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Aminophylline

Prescription ANDA RLD Official labelling
Informational index, not medical advice. Content is reproduced from public FDA and NLM data. Always confirm against the manufacturer's current prescribing information. Report adverse events to FDA MedWatch.

Overview

Brand name
Aminophylline
Generic name
Aminophylline
Dosage form
Injection, Solution
Route
Intravenous
Marketing category
ANDA · ANDA
Labeler
Medical Purchasing Solutions, LLC
Product type
Human Prescription Drug
DEA schedule
Not scheduled
Active ingredients
1
NDC product codes
9
Packages
11
Data completeness
83% of corroborating sources present

Active ingredients

Source: NDC Directory
Active ingredients and strengths as listed in the NDC Directory.
Ingredient Strength RxCUI Monograph
Aminophylline Dihydrate 25 mg/mL 1724668 —

Forms, strengths and routes

Source: NDC Directory
Dosage form
Injection, Solution
Route of administration
Intravenous
Presentations
20

Pharmacologic classes are listed in the class section below.

Pharmacologic class

Source: NDC Directory
Established pharmacologic classes (EPC), mechanisms of action (MoA), chemical structures (CS) and physiologic effects (PE).
Class Type Browse
Methylxanthine [EPC] EPC All 30 members
Xanthines [CS] CS All 30 members

Regulatory status

Source: Drugs@FDANDC Directory
Application number
087242
Application type
ANDA · Abbreviated New Drug Application
Approval date
October 26, 1983
Sponsor
HOSPIRA
Products on application
1
Submissions recorded
15
Products approved under application 087242.
Product Trade name Form Strength Ingredient Status TE Flags
087242-001 AMINOPHYLLINE INJECTABLE AMINOPHYLLINE Prescription — RLD RS

Therapeutic equivalence

Source: Orange Book
TE code
—
Reference Listed Drug
Yes
Reference Standard
Yes

Codes beginning with “A” indicate products the FDA considers therapeutically equivalent. Codes beginning with “B” indicate bioequivalence has not been established. See methodology.

Approval history

Source: Drugs@FDA
Most recent submissions on application 087242.
Type No. Action Status Date Review
Supplement 16 Manufacturing (CMC) Approved July 30, 1999 —
Supplement 15 Manufacturing (CMC) Approved February 24, 1997 —
Supplement 13 Labeling Approved December 31, 1996 —
Supplement 14 Manufacturing (CMC) Approved October 3, 1996 —
Supplement 5 Labeling Approved February 1, 1995 —
Supplement 11 Manufacturing (CMC) Approved December 22, 1993 —
Supplement 10 Manufacturing (CMC) Approved August 28, 1992 —
Supplement 9 Manufacturing (CMC) Approved March 5, 1992 —
Supplement 8 Manufacturing (CMC) Approved March 5, 1992 —
Supplement 7 Manufacturing (CMC) Approved March 5, 1992 —
Supplement 6 Manufacturing (CMC) Approved March 5, 1992 —
Supplement 3 Labeling Approved April 9, 1991 —
Supplement 4 Labeling Approved May 7, 1990 —
Supplement 2 Labeling Approved December 27, 1989 —
Original application 1 Approved October 26, 1983 —

Prescribing information

Source: openFDA Drug Labeling

Reproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20260522). This is the manufacturer's labelling text, not a summary and not advice.

HUMAN PRESCRIPTION DRUG · 20260522 HUMAN PRESCRIPTION DRUG · 20251027 HUMAN PRESCRIPTION DRUG · 20240108 HUMAN PRESCRIPTION DRUG · 20230530

Indications and Usage

openFDA Drug Labeling

INDICATIONS AND USAGE Intravenous theophylline is indicated as an adjunct to inhaled beta-2 selective agonists and systemically administered corticosteroids for the treatment of acute exacerbations of the symptoms and reversible airflow obstruction associated with asthma and other chronic lung diseases, e.g., emphysema and chronic bronchitis.

