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levalbuterol
Overview
Active ingredients
Source: NDC Directory| Ingredient | Strength | RxCUI | Monograph |
|---|---|---|---|
| Levalbuterol Hydrochloride | 1.25 mg/.5mL | 242754 | View |
Forms, strengths and routes
Source: NDC DirectoryPharmacologic classes are listed in the class section below.
Pharmacologic class
Source: NDC Directory| Class | Type | Browse |
|---|---|---|
| Adrenergic beta2-Agonists [MoA] | MoA | All 37 members |
| beta2-Adrenergic Agonist [EPC] | EPC | All 37 members |
Regulatory status
Source: Drugs@FDANDC Directory| Product | Trade name | Form | Strength | Ingredient | Status | TE | Flags |
|---|---|---|---|---|---|---|---|
| 078309-001 | LEVALBUTEROL HYDROCHLORIDE | SOLUTION | LEVALBUTEROL HYDROCHLORIDE | Prescription | AN | RS |
Therapeutic equivalence
Source: Orange BookWhat this rating means: Therapeutically equivalent — bioequivalence demonstrated (aerosols)
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| Type | No. | Action | Status | Date | Review |
|---|---|---|---|---|---|
| Supplement | 15 | Labeling | Approved | April 12, 2023 | Standard |
| Supplement | 12 | Labeling | Approved | September 25, 2017 | Standard |
| Supplement | 11 | Labeling | Approved | September 25, 2017 | Standard |
| Supplement | 9 | Labeling | Approved | May 10, 2013 | Standard |
| Supplement | 8 | Labeling | Approved | February 19, 2013 | Standard |
| Original application | 1 | Approved | March 20, 2009 | — |
Prescribing information
Source: openFDA Drug LabelingReproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20231031). This is the manufacturer's labelling text, not a summary and not advice.
Boxed Warning
openFDA Drug LabelingFor Oral Inhalation Only Levalbuterol Inhalation Solution (Concentrate) is only for use with a nebulizer. Dilute with sterile normal saline before use.
Instructions for Using Levalbuterol Inhalation Solution (Concentrate)
Indications and Usage
openFDA Drug Labeling1 INDICATIONS AND USAGE Levalbuterol inhalation solution (concentrate) is indicated for the treatment or prevention of bronchospasm in adults, adolescents, and children 6 years of age and older with reversible obstructive airway disease. Levalbuterol inhalation solution (concentrate) is a beta 2 -adrenergic agonist indicated for: • Treatment or prevention of bronchospasm in adults, adolescents, and children 6 years of age and older with reversible obstructive airway disease. ( 1 )
Dosage and Administration
openFDA Drug Labeling2 DOSAGE AND ADMINISTRATION Levalbuterol inhalation solution (concentrate) is for oral inhalation only. Dilute with sterile normal saline before administration. Administer by nebulization using with a standard jet nebulizer (with a face mask or mouthpiece) connected to an air compressor. Do not exceed recommended dose. For dosages less than 1.25 mg, the non-concentrate (i.e., levalbuterol inhalation solution, 3 mL) formulation must be used. Children 6 to 11 Years Old: The recommended dosage of levalbuterol inhalation solution for patients 6 to 11 years old is 0.31 mg administered three times a day, by nebulization. Routine dosing should not exceed 0.63 mg three times a day. Adults and Adolescents ≥ 12 Years Old: The recommended starting dosage of levalbuterol inhalation solution for patients 12 years of age and older is 0.63 mg administered three times a day, every 6 to 8 hours, by nebulization. Patients 12 years of age and older with more severe asthma or patients who do not respond adequately to a dose of 0.63 mg of levalbuterol inhalation solution may benefit from a dosage of 1.25 mg three times a day. Patients receiving the highest dose of levalbuterol inhalation solution should be monitored closely for adverse systemic effects, and the risks of such effects should be balanced against