Allopurinol

Manufacturer
ST. MARY'S MEDICAL PARK PHARMACY
Effective date
2025-11-05
Label type
HUMAN PRESCRIPTION DRUG LABEL
Version
1
Source
full-release
Hydrated at
2026-05-31 22:04:20

Label at a glance#

ProductAllopurinol
Active ingredientALLOPURINOL
Label structure15 sections

Indications and uses

Allopurinol tablets are indicated for: The management of adults with signs and symptoms of primary or secondary gout (acute attacks, tophi, joint destruction, uric acid lithiasis, and/or nephropathy) The management of adult and pediatric patients with leukemia, lymphoma and solid tumor malignancies who are receiving cancer therapy which causes elevations of serum and urinary uric acid levels The management of adul...

Dosage and administration

Prior to initiating treatment with allopurinol tablets in patients with gout, assess the following baseline tests: serum uric acid level, complete blood count, chemistry panel, liver function tests (serum alanine aminotransferase [ALT], aspartate aminotransferase [AST], alkaline phosphatase, and total bilirubin), kidney function tests (serum creatinine and eGFR). Gout flares may occur after initiation of allopurin...

Storage and handling

How Supplied Allopurinol tablets, USP 100 mg are White to off-white colored, flat faced beveled edged, functionally scored, round tablet, debossed on the scored side with “0” above the score and “21” below the score and debossed on the non-scored side with “100”. NDC 60760-710-90 BOTLES OF 90 Storage and Handling Store at 20° to 25°C (USP Controlled Room Temperature) (68° to 77°F) in a dry place and protect from l...

Label contents#

Full prescribing information#

1 INDICATIONS AND USAGE

INDICATIONS & USAGE SECTION

Allopurinol tablets are indicated for:

  • The management of adults with signs and symptoms of primary or secondary gout (acute attacks, tophi, joint destruction, uric acid lithiasis, and/or nephropathy)
  • The management of adult and pediatric patients with leukemia, lymphoma and solid tumor malignancies who are receiving cancer therapy which causes elevations of serum and urinary uric acid levels
  • The management of adult patients with recurrent calcium oxalate calculi whose daily uric acid excretion exceeds 800 mg/day in male patients and 750 mg/day in female patients, despite lifestyle changes (such as reduction of dietary sodium, non-dairy animal protein, oxylate rich foods, refined sugars and increases in oral fluids and fruits and vegetables)

Limitations of Use

Allopurinol tablets are not recommended for the treatment of asymptomatic hyperuricemia.

2 DOSAGE AND ADMINISTRATION

DOSAGE & ADMINISTRATION SECTION

3 DOSAGE FORMS AND STRENGTHS

DOSAGE FORMS & STRENGTHS SECTION

Allopurinol tablets, USP 100 mg, 200 mg and 300 mg have functional scoring and are available in the following strengths:

  • 100 mg: White to off-white colored, flat faced beveled edged, functionally scored, round tablet, debossed on the scored side with “0” above the score and “21” below the score and debossed on the non-scored side with “100”.
  • 200 mg: White to off white colored, biconvex, functionally scored, round tablet, debossed on the scored side with “B” on one side of score, “1” on another side of score and plain on the non-scored side.
  • 300 mg: Peach colored, flat faced beveled edged, functionally scored, round tablet, debossed on the scored side with “300” above the score and “020” below the score and plain on the non-scored side.

4 CONTRAINDICATIONS

CONTRAINDICATIONS SECTION

Allopurinol tablets are contraindicated in patients with a history of hypersensitivity reaction to allopurinol or to any of the ingredients of allopurinol tablets.

5 WARNINGS AND PRECAUTIONS

WARNINGS AND PRECAUTIONS SECTION

5.1 Skin Rash and Hypersensitivity

WARNINGS AND PRECAUTIONS SECTION

Serious and sometimes fatal dermatologic reactions, including toxic epidermal necrolysis (TEN), Stevens-Johnson syndrome (SJS), and drug reaction with eosinophilia and systemic symptoms (DRESS) have been reported in patients taking allopurinol [see Adverse Reactions (6) ]. These reactions occur in approximately 5 in 10,000 (0.05%) patients taking allopurinol. Other serious hypersensitivity reactions that have been reported include exfoliative, urticarial and purpuric lesions, generalized vasculitis, and irreversible hepatotoxicity. Discontinue allopurinol tablets permanently at the first appearance of skin rash or other signs which may indicate a hypersensitivity reaction.

The HLA-B*58:01 allele is a genetic marker for severe skin reactions indicative of hypersensitivity to allopurinol. Patients who carry the HLA-B*58:01 allele are at a higher risk of allopurinol hypersensitivity syndrome (AHS), but hypersensitivity reactions have been reported in patients who do not carry this allele. The frequency of this allele is higher in individuals of African, Asian (e.g., Han Chinese, Korean, Thai), and Native Hawaiian/Pacific Islander ancestry [see Clinical Pharmacology (12.5) ]. The use of allopurinol tablets is not recommended in HLA- B*58:01 positive patients unless the benefits clearly outweigh the risks.

Consider screening for HLA-B*5801 before starting treatment with allopurinol tablets in patients from populations in which the prevalence of this HLA-B*5801 allele is known to be high. Screening is generally not recommended in patients from populations in which the prevalence of HLA-B*58:01 is low, or in current allopurinol users, as the risk of SJS/TEN/DRESS is largely confined to the first few months of therapy, regardless of HLA- B*58:01 status.