Dosage and Administration

openFDA Drug Labeling

DOSAGE & ADMINISTRATION General Considerations: The steady-state serum theophylline concentration is a function of the infusion rate and the rate of theophylline clearance in the individual patient. Because of marked individual differences in the rate of theophylline clearance, the dose required to achieve a serum theophylline concentration in the 10-20 mcg/mL range varies fourfold among otherwise similar patients in the absence of factors known to alter theophylline clearance. For a given population there is no single theophylline dose that will provide both safe and effective serum concentrations for all patients. Administration of the median theophylline dose required to achieve a therapeutic serum theophylline concentration in a given population may result in either sub-therapeutic or potentially toxic serum theophylline concentrations in individual patients. The dose of theophylline must be individualized on the basis of serum theophylline concentration measurements in order to achieve a dose that will provide maximum potential benefit with minimal risk of adverse effects. When theophylline is used as an acute bronchodilator, the goal of obtaining a therapeutic serum concentration is best accomplished with an intravenous loading dose. Because of rapid distribution into body fluids, the serum concentration (C) obtained from an initial loading dose (LD) is related primarily to the volume of distribution (V), the apparent space into which the drug diffuses: C = LD/V If a mean volume of distribution of about 0.5 L/kg is assumed (actual range is 0.3 to 0.7 L/kg), each mg/kg (ideal body weight) of theophylline administered as a loading dose over 30 minutes results in an average 2 mcg/mL increase in serum theophylline concentration. Therefore, in a patient who has received no theophylline in the previous 24 hours, a loading dose of intravenous theophylline of 4.6 mg/kg (5.7 mg/kg as aminophylline), calculated on the basis of ideal body weight and administered over 30 minutes, on average, will produce a maximum post-distribution serum concentration of 10 mcg/mL with a range of 6-16 mcg/mL. When a loading dose becomes necessary in the patient who has already received theophylline, estimation of the serum concentration based upon the history is unreliable, and an immediate serum level determination is indicated. The loading dose can then be determined as follows: D = (Desired C - Measured C) (V) where D is the loading dose, C is the serum theophylline concentration, and V is the volume of distribution. The mean volume of distribution can be assumed to be 0.5 L/kg and the desired serum concentration should be conservative (e.g., 10 mcg/mL) to allow for the variability in the volume of distribution. A loading dose should not be given before obtaining a serum theophylline concentration if the patient has received any theophylline in the previous 24 hours. A serum concentration obtained 30 minutes after an intravenous loading dose, when distribution is complete, can be used to assess the need for and size of subsequent loading doses, if clinically indicated, and for guidance of continuing therapy. Once a serum concentration of 10 to 15 mcg/mL has been achieved with the use of a loading dose(s), a constant intravenous infusion is started. The rate of administration is based upon mean pharmacokinetic parameters for the population and calculated to achieve a target serum concentration of 10 mcg/mL (see Table V). For example, in non-smoking adults, initiation of a constant intravenous theophylline infusion of 0.4 mg/kg/hr (0.5 mg/kg/hr as aminophylline) at the completion of the loading dose, on average, will result in a steady-state concentration of 10 mcg/mL with a range of 7-26 mcg/mL. The mean and range of steady-state serum concentrations are similar when the average child (age 1 to 9 years) is given a loading dose of 4.6 mg/kg theophylline (5.7 mg/kg as aminophylline) followed by a constant intravenous infusion of 0.8 mg/kg/hr (1.0 mg …

Contraindications

openFDA Drug Labeling

CONTRAINDICATIONS Aminophylline is contraindicated in patients with a history of hypersensitivity to theophylline or other components in the product including ethylenediamine.