the potential for improved efficacy. The use of levalbuterol inhalation solution can be continued as medically indicated to help control recurring bouts of bronchospasm. During this time, most patients gain optimal benefit from regular use of the inhalation solution. If a previously effective dosage regimen fails to provide the usual response this may be a marker of destabilization of asthma and requires reevaluation of the patient and the treatment regimen, giving special consideration to the possible need for anti-inflammatory treatment, e.g., corticosteroids. The drug compatibility (physical and chemical), efficacy, and safety of levalbuterol inhalation solution when mixed with other drugs in a nebulizer have not been established. The safety and efficacy of levalbuterol inhalation solution have been established in clinical trials when administered using the PARI LC JetTM and PARI LC PlusTM nebulizers, and the PARI Master ® Dura-Neb ® 2000 and Dura-Neb ® 3000 compressors. The safety and efficacy of levalbuterol inhalation solution when administered using other nebulizer systems have not been established. • FOR ORAL INHALATION ONLY ( 2 ) • Dilute levalbuterol inhalation solution (concentrate) with sterile normal saline before administration by nebulization. • Children 6 to 11 Years Old: 0.31 mg administered three times a day, by nebulization. Routine dosing should not exceed 0.63 mg three times a day. ( 2 ) • Adults and Adolescents ≥ 12 Years Old: 0.63 mg administered three times a day, every 6 to 8 hours, by nebulization. The maximum recommended dose is 1.25 mg three times a day. ( 2 ) • For use with a standard jet nebulizer (with a face mask or mouthpiece) connected to an air compressor. ( 2 )
Dosage Forms and Strengths
openFDA Drug Labeling3 DOSAGE FORMS AND STRENGTHS Levalbuterol Inhalation Solution, USP (Concentrate) 0.5 mL unit-dose vials containing 1.25 mg of levalbuterol that must be diluted before use. Levalbuterol inhalation solution (concentrate) is available in cartons of 30 individually pouched vials. Inhalation Solution Concentrate (unit-dose vial for nebulization): 1.25 mg/0.5 mL. Dilute before use. ( 3 )
Contraindications
openFDA Drug Labeling4 CONTRAINDICATIONS Levalbuterol inhalation solution is contraindicated in patients with a history of hypersensitivity to levalbuterol or racemic albuterol. Reactions have included urticaria, angioedema, rash, bronchospasm, anaphylaxis, and oropharyngeal edema [see Warnings and Precautions (5.6) ] . • Hypersensitivity to levalbuterol or racemic albuterol. ( 4 )
Warnings and Cautions
openFDA Drug Labeling5 WARNINGS AND PRECAUTIONS • Life-threatening paradoxical bronchospasm may occur. Discontinue levalbuterol inhalation solution immediately and treat with alternative therapy. ( 5.1 ) • Need for more doses of levalbuterol inhalation solution than usual may be a sign of deterioration of asthma and requires reevaluation of treatment. ( 5.2 ) • Levalbuterol inhalation solution is not a substitute for corticosteroids. ( 5.3 ) • Cardiovascular effects may occur. Consider discontinuation of levalbuterol inhalation solution if these effects occur. Use with caution in patients with underlying cardiovascular disorders. ( 5.4 ) • Excessive use may be fatal. Do not exceed recommended dose. ( 5.5 ) • Immediate hypersensitivity reactions may occur. Discontinue levalbuterol inhalation solution immediately. ( 5.6 ) • Hypokalemia and changes in blood glucose may occur. ( 5.7 , 5.8 ) 5.1 Paradoxical Bronchospasm Levalbuterol inhalation solution can produce paradoxical bronchospasm, which may be life-threatening. If paradoxical bronchospasm occurs, levalbuterol inhalation solution should be discontinued immediately and alternative therapy instituted. It should be recognized that paradoxical bronchospasm, when associated with inhaled formulations, frequently occurs with the first use of a new vial. 5.2 Deterioration of Asthma Asthma may deteriorate acutely over a period of hours or chronically over several days or longer. If the patient needs more doses of levalbuterol inhalation solution than usual, this may be a marker of destabilization of asthma and requires reevaluation of the patient and treatment regimen, giving special consideration to the possible need for anti-inflammatory treatment, e.g., corticosteroids. 