Hypersensitivity reactions to allopurinol tablets may be increased in patients with decreased kidney function receiving thiazide diuretics and allopurinol tablets concurrently. Concomitant use of the following drugs may also increase the risk of skin rash, which may be severe: bendamustine, ampicillin and amoxicillin [see Drug Interactions (7.1) ].

Discontinue allopurinol tablets immediately if a skin rash develops. Instruct patients to stop taking allopurinol tablets immediately and seek medical attention promptly if they develop a rash.

5.2 Gout Flares

WARNINGS AND PRECAUTIONS SECTION

Gout flares have been reported during initiation of treatment with allopurinol tablets, even when normal or subnormal serum uric acid levels have been attained due to the mobilization of urates from tissue deposits. Even with adequate therapy with allopurinol tablets, it may require several months to deplete the uric acid pool sufficiently to achieve control of the flares. The flares typically become shorter and less severe after several months of therapy.

In order to prevent gout flares when treatment with allopurinol tablets is initiated, concurrent prophylactic treatment with colchicine or an anti-inflammatory agent is recommended [see Dosage and Administration (2.2) ]. Advise patients to continue allopurinol tablets and prophylactic treatment even if gout flares occur, as it may take months to achieve control of gout flares.

5.3 Nephrotoxicity

WARNINGS AND PRECAUTIONS SECTION

Treatment with allopurinol tablets may result in acute kidney injury due to formation of xanthine calculi or due to precipitation of urates in patients receiving concomitant uricosuric agents. Patients with pre-existing kidney disease, including chronic kidney disease or history of kidney stones, may be at increased risk for worsening of kidney function or acute kidney injury due to xanthine calculi while receiving treatment with allopurinol tablets.

In patients receiving allopurinol tablets for the management of gout or the management of recurrent calcium oxalate calculi, monitor kidney function frequently during the early stages of allopurinol administration. Maintain fluid intake sufficient to yield a urinary output of at least 2 liters per day of neutral or, preferably, slightly alkaline urine to avoid the possibility of formation of xanthine calculi and help prevent renal precipitation of urates in patients receiving concomitant uricosuric agents.

In patients receiving allopurinol tablets for the management of tumor lysis syndrome, monitor kidney function at least daily during the early stages of allopurinol administration. Maintain fluid intake sufficient to yield a urinary output of at least 2 liters per day in adults and at least 2 liters/m 2/day (or at least 100 mL/m 2/hour) in pediatric patients [see Dosage and Administration (2.4) ].

5.4 Hepatotoxicity

WARNINGS AND PRECAUTIONS SECTION

Cases of reversible clinical hepatotoxicity have occurred in patients taking allopurinol tablets, and in some patients, asymptomatic rises in serum alkaline phosphatase or serum transaminase have been observed. If anorexia, weight loss, or pruritus develop in patients on allopurinol tablets, evaluate liver enzymes. In patients with pre-existing liver disease, monitor liver enzymes periodically. Discontinue allopurinol tablets in patients with elevated liver enzymes.

5.5 Myelosuppression

WARNINGS AND PRECAUTIONS SECTION

Myelosuppression, manifested by anemia, leukopenia or thrombocytopenia, has been reported in patients receiving allopurinol tablets. The cytopenias have occurred as early as 6 weeks up to 6 years after the initiation of therapy of allopurinol tablets. Concomitant use of allopurinol tablets with cytotoxic drugs associated with myelosuppression may increase the risk of myelosuppression. Monitor blood counts more frequently when cytotoxic drugs are used concomitantly [see Drug Interactions (7.2) ].

Concomitant use with allopurinol increases the exposure of either mercaptopurine or azathioprine which may increase the risk of myelosuppression. Reduce the dosage of mercaptopurine or azathioprine as recommended in their respective prescribing information when used concomitantly with allopurinol tablets [see Drug Interactions (7.2) ].

5.6 Potential Effect on Driving and Use of Machinery

WARNINGS AND PRECAUTIONS SECTION

Drowsiness, somnolence and dizziness have been reported in patients taking allopurinol tablets [see Adverse Reactions (6) ]. Inform patients also that the central nervous system depressant effects of allopurinol tablets may be additive to those of alcohol and other CNS depressants.

Advise patients to avoid operation of automobiles or other dangerous machinery and activities made hazardous by decreased alertness when starting allopurinol tablets or increasing the dose, until they know how the drug affects them.

6 ADVERSE REACTIONS

ADVERSE REACTIONS SECTION

The following clinically significant adverse reactions are described elsewhere in the labeling:

The following adverse reactions associated with the use of allopurinol tablets were identified in literature, unpublished clinical trials or post marketing reports. Because some of these reactions were reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. The most frequent adverse reaction to allopurinol tablets is skin rash.

Most Common Adverse Reactions (≥ 1%)

Gastrointestinal: Diarrhea, nausea, alkaline phosphatase increase, AST/ALT increase.

Metabolic and Nutritional: Acute attacks of gout.

Skin and Appendages: Rash, maculopapular rash.

Less Common Adverse Reactions(< 1%)

Body As a Whole: Ecchymosis, fever, headache, malaise.

Cardiovascular: Necrotizing angiitis, vasculitis, pericarditis, peripheral vascular disease, thrombophlebitis, bradycardia, vasodilation.