WARNINGS Concurrent Illness: Theophylline should be used with extreme caution in patients with the following clinical conditions due to the increased risk of exacerbation of the concurrent condition: Active peptic ulcer disease Seizure disorders Cardiac arrhythmias (not including bradyarrhythmias) Conditions That Reduce Theophylline Clearance: There are several readily identifiable causes of reduced theophylline clearance. If the infusion rate is not appropriately reduced in the presence of these risk factors, severe and potentially fatal theophylline toxicity can occur. Careful consideration must be given to the benefits and risks of theophylline use and the need for more intensive monitoring of serum theophylline concentrations in patients with the following risk factors: Age Neonates (term and premature) Children 60 years) Concurrent Diseases Acute pulmonary edema Congestive heart failure Cor pulmonale Fever; ≥102° for 24 hours or more; or lesser temperature elevations for longer periods Hypothyroidism Liver disease; cirrhosis, acute hepatitis Reduced renal function in infants <3 months of age Sepsis with multi-organ failure Shock Cessation of Smoking Drug Interactions Adding a drug that inhibits theophylline metabolism (e.g., cimetidine, erythromycin, tacrine) or stopping a concurrently administered drug that enhances theophylline metabolism (e.g., carbamazepine, rifampin). (See PRECAUTIONS , Drug Interactions , Table II .) When Signs or Symptoms of Theophylline Toxicity Are Present: Whenever a patient receiving theophylline develops nausea or vomiting, particularly repetitive vomiting, or other signs or symptoms consistent with theophylline toxicity (even if another cause may be suspected), the intravenous infusion should be stopped and a serum theophylline concentration measured immediately. Dosage Increases Increases in the dose of intravenous theophylline should not be made in response to an acute exacerbation of symptoms unless the steady-state serum theophylline concentration is <10 mcg/mL. As the rate of theophylline clearance may be dose-dependent (i.e., steady-state serum concentrations may increase disproportionately to the increase in dose), an increase in dose based upon a sub-therapeutic serum concentration measurement should be conservative. In general, limiting infusion rate increases to about 25% of the previous infusion rate will reduce the risk of unintended excessive increases in serum theophylline concentration (see DOSAGE AND ADMINISTRATION , TABLE VI ).

Adverse Reactions

openFDA Drug Labeling

ADVERSE REACTIONS Adverse reactions associated with theophylline are generally mild when peak serum theophylline concentrations are <20 mcg/mL and mainly consist of transient caffeine-like adverse effects such as nausea, vomiting, headache, and insomnia. When peak serum theophylline concentrations exceed 20 mcg/mL, however, theophylline produces a wide range of adverse reactions including persistent vomiting, cardiac arrhythmias, and intractable seizures which can be lethal (see OVERDOSAGE ). Other adverse reactions that have been reported at serum theophylline concentrations <20 mcg/mL include diarrhea, irritability, restlessness, fine skeletal muscle tremors, and transient diuresis. In patients with hypoxia secondary to COPD, multifocal atrial tachycardia and flutter have been reported at serum theophylline concentrations ≥15 mcg/mL. There have been a few isolated reports of seizures at serum theophylline concentrations <20 mcg/mL in patients with an underlying neurological disease or in elderly patients. The occurrence of seizures in elderly patients with serum theophylline concentrations <20 mcg/mL may be secondary to decreased protein binding resulting in a larger proportion of the total serum theophylline concentration in the pharmacologically active unbound form. The clinical characteristics of the seizures reported in patients with serum theophylline concentrations <20 mcg/mL have generally been milder than seizures associated with excessive serum theophylline concentrations resulting from an overdose (i.e., they have generally been transient, often stopped without anticonvulsant therapy, and did not result in neurological residua). Products containing aminophylline may rarely produce severe allergic reactions of the skin, including exfoliative dermatitis, after systemic administration in a patient who has been previously sensitized by topical application of a substance containing ethylenediamine. In such patients skin patch tests are positive for ethylenediamine, a component of aminophylline, and negative for theophylline. Pharmacists and other individuals who experience repeated skin exposure while physically handling aminophylline may develop a contact dermatitis due to the ethylenediamine component. Image8.jpg Image9.jpg