5.3 Use of Anti-Inflammatory Agents Levalbuterol inhalation solution is not a substitute for corticosteroids. The use of beta-adrenergic agonist alone may not be adequate to control asthma in many patients. Early consideration should be given to adding anti-inflammatory agents, e.g., corticosteroids, to the therapeutic regimen. 5.4 Cardiovascular Effects Levalbuterol inhalation solution, like other beta-adrenergic agonists, can produce clinically significant cardiovascular effects in some patients, as measured by heart rate, blood pressure, and symptoms. Although such effects are uncommon after administration of levalbuterol inhalation solution at recommended doses, if they occur, the drug may need to be discontinued. In addition, beta-agonists have been reported to produce electrocardiogram (ECG) changes, such as flattening of the t-wave, prolongation of the QTc interval, and ST segment depression. The clinical significance of these findings is unknown. Therefore, levalbuterol inhalation solution, like all sympathomimetic amines, should be used with caution in patients with cardiovascular disorders, especially coronary insufficiency, cardiac arrhythmias, and hypertension. 5.5 Do Not Exceed Recommended Dose Do not exceed the recommended dose. Fatalities have been reported in association with excessive use of inhaled sympathomimetic drugs in patients with asthma. The exact cause of death is unknown, but cardiac arrest following an unexpected development of a severe acute asthmatic crisis and subsequent hypoxia is suspected. 5.6 Immediate Hypersensitivity Reactions Immediate hypersensitivity reactions may occur after administration of levalbuterol or racemic albuterol. Reactions have included urticaria, angioedema, rash, bronchospasm, anaphylaxis, and oropharyngeal edema. The potential for hypersensitivity must be considered in the clinical evaluation of patients who experience immediate hypersensitivity reactions while receiving levalbuterol inhalation solution. 5.7 Coexisting Conditions Levalbuterol inhalation solution, like all sympathomimetic amines, should be used with caution in patients with cardiovascular disorders, especially coronary insufficiency, hypertension, and cardiac arrhythmias; in patients with convulsive disorders, h …
Adverse Reactions
openFDA Drug Labeling6 ADVERSE REACTIONS The following serious adverse reactions are described below and elsewhere in the labeling: • Paradoxical bronchospasm [see Warnings and Precautions (5.1) ] • Cardiovascular effects [see Warnings and Precautions (5.4) ] • Immediate hypersensitivity reactions [see Warnings and Precautions (5.6) ] • Hypokalemia [see Warnings and Precautions (5.8) ] Most common adverse reactions are: palpitations, chest pain, tachycardia, headache, dizziness, tremor and nervousness. ( 6 ) To report SUSPECTED ADVERSE REACTIONS, contact Mylan at 1-877-446-3679 (1-877-4-INFO-RX) or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. 