if a dose is skipped, the patient should not double the next dose. that rare serious adverse events such as hepatitis, severe skin reactions, neurological, and hematological events have been reported when atovaquone and proguanil hydrochloride was used for the prophylaxis or treatment of malaria. to consult a healthcare professional regarding alternative forms of prophylaxis if prophylaxis with atovaquone and proguanil hydrochloride is prematurely discontinued for any reason. that protective clothing, insect repellents, and bednets are important components of malaria prophylaxis. that no chemoprophylactic regimen is 100% effective; therefore, patients should seek medical attention for any febrile illness that occurs during or after return from a malaria-endemic area and inform their healthcare professional that they may have been exposed to malaria. that falciparum malaria carries a higher risk of death and serious complications in pregnant women than in the general population.
Pregnant women anticipating travel to malarious areas should discuss the risks and benefits of such travel with their physicians. Manufactured By: Glenmark Pharmaceuticals Ltd Colvale-Bardez, Goa 403 513, India For BluePoint Laboratories Questions? 1 (888)721-7115 July 2026