Drug Interactions

openFDA Drug Labeling

Drug Interactions: Theophylline interacts with a wide variety of drugs. The interaction may be pharmacodynamic, i.e., alterations in the therapeutic response to theophylline or another drug or occurrence of adverse effects without a change in serum theophylline concentration. More frequently, however, the interaction is pharmacokinetic, i.e., the rate of theophylline clearance is altered by another drug resulting in increased or decreased serum theophylline concentrations. Theophylline only rarely alters the pharmacokinetics of other drugs. The drugs listed in Table II have the potential to produce clinically significant pharmacodynamic or pharmacokinetic interactions with theophylline. The information in the "Effect" column of Table II assumes that the interacting drug is being added to a steady-state theophylline regimen. If theophylline is being initiated in a patient who is already taking a drug that inhibits theophylline clearance (e.g., cimetidine, erythromycin), the dose of theophylline required to achieve a therapeutic serum theophylline concentration will be smaller. Conversely, if theophylline is being initiated in a patient who is already taking a drug that enhances theophylline clearance (e.g., rifampin), the dose of theophylline required to achieve a therapeutic serum theophylline concentration will be larger. Discontinuation of a concomitant drug that increases theophylline clearance will result in accumulation of theophylline to potentially toxic levels, unless the theophylline dose is appropriately reduced. Discontinuation of a concomitant drug that inhibits theophylline clearance will result in decreased serum theophylline concentrations, unless the theophylline dose is appropriately increased. The drugs listed in Table III have either been documented not to interact with theophylline or do not produce a clinically significant interaction (i.e., <15% change in theophylline clearance). The listing of drugs in Tables II and III are current as of September 1, 1995. New interactions are continuously being reported for theophylline, especially with new chemical entities. The clinician should not assume that a drug does not interact with theophylline if it is not listed in Table II . Before addition of a newly available drug in a patient receiving theophylline, the package insert of the new drug and/or the medical literature should be consulted to determine if an interaction between the new drug and theophylline has been reported. Table II. Clinically Significant Drug Interactions With Theophylline* Drug Type Of Interaction Effect** * Refer to PRECAUTIONS , Drug Interactions for further information regarding table. ** Average effect on steady-state theophylline concentration or other clinical effect for pharmacologic interactions. Individual patients may experience larger changes in serum theophylline concentration than the value listed. Adenosine Theophylline blocks adenosine receptors. Higher doses of adenosine may be required to achieve desired effect. Alcohol A single large dose of alcohol (3 mL/kg of whiskey) decreases theophylline clearance for up to 24 hours. 30% increase Allopurinol Decreases theophylline clearance at allopurinol doses ≥600 mg/day. 25% increase Aminoglutethimide Increases theophylline clearance by induction of microsomal enzyme activity. 25% decrease Carbamazepine Similar to aminoglutethimide. 30% decrease Cimetidine Decreases theophylline clearance by inhibiting cytochrome P450 1A2. 70% increase Ciprofloxacin Similar to cimetidine. 40% increase Clarithromycin Similar to erythromycin. 25% increase Diazepam Benzodiazepines increase CNS concentrations of adenosine, a potent CNS depressant, while theophylline blocks adenosine receptors. Larger diazepam doses may be required to produce desired level of sedation. Discontinuation of theophylline without reduction of diazepam dose may result in respiratory depression. Disulfiram Decreases theophylline clearance by inhibiting hydroxylation and demet …