6.1 Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of the drug cannot be directly compared with rates in the clinical trials of another drug and may not reflect the rates observed in practice. Adults and Adolescents 12 Years of Age and Older Adverse reaction information concerning levalbuterol inhalation solution in adults and adolescents is derived from one 4-week, multicenter, randomized, double-blind, active-, and placebo-controlled trial in 362 patients with asthma 12 years of age and older. Adverse reactions reported in ≥ 2% of patients receiving levalbuterol inhalation solution or racemic albuterol and more frequently than in patients receiving placebo are listed in Table 1. Table 1: Adverse Reactions Reported in a 4-Week, Controlled Clinical Trial in Adults and Adolescents ≥ 12 Years Old Body System Preferred Term Percent of Patients One treatment group, racemic albuterol 1.25 mg, with 68 subjects is omitted. Placebo (n = 75) Levalbuterol Inhalation Solution 1.25 mg (n = 73) Levalbuterol Inhalation Solution 0.63 mg (n = 72) Racemic Albuterol 2.5 mg (n = 74) Body as a Whole Allergic reaction 1.3 0 0 2.7 Flu syndrome 0 1.4 4.2 2.7 Accidental injury 0 2.7 0 0 Pain 1.3 1.4 2.8 2.7 Back pain 0 0 0 2.7 Cardiovascular System Tachycardia 0 2.7 2.8 2.7 Migraine 0 2.7 0 0 Digestive System Dyspepsia 1.3 2.7 1.4 1.4 Musculoskeletal System Leg cramps 1.3 2.7 0 1.4 Central Nervous System Dizziness 1.3 2.7 1.4 0 Hypertonia 0 0 0 2.7 Nervousness 0 9.6 2.8 8.1 Tremor 0 6.8 0 2.7 Anxiety 0 2.7 0 0 Respiratory System Cough increased 2.7 4.1 1.4 2.7 Infection viral 9.3 12.3 6.9 12.2 Rhinitis 2.7 2.7 11.1 6.8 Sinusitis 2.7 1.4 4.2 2.7 Turbinate edema 0 1.4 2.8 0 The incidence of certain systemic beta-adrenergic adverse reactions (e.g., tremor, nervousness) was slightly less in the levalbuterol inhalation solution 0.63 mg group compared with the other active treatment groups. The clinical significance of these small differences is unknown. Changes in heart rate 15 minutes after drug administration and in plasma glucose and potassium 1 hour after drug administration on day 1 and day 29 were clinically comparable in the levalbuterol inhalation solution 1.25 mg and racemic albuterol 2.5 mg groups (see Table 2). Changes in heart rate and plasma glucose were slightly less in the levalbuterol inhalation solution 0.63 mg group compared with the other active treatment groups (see Table 2). The clinical significance of these small differences is unknown. After 4 weeks, effects on heart rate, plasma glucose, and plasma potassium were generally diminished compared with day 1 in all active treatment groups. Table 2: Mean Changes from Baseline Heart Rate at 15 Minutes and Glucose and Potassium at 1 Hour after First Dose (Day 1) in Adults and Adolescents ≥ 12 Years Old Treatment Mean Changes (Day 1) Heart Rate (bpm) Glucose (mg/dL) Potassium (mEq/L) Levalbuterol Inhalation Solution 0.63 mg, n = 72 2.4 4.6 -0.2 Levalbuterol Inhalation Solution 1.25 mg, n = 73 6.9 10.3 -0.3 Racemic Albuterol 2.5 mg, n = 74 5.7 8.2 -0.3 Placebo, n = 75 -2.8 -0.2 -0.2 No other clinically relevant laboratory abnormalities related to administration of levalbuterol inhalation solution were observed in this study. In the clinical trials, a slightly greater …
Drug Interactions
openFDA Drug Labeling7 DRUG INTERACTIONS Other short-acting sympathomimetic aerosol bronchodilators and adrenergic drugs: May potentiate effect. (7.1) Beta-blockers: May block bronchodilatory effects of beta-agonists and produce severe bronchospasm. Patients with asthma should not normally be treated with beta-blockers. (7.2) Diuretic: May worsen electrocardiographic changes or hypokalemia associated with diuretic may worsen. Consider monitoring potassium levels. (7.3) Digoxin: May decrease serum digoxin levels. Consider monitoring digoxin levels. (7.4) Monoamine oxidase inhibitors (MAOs) or tricyclic antidepressants: May potentiate effect of albuterol on the cardiovascular system. (7.5) See 17 for PATIENT COUNSELING INFORMATION and FDA-approved patient labeling. Revised: September 2022 7.1 Short-Acting Bronchodilators Avoid concomitant use of other short-acting sympathomimetic bronchodilators or epinephrine in patients being treated with levalbuterol inhalation solution. If additional adrenergic drugs are to be administered by any route, they should be used with caution to avoid deleterious cardiovascular effects. 