Gastrointestinal: Hepatic necrosis, granulomatous hepatitis, hepatomegaly, hyperbilirubinemia, cholestatic jaundice, vomiting, intermittent abdominal pain, gastritis, dyspepsia, hemorrhagic pancreatitis, gastrointestinal bleeding, stomatitis, salivary gland swelling, hyperlipidemia, tongue edema, anorexia.

Hemic and Lymphatic:Thrombocytopenia, eosinophilia, leukocytosis, leukopenia, aplastic anemia, agranulocytosis, eosinophilic fibrohistiocytic lesion of bone marrow, pancytopenia, prothrombin decrease, anemia, hemolytic anemia, reticulocytosis, lymphadenopathy, lymphocytosis.

Musculoskeletal:Myopathy, arthralgias, myalgia.

Nervous:Peripheral neuropathy, neuritis, paresthesia, somnolence, optic neuritis, confusion, dizziness, vertigo, foot drop, decrease in libido, depression, amnesia, tinnitus, asthenia, insomnia.

Respiratory:Epistaxis, bronchospasm, asthma, pharyngitis, rhinitis.

Skin and Appendages: Erythema multiforme exudativum (Stevens-Johnson syndrome), toxic epidermal necrolysis (Lyell's syndrome), hypersensitivity vasculitis, purpura, vesicular bullous dermatitis, exfoliative dermatitis, eczematoid dermatitis, pruritus, urticaria, alopecia, onycholysis, lichen planus, furunculosis, facial edema, sweating, skin edema.

Special Senses: Taste loss/perversion, cataracts, macular retinitis, iritis, conjunctivitis, amblyopia.

Urogenital:Renal failure, uremia, nephritis, impotence, primary hematuria, albuminuria.

Endocrine:Infertility (male), hypercalcemia, gynecomastia (male).

7 DRUG INTERACTIONS

DRUG INTERACTIONS SECTION

7.1 Drugs Known to Affect the Occurrence of Skin Rash and Hypersensitivity

DRUG INTERACTIONS SECTION

Concomitant use of the following drugs may increase the risk of skin rash, which may be severe: bendamustine, thiazide diuretics, ampicillin and amoxicillin. Renal impairment may further increase risk with concomitant use of thiazide diuretics [see Warnings and Precautions (5.1,5.2)and Clinical Pharmacology (12.2) ].

Monitor kidney function and reduce the dose of allopurinol tablets in patients with concomitant thiazide diuretic use and impaired renal function [see Dosage and Administration (2.6),Warnings and Precautions (5.1) ].

Discontinue allopurinol tablets at the first appearance of skin rash or other signs which may indicate a hypersensitivity reaction when use concomitantly with these drugs [see Warnings and Precautions (5.1)] .

7.2 Drugs Known to Have Clinically Important Drug Interactions with Allopurinol Tablets

DRUG INTERACTIONS SECTION

Table 3: Interventions for Clinically Important Drug Interactions withAllopurinol Tablets

Capecitabine

Clinical Impact

Concomitant use with allopurinol may decrease concentration of capecitabine’s active metabolites, which may decrease capecitabine efficacy.

Intervention

Avoid the use of allopurinol tablets during treatment with capecitabine

Chlorpropamide

Clinical Impact

Allopurinol tablets prolongs the half-life of chlorpropamide as both compete for renal tubular excretion. In patients with renal insufficiency, the risk of hypoglycemia may be increased due to this mechanism.

Intervention

Monitor patients with renal insufficiency for hypoglycemia when administering chlorpropamide and allopurinol tablets concomitantly.

Cyclosporine

Clinical Impact

Concomitant use of allopurinol increases cyclosporine concentrations, which may increase the risk of adverse reactions.

Intervention

Increase frequency of monitoring cyclosporine concentrations as reflected in its prescribing information and modify the dosage of cyclosporine as appropriate when used concomitantly with allopurinol tablets.

Cyclophosphamide and Other Cytotoxic Agents

Clinical Impact

Concomitant use of allopurinol with cyclophosphamide and other cytotoxic agents (doxorubicin, bleomycin, procarbazine, mechloroethamine) increases bone marrow suppression among patients with neoplastic disease, except leukemia.

Intervention

Blood count monitoring and regular physician follow-up are recommended.

Dicumarol

Clinical Impact

Allopurinol tablets prolongs the half-life of the anticoagulant, dicumarol. The mechanism of this drug interaction has not been established but should be noted when allopurinol tablets is given to patients already on dicumarol therapy.

Intervention

Monitor prothrombin time. Adjust the dosage of dicumarol accordingly when allopurinol tablets are added to anticoagulant therapy.

Fluorouracil

Clinical Impact

Based on non-clinical data, allopurinol may decrease anti-tumor activity due to suppression of phosphorylation of 5-fluorouracil.

Intervention

Concomitant administration with fluorouracil should be avoided.

Mercaptopurine or Azathioprine

Clinical Impact

Allopurinol inhibits xanthine oxidase mediated metabolism of mercaptopurine and azathioprine. Concomitant use of allopurinol increases the exposure of either mercaptopurine or azathioprine which may increase the risk of their adverse reactions, including myelosuppression [see Warnings and Precautions 5.5 ].

Intervention

In patients receiving mercaptopurine or azathioprine, the concomitant administration of 300 mg to 600 mg of allopurinol tablets per day will require a reduction in dose to approximately one third to one fourth of the usual dose of mercaptopurine or azathioprine. Subsequent adjustment of doses of mercaptopurine or azathioprine should be made on the basis of therapeutic response and the appearance of toxic effects.