Mechanism of Action

openFDA Drug Labeling

Mechanism of Action: Theophylline has two distinct actions in the airways of patients with reversible obstruction; smooth muscle relaxation (i.e., bronchodilation) and suppression of the response of the airways to stimuli (i.e., nonbronchodilator prophylactic effects). While the mechanisms of action of theophylline are not known with certainty, studies in animals suggest that bronchodilation is mediated by the inhibition of two isozymes of phosphodiesterase (PDE III and, to a lesser extent, PDE IV), while nonbronchodilator prophylactic actions are probably mediated through one or more different molecular mechanisms, that do not involve inhibition of PDE III or antagonism of adenosine receptors. Some of the adverse effects associated with theophylline appear to be mediated by inhibition of PDE III (e.g., hypotension, tachycardia, headache, and emesis) and adenosine receptor antagonism (e.g., alterations in cerebral blood flow). Theophylline increases the force of contraction of diaphragmatic muscles. This action appears to be due to enhancement of calcium uptake through an adenosine-mediated channel. Serum Concentration-Effect Relationship: Bronchodilation occurs over the serum theophylline concentration range of 5 - 20 mcg/mL. Clinically important improvement in symptom control and pulmonary function has been found in most studies to require serum theophylline concentrations >10 mcg/mL. At serum theophylline concentrations >20 mcg/mL, both the frequency and severity of adverse reactions increase. In general, maintaining the average serum theophylline concentration between 10 and 15 mcg/mL will achieve most of the drug's potential therapeutic benefit while minimizing the risk of serious adverse events.

Description

openFDA Drug Labeling

DESCRIPTION Aminophylline Injection, USP is a sterile, nonpyrogenic solution of aminophylline in water for injection. Aminophylline (dihydrate) is approximately 79% of anhydrous theophylline by weight. Aminophylline Injection is administered by slow intravenous injection or diluted and administered by intravenous infusion. The solution contains no bacteriostat or antimicrobial agent and is intended for use only as a single-dose injection. When smaller doses are required the unused portion should be discarded. Aminophylline is a 2:1 complex of theophylline and ethylenediamine. Theophylline is structurally classified as a methylxanthine. Aminophylline occurs as a white or slightly yellowish granule or powder, with a slight ammoniacal odor. Aminophylline has the chemical name 1H-Purine-2, 6-dione, 3,7-dihydro-1,3-dimethyl-, compound with 1,2-ethanediamine (2:1). The structural formula of aminophylline (dihydrate) is as follows: The molecular formula of aminophylline dihydrate is C 16 H 24 N 10 O 4 • 2(H 2 O) with a molecular weight of 456.46. Aminophylline Injection, USP contains aminophylline (calculated as the dihydrate) 25 mg/mL (equivalent to 19.7 mg/mL anhydrous theophylline) prepared with the aid of ethylenediamine. The solution may contain an excess of ethylenediamine for pH adjustment. pH is 8.8 (8.6 to 9.0). The osmolar concentration is 0.17 mOsmol/mL (calc.). structural formula aminophylline