7.2 Beta-blockers Beta-adrenergic receptor blocking agents not only block the pulmonary effect of beta-adrenergic agonists such as levalbuterol inhalation solution, but may produce severe bronchospasm in asthmatic patients. Therefore, patients with asthma should not normally be treated with beta-blockers. However, under certain circumstances, e.g., prophylaxis after myocardial infarction, there may be no acceptable alternatives to the use of beta-adrenergic blocking agents in patients with asthma. In this setting, cardioselective beta-blockers should be considered, although they should be administered with caution. 7.3 Diuretics The ECG changes or hypokalemia that may result from the administration of non-potassium-sparing diuretics (such as loop and thiazide diuretics) can be acutely worsened by beta-agonists, especially when the recommended dose of the beta-agonist is exceeded. Although the clinical significance of these effects is not known, caution is advised in the coadministration of beta-agonists with non-potassium-sparing diuretics. Consider monitoring potassium levels. 7.4 Digoxin Mean decreases of 16% and 22% in serum digoxin levels were demonstrated after single-dose intravenous and oral administration of racemic albuterol, respectively, to normal volunteers who had received digoxin for 10 days. The clinical significance of these findings for patients with obstructive airway disease who are receiving levalbuterol inhalation solution and digoxin on a chronic basis is unclear. Nevertheless, it would be prudent to carefully evaluate the serum digoxin levels in patients who are currently receiving digoxin and levalbuterol inhalation solution. 7.5 Monoamine Oxidase Inhibitors or Tricyclic Antidepressants Levalbuterol inhalation solution should be administered with extreme caution to patients being treated with monoamine oxidase inhibitors or tricyclic antidepressants, or within 2 weeks of discontinuation of such agents, because the action of levalbuterol on the vascular system may be potentiated. Consider alternative therapy in patients taking MAO inhibitors or tricyclic antidepressants.
Use in Specific Populations
openFDA Drug Labeling8 USE IN SPECIFIC POPULATIONS 8.1 Pregnancy Pregnancy Exposure Registry There is a pregnancy exposure registry that monitors pregnancy outcomes in women exposed to asthma medication, including levalbuterol inhalation solution during pregnancy. To enroll in MotherToBaby Pregnancy Studies’ Asthma & Pregnancy Study or for more information about the registry, call 1-877- 311-8972 or visit www.mothertobaby.org/ongoing-study/asthma. Risk Summary There are no adequate and well-controlled studies of levalbuterol inhalation solution (concentrate) in pregnant women. There are clinical considerations with the use of levalbuterol inhalation solution (concentrate) in pregnant women [see Clinical Considerations]. Following oral administration of levalbuterol HCl to pregnant rabbits, there was no evidence of teratogenicity at doses up to 25 mg/kg/day [approximately 108 times the maximum recommended human daily inhalation dose (MRHDID) of levalbuterol HCl for adults on a mg/m 2 basis]; however, racemic albuterol sulfate was teratogenic in mice (cleft palate) and rabbits (cranioschisis) at doses slightly higher than the human therapeutic range ( see Data ). The estimated background risk of major birth defects and miscarriage for the indicated populations(s) are unknown. In the U.S. general population, the estimated 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 In women with poorly or moderately controlled asthma, there is an increased risk of preeclampsia