Pegloticase

Clinical Impact

Concomitant use of allopurinol tablets and pegloticase may potentially blunt the rise of serum uric acid levels and increase the risk of pegloticase related anaphylaxis in patients whose uric acid level increase to above 6 mg/dL.

Intervention

Discontinue and do not institute allopurinol tablets therapy during treatment with pegloticase.

Theophylline

Clinical Impact

Concomitant use of allopurinol doses greater than or equal to 600 mg/day may decrease the clearance of theophylline

Intervention

Monitor and adjust theophylline doses as reflected in the prescribing information.

Uricosuric Drugs

Clinical Impact

Uricosuric agents increase the excretion of the active allopurinol metabolite oxypurinol. Concomitant use with uricosuric agents decreases oxypurinol exposure which may reduce the inhibition of xanthine oxidase by oxypurinol and increases the urinary excretion of uric acid.

The net effect of such combined therapy may be useful in some patients in achieving minimum serum uric acid levels provided the total urinary uric acid load does not exceed the competence of the patient's kidney function.

Intervention

Monitor uric acid levels due to the increased chance of hypouricemic effects.

Warfarin

Clinical Impact

Allopurinol may inhibit the metabolism of warfarin, possibly enhancing its anticoagulant effect.

Intervention

Monitor patients on concomitant therapy for excessive anticoagulation. Assess INR frequently and adjust warfarin dosage accordingly when allopurinol is added to warfarin therapy.

8 USE IN SPECIFIC POPULATIONS

USE IN SPECIFIC POPULATIONS SECTION

8.1 Pregnancy

PREGNANCY SECTION

Risk Summary

Based on findings in animals, allopurinol tablets may cause fetal harm when administered to a pregnant woman. Adverse developmental outcomes have been described in exposed animals (see Data). Allopurinol and its metabolite oxypurinol have been shown to cross the placenta following administration of maternal allopurinol.

Available limited published data on allopurinol use in pregnant women do not demonstrate a clear pattern or increase in frequency of adverse developmental outcomes. Among approximately 50 pregnancies described in published literature, 2 infants with major congenital malformations have been reported with following maternal allopurinol exposure. Advise pregnant women of the potential risk to a fetus.

All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. The background risk of major birth defects and miscarriage for the indicated population is unknown.

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.

Data

Human Data

Experience with allopurinol tablets during human pregnancy has been limited partly because women of reproductive age rarely require treatment with allopurinol tablets. A case report published in 2011 described the outcome of a full-term pregnancy in a 35-year-old woman who had recurrent kidney stones since age 18 who took allopurinol throughout the pregnancy. The child had multiple complex birth defects and died at 8 days of life. A second report in 2013 provided data on 31 prospectively ascertained pregnancies involving mothers exposed to allopurinol for varying durations during the first trimester. The overall rate of major fetal malformations and spontaneous abortions was reported to be within the normal expected range; however, one child had severe malformations similar to those described in the cited earlier case report.

Animal Data

There was no evidence of fetotoxicity or teratogenicity in rats or rabbits treated during the period of organogenesis with oral allopurinol at doses up to 200 mg/kg/day and up to 100 mg/kg/day, respectively (about 2.4 times the human dose on a mg/m 2basis). However, there is a published report in pregnant mice that single intraperitoneal doses of 50 mg/kg or 100 mg/kg (about 0.3 or 0.6 times the human dose on a mg/m 2basis) of allopurinol on gestation days 10 or 13 produced significant increases in fetal deaths and teratogenic effects (cleft palate, harelip, and digital defects). It is uncertain whether these findings represented a fetal effect or an effect secondary to maternal toxicity.

8.2 Lactation

LACTATION SECTION

Risk Summary

Allopurinol and oxypurinol are present in human milk. Based on information from a single case report, allopurinol and its active metabolite, oxypurinol, were detected in the milk of a mother receiving 300 mg of allopurinol daily at 5 weeks postpartum. The estimated relative infant dose were 0.14 mg/kg and 0.2 mg/kg of allopurinol and between 7.2 mg/kg to 8 mg/kg of oxypurinol daily. There was no report of effects of allopurinol on the breastfed infant or on milk production. Because of the potential for serious adverse reactions in a breastfed child, advise women not to breastfeed during treatments with allopurinol tablets and for one week after the last dose.

8.4 Pediatric Use

PEDIATRIC USE SECTION

Hyperuricemia Associated with Cancer Therapy

The safety and effectiveness of allopurinol for the management of pediatric patients with leukemia, lymphoma and solid tumor malignancies who are receiving cancer therapy which causes elevations of serum and urinary uric acid levels have been established in approximately 200 pediatric patients. The efficacy and safety profile observed in this patient population were similar to that observed in adults.

Primary or Secondary Gout

The safety and effectiveness of allopurinol tablets have not been established for the treatment of signs and symptoms of primary or secondary gout in pediatric patients.

Recurrent Calcium Oxalate Calculi

The safety and effectiveness of allopurinol tablets have not been established for the management of pediatric patients with recurrent calcium oxalate calculi.

Inborn Errors of Metabolism

The safety and effectiveness of allopurinol tablets have not been established in pediatric patients with rare inborn errors of purine metabolism.

8.6 Renal Impairment

RENAL IMPAIRMENT SUBSECTION

Allopurinol tablets and its primary active metabolite, oxipurinol, are eliminated by the kidneys; therefore, changes in renal function have a profound effect on exposure. In patients with decreased renal function or who have concurrent illnesses which can affect renal function, perform periodic laboratory parameters of renal function and reassess the patient's dosage of allopurinol tablets [see Dosage and Administration (2.6), Warnings and Precautions (5.3)].