OVERDOSAGE General : The chronicity and pattern of theophylline overdosage significantly influences clinical manifestations of toxicity, management and outcome. There are two common presentations: 1) acute overdose, i.e., infusion of an excessive loading dose or excessive maintenance infusion rate for less than 24 hours, and 2) chronic overdosage, i.e., excessive maintenance infusion rate for greater than 24 hours. The most common causes of chronic theophylline overdosage include clinician prescribing of an excessive dose or a normal dose in the presence of factors known to decrease the rate of theophylline clearance and increasing the dose in response to an exacerbation of symptoms without first measuring the serum theophylline concentration to determine whether a dose increase is safe. Several studies have described the clinical manifestations of theophylline overdose following oral administration and attempted to determine the factors that predict life-threatening toxicity. In general, patients who experience an acute overdose are less likely to experience seizures than patients who have experienced a chronic overdosage, unless the peak serum theophylline concentration is >100 mcg/mL. After a chronic overdosage, generalized seizures, life-threatening cardiac arrhythmias, and death may occur at serum theophylline concentrations >30 mcg/mL. The severity of toxicity after chronic overdosage is more strongly correlated with the patient's age than the peak serum theophylline concentration; patients >60 years are at the greatest risk for severe toxicity and mortality after a chronic overdosage. Pre-existing or concurrent disease may also significantly increase the susceptibility of a patient to a particular toxic manifestation, e.g., patients with neurologic disorders have an increased risk of seizures and patients with cardiac disease have an increased risk of cardiac arrhythmias for a given serum theophylline concentration compared to patients without the underlying disease. The frequency of various reported manifestations of oral theophylline overdose according to the mode of overdose are listed in TABLE IV . Other manifestations of theophylline toxicity include increases in serum calcium, creatine kinase, myoglobin and leukocyte count, decreases in serum phosphate and magnesium, acute myocardial infarction, and urinary retention in men with obstructive uropathy. Seizures associated with serum theophylline concentrations >30 mcg/mL are often resistant to anticonvulsant therapy and may result in irreversible brain injury if not rapidly controlled. Death from theophylline toxicity is most often secondary to cardiorespiratory arrest and/or hypoxic encephalopathy following prolonged generalized seizures or intractable cardiac arrhythmias causing hemodynamic compromise. Overdose Management: General Recommendations for Patients with Symptoms of Theophylline Overdose or Serum Theophylline Concentrations >30 mcg/mL While Receiving Intravenous Theophylline. 1.Stop the theophylline infusion.2.While simultaneously instituting treatment, contact a regional poison center to obtain updated information and advice on individualizing the recommendations that follow.3.Institute supportive care, including establishment of intravenous access, maintenance of the airway, and electrocardiographic monitoring.4. Treatment of seizures : Because of the high morbidity and mortality associated with theophylline-induced seizures, treatment should be rapid and aggressive. Anticonvulsant therapy should be initiated with an intravenous benzodiazepine, e.g., diazepam, in increments of 0.1 - 0.2 mg/kg every 1 - 3 minutes until seizures are terminated. Repetitive seizures should be treated with a loading dose of phenobarbital (20 mg/kg infused over 30 - 60 minutes). Case reports of theophylline overdose in humans and animal studies suggest that phenytoin is ineffective in terminating theophylline-induced seizures. The doses of benzodiazepines and phenobarbital r …

How Supplied / Storage and Handling

openFDA Drug Labeling

HOW SUPPLIED Aminophylline Injection, USP 25 mg/mL is supplied in single-dose containers as follows: Store at 20 to 25°C (68 to 77°F). [See USP Controlled Room Temperature.] PROTECT FROM LIGHT. Store in carton until time of use. SINGLE-DOSE CONTAINER. Discard unused portion. Distributed by Hospira, Inc., Lake Forest, IL 60045 USA LAB-1171-1.0 Revised: 03/2018 Product Repackaged by Henry Schein, Inc., Bastian, VA 24314 From Original Manufacturer/Distributor's NDC and Unit of Sale To Henry Schein Repackaged Product NDC and Unit of Sale Total Strength/Total Volume (Concentration) per unit NDC 0409-5921-01 25 single-dose containers in a carton NDC 0404-9813-10 1 single-dose container in a bag (Single-dose vial bears NDC 0409-5921-16) 250 mg/10ml (25 mg/ml) NDC 0409-5922-01 25 single-dose containers in a carton NDC 0404-9814-20 1 single-dose container in a bag (Single-dose vial bears NDC 0409-5922-16) 500 mg/20ml (25 mg/ml) Image12.jpg

Adverse event reports

Source: openFDA FAERS
1,970
FAERS reports mentioning this drug
as of 2026-09-25T03:42:24+00:00
A report count is not a risk measure. FAERS accepts voluntary and mandatory reports without establishing causation, and reporting is influenced by how widely a drug is used, how long it has been marketed, and media attention. FDA states that reports “do not prove that the drug caused the event”. Compare rates, not totals.

Attributed to this product's most-reported active ingredient: AMINOPHYLLINE DIHYDRATE. Combination products with more than six active ingredients are not attributed, because a report count summed across a long ingredient list measures the list, not the medicine.