in the mother and prematurity, low birth weight, and small for gestational age in the neonate. Pregnant women should be closely monitored and medication adjusted as necessary to maintain optimal control. Labor or Delivery Because of the potential for beta-adrenergic agonists to interfere with uterine contractility, the use of levalbuterol inhalation solution for the treatment of bronchospasm during labor should be restricted to those patients for whom the benefits clearly outweigh the risk. Levalbuterol inhalation solution has not been approved for the management of preterm labor. The benefit-risk ratio when levalbuterol inhalation solution is administered for tocolysis has not been established. Serious adverse reactions, including maternal pulmonary edema, have been reported during or following treatment of premature labor with beta 2 -agonists, including racemic albuterol. Data Animal Data The oral administration of levalbuterol HCl to pregnant New Zealand White rabbits during the period of organogenesis found no evidence of teratogenicity at doses up to 25 mg/kg/day (approximately 108 times the MRHDID of levalbuterol HCl for adults on a mg/m 2 basis). In a rat development study, racemic albuterol sulfate administered by inhalation did not produce any teratogenic effects at exposure approximately 63 times the MRHDID (on a mg/m 2 basis at a maternal dose of 10.5 mg/kg). However, other developmental studies with the racemic albuterol sulfate, did result in teratogenic effects in mice and rabbits at doses slightly higher than the human therapeutic range. In a rabbit developmental study, orally administered albuterol sulfate induced cranioschisis in 7 of 19 fetuses (37%) at approximately 215 times the MRHDID for adults (on a mg/m 2 basis at a maternal dose of 50 mg/kg). In a mouse developmental study, subcutaneously administered albuterol sulfate produced cleft palate formation in 5 of 111 (4.5%) fetuses at an exposure approximately 0.3 times the MRHDID for adults (on a mg/m 2 basis at a maternal dose of 0.25 mg/kg/day) and in 10 of 108 (9.3%) fetuses at approximately 3 times the MRHDID (on a mg/m 2 basis at a maternal dose of 2.5 mg/kg/day). Similar effects were not observed at approximately 0.03 times the MRHDID for adults on a mg/m 2 basis at maternal dose of 0.025 mg/kg/day (i.e., less than the therapeutic dose). Cleft palate also occurred in …
Mechanism of Action
openFDA Drug Labeling12.1 Mechanism of Action Activation of beta 2 -adrenergic receptors on airway smooth muscle leads to the activation of adenylate cyclase and to an increase in the intracellular concentration of cyclic-3′, 5′-adenosine monophosphate (cyclic AMP). The increase in cyclic AMP is associated with the activation of protein kinase A, which in turn inhibits the phosphorylation of myosin and lowers intracellular ionic calcium concentrations, resulting in muscle relaxation. Levalbuterol relaxes the smooth muscles of all airways, from the trachea to the terminal bronchioles. Increased cyclic AMP concentrations are also associated with the inhibition of release of mediators from mast cells in the airway. Levalbuterol acts as a functional antagonist to relax the airway irrespective of the spasmogen involved, thus protecting against all bronchoconstrictor challenges. While it is recognized that beta 2 -adrenergic receptors are the predominant receptors on bronchial smooth muscle, data indicate that there are beta-receptors in the human heart, 10% to 50% of which are beta 2 -adrenergic receptors. The precise function of these receptors has not been established [see Warnings and Precautions (5.4) ] . However, all beta-adrenergic agonist drugs can produce a significant cardiovascular effect in some patients, as measured by pulse rate, blood pressure, symptoms, and/or electrocardiographic changes.