10 OVERDOSAGE

OVERDOSAGE SECTION

In the management of overdosage there is no specific antidote for allopurinol tablets. Both allopurinol tablets and oxipurinol are dialyzable; however, the usefulness of hemodialysis or peritoneal dialysis in the management of an overdose of allopurinol tablets is unknown.

11 DESCRIPTION

DESCRIPTION SECTION

Allopurinol is a xanthine oxidase inhibitor. It has the following structural formula:

Allopurinol structure 1Allopurinol structure 1

Allopurinol is known chemically as 1, 5-dihydro-4 H-pyrazolo [3, 4-d]pyrimidin-4-one. and it has a molecular weight of 136.11 g/mol. Its solubility in water at 37°C is 80.0 mg/dL and is greater in an alkaline solution. It is a xanthine oxidase inhibitor which is administered orally.

Each scored white to off white round tablet contains 100 mg allopurinol and the inactive ingredients crospovidone, colloidal silicon dioxide, lactose monohydrate, magnesium stearate, pregelatinized starch, and povidone.  

Each scored white to off white round tablet contains 200 mg allopurinol and the inactive ingredients crospovidone, colloidal silicon dioxide, lactose monohydrate, magnesium stearate, pregelatinized starch, and povidone.

Each scored peach round tablet contains 300 mg allopurinol and the inactive ingredients crospovidone, colloidal silicon dioxide, FD&C Yellow No. 6 Lake, lactose monohydrate, magnesium stearate, pregelatinized starch and povidone.

12 CLINICAL PHARMACOLOGY

CLINICAL PHARMACOLOGY SECTION

12.1 Mechanism of Action

MECHANISM OF ACTION SECTION

Allopurinol is a structural analogue of the natural purine base, hypoxanthine.

Allopurinol acts on purine catabolism, without disrupting the biosynthesis of purines. It reduces the production of uric acid by inhibiting the biochemical reactions immediately preceding its formation. It is an inhibitor of xanthine oxidase, the enzyme responsible for the conversion of hypoxanthine to xanthine and of xanthine to uric acid, the end product of purine metabolism in human. Allopurinol is metabolized to the corresponding xanthine analogue, oxypurinol (alloxanthine), which also is an inhibitor of xanthine oxidase.

12.2 Pharmacodynamics

PHARMACODYNAMICS SECTION

Allopurinol reduces the production of uric acid by inhibiting the biochemical reactions immediately preceding its formation in a dose dependent manner. The pharmacological action of allopurinol is generally believed to be mediated by its oxypurinol metabolite.

Effect on Hypoxanthine and Xanthine

Reutilization of both hypoxanthine and xanthine for nucleotide and nucleic acid synthesis is markedly enhanced when their oxidations are inhibited by allopurinol and oxipurinol. This reutilization does not disrupt normal nucleic acid anabolism, however, because feedback inhibition is an integral part of purine biosynthesis. As a result of xanthine oxidase inhibition, the serum concentration of hypoxanthine plus xanthine in patients receiving allopurinol for treatment of hyperuricemia is usually in the range of 0.3 mg/dL to 0.4 mg/dL compared to a normal level of approximately 0.15 mg/dL. A maximum of 0.9 mg/dL of these oxypurines has been reported when the serum urate was lowered to less than 2 mg/dL by high doses of allopurinol. These values are far below the saturation levels at which point their precipitation would be expected to occur (above 7 mg/dL). The increased xanthine and hypoxanthine in the urine in patients who were treated with oral allopurinol have not been accompanied by problems of nephrolithiasis; however, there are isolated case reports of xanthine crystalluria.

Drug Interaction Studies

Fluorouracil:Based on non-clinical data, allopurinol may decrease anti-tumor activity due to suppression of phosphorylation of 5-fluorouracil.

Pegloticase: Concomitant use of allopurinol and pegloticase may potentially blunt the rise of serum uric acid levels required for monitoring the safe use of pegloticase.

Cytotoxic Agents: Enhanced bone marrow suppression by cyclophosphamide and other cytotoxic agents has been reported among patients with neoplastic disease, except leukemia, in the presence of allopurinol.

Thiazide Diuretics: Reports that the concomitant administration of allopurinol and thiazide diuretics contributed to increased allopurinol toxicity were reviewed; however, a causal mechanism or cause-and-effect relationship was not found.

12.3 Pharmacokinetics

PHARMACOKINETICS SECTION

Absorption

Allopurinol is approximately 90% absorbed from the gastrointestinal tract. Peak plasma levels generally occur at 1.5 hours and 4.5 hours for allopurinol and oxipurinol respectively. After a single oral dose of 300 mg allopurinol, maximum plasma levels of about 3 mcg/mL of allopurinol and 6.5 mcg/mL of oxipurinol are produced.

Elimination

The half-life of allopurinol and oxipurinol are approximately 1 hour to 2 hours and 15 hours following oral dose of allopurinol, respectively.

Metabolism

Allopurinol is metabolized to the corresponding xanthine analogue, oxypurinol (alloxanthine), which also is an inhibitor of xanthine oxidase.

Excretion

Allopurinol and its primary active metabolite, oxipurinol, are eliminated by the kidneys. Approximately 20% of the ingested allopurinol is excreted in the feces. Oxipurinol is primarily eliminated unchanged in urine by glomerular filtration and tubular reabsorption.