Recalls

Source: FDA Enforcement
Drug recall enforcement reports associated with this product.
Classification Reported Firm Reason Status
Class II October 12, 2022 Pfizer Inc. Presence of Particulate Matter: A complaint was received for the presence of a hair in one vial. Terminated

Packaging and NDCs

Source: NDC Directory
Every National Drug Code package associated with this medication. The NDC is the identifier used for dispensing, billing and pharmacovigilance in the United States.
Package NDC Product NDC Labeler Description Marketing start
51662-1204-1 51662-1204 HF Acquisition Co LLC, DBA HealthFirst 10 mL in 1 VIAL, SINGLE-DOSE (51662-1204-1) September 13, 2018
51662-1204-3 51662-1204 HF Acquisition Co LLC, DBA HealthFirst 25 POUCH in 1 CASE (51662-1204-3) / 1 mL in 1 POUCH (51662-1204-2) June 15, 2020
51662-1341-1 51662-1341 HF Acquisition Co LLC, DBA HealthFirst 20 mL in 1 VIAL, SINGLE-DOSE (51662-1341-1) February 10, 2019
51662-1341-3 51662-1341 HF Acquisition Co LLC, DBA HealthFirst 25 POUCH in 1 CASE (51662-1341-3) / 1 mL in 1 POUCH (51662-1341-2) October 27, 2020
0404-9813-10 0404-9813 Henry Schein, Inc. 1 VIAL, SINGLE-DOSE in 1 BAG (0404-9813-10) / 10 mL in 1 VIAL, SINGLE-DOSE January 8, 2022
0404-9814-20 0404-9814 Henry Schein, Inc. 1 VIAL, SINGLE-DOSE in 1 BAG (0404-9814-20) / 20 mL in 1 VIAL, SINGLE-DOSE January 8, 2022
0409-5921-01 0409-5921 Hospira, Inc. 25 VIAL, SINGLE-DOSE in 1 TRAY (0409-5921-01) / 10 mL in 1 VIAL, SINGLE-DOSE (0409-5921-16) May 10, 2005
0409-5922-01 0409-5922 Hospira, Inc. 25 VIAL, SINGLE-DOSE in 1 TRAY (0409-5922-01) / 20 mL in 1 VIAL, SINGLE-DOSE (0409-5922-16) February 28, 2005
71872-7060-1 71872-7060 Medical Purchasing Solutions, LLC 1 VIAL, SINGLE-DOSE in 1 BAG (71872-7060-1) / 20 mL in 1 VIAL, SINGLE-DOSE March 26, 2018
71872-7374-1 71872-7374 Medical Purchasing Solutions, LLC 1 VIAL, SINGLE-DOSE in 1 BAG (71872-7374-1) / 10 mL in 1 VIAL, SINGLE-DOSE May 21, 2026
84549-922-01 84549-922 ProPharma Distribution 20 mL in 1 VIAL, SINGLE-DOSE (84549-922-01) September 17, 2025
51662-1204 51662-1204 HF Acquisition Co LLC, DBA HealthFirst — September 13, 2018
51662-1341 51662-1341 HF Acquisition Co LLC, DBA HealthFirst — February 10, 2019
0404-9813 0404-9813 Henry Schein, Inc. — January 8, 2022
0404-9814 0404-9814 Henry Schein, Inc. — January 8, 2022
0409-5921 0409-5921 Hospira, Inc. — May 10, 2005
0409-5922 0409-5922 Hospira, Inc. — February 28, 2005
71872-7060 71872-7060 Medical Purchasing Solutions, LLC — February 28, 2005
71872-7374 71872-7374 Medical Purchasing Solutions, LLC — May 10, 2005
84549-922 84549-922 ProPharma Distribution — February 28, 2005

Sources for this page

Every dataset that contributed a fact to this page.
Dataset Agency Used for
NDC Directory FDA Identity, ingredients, strengths, forms, routes, labelers, packages
Drugs@FDA FDA Application, sponsor, submissions, review documents, marketing status
Drug Labeling FDA / NLM Prescribing information reproduced above
FAERS FDA Adverse event report counts
Enforcement FDA Recall records

Generated September 25, 2026 · 12 sections on this page.