Description
openFDA Drug Labeling11 DESCRIPTION Levalbuterol inhalation solution, USP (concentrate) is a sterile, clear, colorless, preservative-free solution of the hydrochloride salt of levalbuterol, the (R)-enantiomer of the drug substance racemic albuterol. Levalbuterol hydrochloride is a relatively selective beta 2 -adrenergic receptor agonist [see Clinical Pharmacology (12) ] . The chemical name for levalbuterol hydrochloride is (R)-α 1 -[[(1,1-dimethylethyl)amino]methyl]-4-hydroxy-1,3-benzenedimethanol hydrochloride, and its established chemical structure is as follows: The molecular weight of levalbuterol hydrochloride is 275.8, and its molecular formula is C 13 H 21 NO 3 •HCl. It is a white to off-white, crystalline solid, with a melting point of approximately 187°C and solubility of approximately 180 mg/mL in water. Levalbuterol hydrochloride is the USAN modified name for (R)-albuterol hydrochloride in the United States. Levalbuterol inhalation solution (concentrate) is supplied in 0.5 mL individually-wrapped unit-dose vials that must be diluted with normal saline before administration by nebulization. Each 0.5 mL unit-dose vial contains 1.25 mg of levalbuterol (as 1.44 mg of levalbuterol hydrochloride), sodium chloride to adjust tonicity, edetate disodium (EDTA) as a chelating agent and sulfuric acid to adjust the pH to 4.0 (3.3 to 4.5). Levalbuterol Hydrochloride Structural Formula
Overdosage
openFDA Drug Labeling10 OVERDOSAGE The expected symptoms with overdosage are those of excessive beta-adrenergic receptor stimulation and/or occurrence or exaggeration of any of the symptoms listed under Adverse Reactions (6) , e.g., seizures, angina, hypertension or hypotension, tachycardia with rates up to 200 beats/min., arrhythmias, nervousness, headache, tremor, dry mouth, palpitation, nausea, dizziness, fatigue, malaise, and sleeplessness. Hypokalemia also may occur. As with all sympathomimetic medications, cardiac arrest and even death may be associated with the abuse of levalbuterol inhalation solution. Treatment consists of discontinuation of levalbuterol inhalation solution together with appropriate symptomatic therapy. The judicious use of a cardio selective beta-receptor blocker may be considered, bearing in mind that such medication can produce bronchospasm. There is insufficient evidence to determine if dialysis is beneficial for overdosage of levalbuterol inhalation solution.
How Supplied / Storage and Handling
openFDA Drug Labeling16 HOW SUPPLIED/STORAGE AND HANDLING Levalbuterol Inhalation Solution, USP (Concentrate) ( foil pouch label color red ) is supplied in 0.5 mL unit-dose, low-density polyethylene (LDPE) vials, and is a clear, colorless, sterile, preservative-free, aqueous solution. Each vial contains 1.25 mg of levalbuterol (as 1.44 mg of levalbuterol hydrochloride USP) and is available in cartons of 30 individually pouched vials. Carton of 30 pouches NDC 65862-942-03 Store levalbuterol inhalation solution, USP (concentrate) in the protective foil pouch at 20° to 25°C (68° to 77°F) [see USP Controlled Room Temperature]. Protect from light and excessive heat. Open the foil pouch just prior to administration. Once the foil pouch is opened, the contents of the vial should be used immediately. Discard any vial if the solution is not colorless. Dilute levalbuterol inhalation solution, USP (concentrate) with sterile normal saline before administration by nebulization.
Adverse event reports
Source: openFDA FAERSAttributed to this product's most-reported active ingredient: LEVALBUTEROL HYDROCHLORIDE. 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.
Packaging and NDCs
Source: NDC Directory| Package NDC | Product NDC | Labeler | Description | Marketing start |
|---|---|---|---|---|
| 65862-942-03 | 65862-942 | Aurobindo Pharma Limited | 30 POUCH in 1 CARTON (65862-942-03) / 1 VIAL, SINGLE-DOSE in 1 POUCH (65862-942-50) / .5 mL in 1 VIAL, SINGLE-DOSE | January 31, 2017 |
| 0378-6993-93 | 0378-6993 | Mylan Pharmaceuticals Inc. | 30 POUCH in 1 CARTON (0378-6993-93) / 1 VIAL in 1 POUCH (0378-6993-31) / .5 mL in 1 VIAL | August 28, 2009 |
| 65862-942 | 65862-942 | Aurobindo Pharma Limited | — | January 31, 2017 |
| 0378-6993 | 0378-6993 | Mylan Pharmaceuticals Inc. | — | August 28, 2009 |
Sources for 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 |
| Orange Book | FDA | Therapeutic equivalence codes, reference drug flags, patents, exclusivity |
| Drug Labeling | FDA / NLM | Prescribing information reproduced above |
| FAERS | FDA | Adverse event report counts |
Generated September 25, 2026 · 12 sections on this page.