Drug Interaction Studies

Capecitabine :Concomitant use with allopurinol may decrease concentration of capecitabine’s active metabolites, which may decrease capecitabine efficacy.

Cyclosporine :Concomitant use of allopurinol increases cyclosporine concentrations which may increase the risk of adverse reactions.

Mercaptopurine or Azathioprine:Allopurinol inhibits xanthine oxidase mediated metabolism of mercaptopurine and azathioprine. Concomitant use of allopurinol increases the exposure of either mercaptopurine or azathioprine which may increase the risk of their adverse reactions including myelosuppression.

Theophylline:Concomitant use of allopurinol doses greater than or equal to 600 mg/day may decrease the clearance of theophylline.

Uricosuric Agents:Uricosuric agents increase the excretion of the active allopurinol metabolite oxypurinol. Concomitant use with uricosuric agents decreases oxypurinol exposure which may reduce the inhibition of xanthine oxidase by oxypurinol and increases the urinary excretion of uric acid.

Warfarin:Allopurinol may inhibit the metabolism of warfarin, possibly enhancing its anticoagulant effect.

12.5 Pharmacogenomics

PHARMACOGENOMICS SECTION

HLA-B*5801 allele

The HLA-B*5801 allele is a genetic marker that has shown to be associated with risk of developing allopurinol related hypersensitivity syndrome (DRESS) and SJS/TEN. The frequency of the HLA-B*58:01 allele ranges from 8 to 10% in Han Chinese populations, about 8% in Thai populations, and about 6% in Korean populations based upon published literature and available databases. The frequency of the HLA-B*58:01 allele is about 4% in Blacks, about 1 % to 2 % in indigenous peoples of the Americas and Hispanic populations, and < 1% in people from European descent and Japanese.

Stevens-Johnson syndrome (SJS)/Toxic epidermal necrolysis (TEN) can still occur in patients who are found to be negative for HLA-B*5801 irrespective of ethnic origin.

13 NONCLINICAL TOXICOLOGY

NONCLINICAL TOXICOLOGY SECTION

13.1 Carcinogenesis, Mutagenesis, Impairment of Fertility

CARCINOGENESIS & MUTAGENESIS & IMPAIRMENT OF FERTILITY SECTION

No evidence of tumorigenicity was observed in male or female mice or rats that received oral allopurinol for the majority of their life spans (greater than 88 weeks) at doses up to 20 mg/kg/day (0.1 and 0.2 times the MRHD on a mg/m 2basis in mice and rats, respectively).

Allopurinol tested negative in the following genotoxicity assays: the in vitro Ames assay, in vitro mouse lymphoma assay, and in vivo rat bone marrow micronucleus assay. Allopurinol administered intravenously to rats (50 mg/kg) was not incorporated into rapidly replicating intestinal DNA. No evidence of clastogenicity was observed in lymphocytes taken from patients treated with allopurinol (mean duration of treatment 40 months), or in an in vitro assay with human lymphocytes.

Allopurinol oral doses of 20 mg/kg/day had no effect on male or female fertility in rats or rabbits (approximately 0.2 or 0.5 times the MRHD on a mg/m 2basis, respectively).

16 HOW SUPPLIED/STORAGE AND HANDLING

HOW SUPPLIED SECTION

How Supplied

Allopurinol tablets, USP 100 mg are White to off-white colored, flat faced beveled edged, functionally scored, round tablet, debossed on the scored side with “0” above the score and “21” below the score and debossed on the non-scored side with “100”.

NDC 60760-710-90 BOTLES OF 90

Storage and Handling

Store at 20° to 25°C (USP Controlled Room Temperature) (68° to 77°F) in a dry place and protect from light.

Dispense in a tight, light-resistant container as defined in the USP.

17 PATIENT COUNSELING INFORMATION

PATIENT COUNSELING INFORMATION

Administration

Advise patients to take allopurinol tablets after meals to minimize gastric irritation. If a single dose of allopurinol tablets is occasionally forgotten, there is no need to double the dose at the next scheduled time.

Skin Rash and Hypersensitivity

Inform patients that allopurinol tablets may increase the risk of serious and sometimes fatal dermatologic reactions. Instruct patients to discontinue allopurinol tablets and to seek medical attention immediately, at the first sign of a skin rash, blisters, fever, painful urination, blood in the urine, irritation of the eyes, swelling of the lips or mouth, or other signs and symptoms of hypersensitivity reactions [see Warnings and Precautions (5.1) ].

Gout Flares During Treatment with Allopurinol Tablets

Inform patients that gout flares may occur during initiation of treatment with allopurinol tablets, even when their serum uric acid is normal. Concurrent use of additional medications such as colchicine or other anti-inflammatory agents can prevent gout flares. Advise patients to continue treatment with both, allopurinol tablets and the prophylactic therapy as prescribed, even if gout flares occur. Reassure them that it may take months to achieve control of the flares but the flares typically become shorter and less severe after several months of therapy [see Warnings and Precautions (5.2)].

Nephrotoxicity

Inform patients that allopurinol tablets may affect kidney function. Advise them to increase fluid intake during therapy (i.e., for adults, at least 2 liters of liquids per day) and to stay well hydrated to prevent kidney stones [see Warnings and Precautions (5.3) ].

Hepatotoxicity

Inform patients of the risk of hepatotoxicity and to report to their healthcare provider any signs and symptoms of liver failure, including jaundice, pruritus, bleeding, bruising, or anorexia  [see Warnings and Precautions (5.4)].

Myelosuppression

Advise patients of the risk of myelosuppression and to report any signs and symptoms of infection, fever, bleeding, shortness of breath, or significant fatigue to their healthcare provider  [see Warnings and Precautions (5.5) ].

Potential Effect on Driving and Use of Machinery

Inform patients that drowsiness, somnolence and dizziness have been reported in patients taking allopurinol tablets. Inform also that the central nervous system depressant effects of allopurinol tablets may be additive to those of alcohol and other CNS depressants. Advise patients to avoid operation of automobiles or other dangerous machinery and activities made hazardous by decreased alertness when starting allopurinol tablets or increasing the dose, until they know how the drug affects them [see Warnings and Precautions (5.6) ].

Risks Associated with Use of Concomitant Medications

Inform patients that there are risks of adverse effects when allopurinol tablets is used with the following drugs: dicumarol, warfarin, sulfinpyrazone, mercaptopurine, azathioprine, ampicillin, amoxicillin, pegloticase, theophylline, and thiazide diuretics. Advise patients to disclose all medications in use and they should follow the instructions of their physician [see Drug Interactions (7.2) ].

Pregnancy

Advise pregnant women of the potential risk to a fetus. Advise women to notify their healthcare provider if they become pregnant or intend to become pregnant during treatment with allopurinol tablets [see Use in Specific Populations (8.1) ].

Lactation

Advise women not to breastfeed during treatment with allopurinol tablets and for one week after the last dose [see Use in Specific Populations (8.2)].

Manufactured by:
Harman Finochem Limited

Plot No. A-100/1 Finished Dosage Form (FDF),
M.I.D.C. Industrial Area, Shendra,
Ch. Sambhajinagar, Maharashtra-431154, INDIA

Manufactured for:
Leading Pharma, LLC
Fairfield, NJ 07004, USA.

Revised: 06/2024

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

710-90710-90

DailyMed RxNorm Mappings#

RxCUI, RxNorm string, TTY table
RxCUIRxNorm stringTTYSPL version
197319allopurinol 100 MG Oral TabletPSN1
197319allopurinol 100 MG Oral TabletSCD1

DailyMed Pharmacologic Classes#

Class, Version, Type table
ClassVersionTypeEffective
ALLOPURINOL Pharmacologic Class Indexing2Indexing - Pharmacologic Class20180813

Product Linked Resources#

Resource, Code type, Value table
ResourceCode typeValueEquivalent identifiersSource image
BarcodeData Matrix(01)00360760710909(21)000000000(17)??????(10)???????GTIN-14: 00360760710909
GTIN-12: 360760710909
UPC-A: 360760710909
EAN-13: 0360760710909
GTIN storage (14 digits): 00360760710909
ALLOPURINOL 60760-710-90.jpg

DailyMed Product Concepts#

Product concept, Relation, Version table
Product conceptRelationVersionEffective
0ee55bab-4ea8-ac26-c688-380cfbcd5c03Product name720260127
de89a493-168f-43fa-9852-1f15e00dbb17Product name120221110
4a2a34d6-1853-423b-9e0c-360370b95802Product name120171006

DailyMed Package Descriptions#

Package NDC, Product, Description table
Package NDCProductDescriptionFormQuantityStrengthSPL version
60760-710-90Allopurinol90 in 1 BOTTLE, PLASTICTABLET901

DailyMed Billing Units#

Package NDC, Billing unit, Product NDC table
Package NDCBilling unitProduct NDCDailyMed indexing SPLSPL versionEffective
60760-710-90EA - Each60760-710d35b1ef3-b2b0-4ce2-8508-c7b708bcef9a12025-12-16
69315-291-01EA - Each69315-291bec74523-b26a-4545-bacb-23f2060491f912023-07-06
69315-291-05EA - Each69315-2912ad41ea6-180e-4f8c-950c-403fbdf700e112023-07-06
69315-291-10EA - Each69315-291e7cf9ae1-9430-42e7-bc77-cb6d34d078d812023-07-06

Products#

Every source-derived product name is available through these pages.

DailyMed product names page 1 of 1 · 7 matching rows.

NDC Codes#

Product NDC, Package NDC table
Product NDCPackage NDC
60760-71060760-710-90
69315-291

Ingredients#

Every source-derived ingredient row is available through these pages.

DailyMed ingredient rows page 1 of 1 · 7 matching rows.

Source Document#

Source XML

Orange Book application contexts#

All distinct exact application/product contexts derived from this label’s complete NDC list are paginated below.

Orange Book application contexts page 1 of 1 · 1 matching rows.

Source provenance: Browse the complete Orange Book source catalog · source snapshot 43.

Orange Book products#

Current product rows page 1 of 1 · 3 matching rows.

Application-product, Trade name, Ingredient table
Application-productTrade nameIngredientStrengthDosage form / routeTE codesRLD / RSApproval date
A214443-001ALLOPURINOLALLOPURINOL100MGTABLET / ORALAB2022-03-07
A214443-002ALLOPURINOLALLOPURINOL300MGTABLET / ORALAB2022-03-07
A214443-003ALLOPURINOLALLOPURINOL200MGTABLET / ORALAB2024-06-17

Therapeutic equivalence codes#

Current TE-code rows page 1 of 1 · 3 matching rows.

Application-product, TE code table
Application-productTE code
A214443-001AB
A214443-002AB
A214443-003AB

Observed Orange Book product history#

Observed FDA ZIP history: Each table is queried independently by exact application/product key from successfully parsed Orange Book snapshots. Capture times identify archived source observations; absence or a change between snapshots is not inferred. FDA publication files that were not recoverable as structured ZIP data are not represented as states.

Product history page 1 of 3 · 81 observed states.

Captured, Edition, Application-product table
CapturedEditionApplication-productTrade nameStrengthDosage form / routeProduct TE source textRLD / RSApproval dateSource SHA-256
2026-09-14 22:38:342026-08A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-0784e616aacf4f…
2026-09-14 22:38:342026-08A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-0784e616aacf4f…
2026-09-14 22:38:342026-08A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-1784e616aacf4f…
2026-08-18 06:07:402026-07A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07caaa826d4ba7…
2026-08-18 06:07:402026-07A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07caaa826d4ba7…
2026-08-18 06:07:402026-07A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17caaa826d4ba7…
2026-02-19 14:30 UTC2026-02A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07011fe1cb6892…
2026-02-19 14:30 UTC2026-02A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07011fe1cb6892…
2026-02-19 14:30 UTC2026-02A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17011fe1cb6892…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-0731067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-0731067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-1731067a03dcf5…
2025-08-23 18:47 UTC2025-08A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-076a471c1ec25d…
2025-08-23 18:47 UTC2025-08A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-076a471c1ec25d…
2025-08-23 18:47 UTC2025-08A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-176a471c1ec25d…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17fd3edfee7708…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17b8a1b40f171c…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-0703ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-0703ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-1703ed91905a0d…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-072680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-072680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-172680178bc6a6…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-075bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-075bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-175bbf6a4d5a75…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17d8e5a09893c0…
2024-10-29 15:01 UTC2024-10A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07d06236e962d9…
2024-10-29 15:01 UTC2024-10A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-07d06236e962d9…
2024-10-29 15:01 UTC2024-10A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-17d06236e962d9…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-0779d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-002ALLOPURINOL300MGTABLET / ORALAB2022-03-0779d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-003ALLOPURINOL200MGTABLET / ORALAB2024-06-1779d66fd596c7…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07A214443-001ALLOPURINOL100MGTABLET / ORALAB2022-03-07301d65b070ca…

Observed Orange Book normalized TE history#

Normalized TE history page 1 of 3 · 81 observed states.

Captured, Edition, Application-product table
CapturedEditionApplication-productTE codeOrderSource SHA-256
2026-09-14 22:38:342026-08A214443-001AB184e616aacf4f…
2026-09-14 22:38:342026-08A214443-002AB184e616aacf4f…
2026-09-14 22:38:342026-08A214443-003AB184e616aacf4f…
2026-08-18 06:07:402026-07A214443-001AB1caaa826d4ba7…
2026-08-18 06:07:402026-07A214443-002AB1caaa826d4ba7…
2026-08-18 06:07:402026-07A214443-003AB1caaa826d4ba7…
2026-02-19 14:30 UTC2026-02A214443-001AB1011fe1cb6892…
2026-02-19 14:30 UTC2026-02A214443-002AB1011fe1cb6892…
2026-02-19 14:30 UTC2026-02A214443-003AB1011fe1cb6892…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-001AB131067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-002AB131067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12A214443-003AB131067a03dcf5…
2025-08-23 18:47 UTC2025-08A214443-001AB16a471c1ec25d…
2025-08-23 18:47 UTC2025-08A214443-002AB16a471c1ec25d…
2025-08-23 18:47 UTC2025-08A214443-003AB16a471c1ec25d…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-001AB1fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-002AB1fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03A214443-003AB1fd3edfee7708…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-001AB1b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-002AB1b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02A214443-003AB1b8a1b40f171c…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-001AB103ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-002AB103ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01A214443-003AB103ed91905a0d…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-001AB12680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-002AB12680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12A214443-003AB12680178bc6a6…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-001AB15bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-002AB15bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09A214443-003AB15bbf6a4d5a75…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-001AB1d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-002AB1d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11A214443-003AB1d8e5a09893c0…
2024-10-29 15:01 UTC2024-10A214443-001AB1d06236e962d9…
2024-10-29 15:01 UTC2024-10A214443-002AB1d06236e962d9…
2024-10-29 15:01 UTC2024-10A214443-003AB1d06236e962d9…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-001AB179d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-002AB179d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08A214443-003AB179d66fd596c7…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07A214443-001AB1301d65b070ca…

openFDA label cross-check#

OpenFDA label data provides additional search and identifier links. DailyMed’s Structured Product Label is the canonical label on FDA.report. Matching records are deduplicated before they are shown below.

Matched openFDA labels page 1 of 1 · 1 matching rows.

Brand, Generic, Manufacturer table
BrandGenericManufacturerSPL set IDEffective dateAvailable safety fieldsJoin
AllopurinolALLOPURINOLST. MARY'S MEDICAL PARK PHARMACY42de3b18-a289-e49e-e063-6394a90a89d42025-11-05Warnings, Adverse reactionsExact identifier
ndc (package): 60760-710-90
ndc (product): 60760-710
ndc11 (package): 60760071090
spl id: 42de3b25-692a-eaff-e063-6294a90a0d21
spl set id: 42de3b18-a289-e49e-e063-6394a90a89d4

Reported adverse events (FAERS/openFDA)#

Adverse event summaries are temporarily unavailable. Other product information remains available.