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New search Medicine profile Salmeterol

Clinical medicine profile

Salmeterol

Beta-2 adrenergic agonist (bronchodilator)

POM
Evidence state Source-linked Review date not recorded
Route
RESPIRATORY (INHALATION)
Schedule
POM
ATC
Not assigned
PPB status
registered
Patient advice Check interactions
01 Risk first

Safety essentials

The information most likely to change a prescribing or dispensing decision.

Contraindications

  • 4 CONTRAINDICATIONS Fluticasone Propionate/Salmeterol MDPI is contraindicated in: the primary treatment of status asthmaticus or other acute episodes of asthma where intensive measures are required [see Warnings and Precautions ( 5.2 )] . patients with known severe hypersensitivity to milk proteins or who have demonstrated hypersensitivity to fluticasone propionate or any of the excipients [see Warnings and Precautions ( 5.10 ) and Description ( 11 )] .
  • Primary treatment of status asthmaticus or acute episodes of asthma requiring intensive measures.
  • ( 4 ) Severe hypersensitivity to milk proteins or any ingredients of Fluticasone Propionate/Salmeterol MDPI.

Precautions

  • 5 WARNINGS AND PRECAUTIONS LABA monotherapy increases the risk of serious asthma-related events.
  • ( 5.1 ) Deterioration of asthma and acute episodes: Do not use for relief of acute symptoms.
  • Patients require immediate re-evaluation during rapidly deteriorating asthma.
  • ( 5.2 ) Do not use in combination with an additional medicine containing LABA because of risk of overdose.
  • ( 5.3 ) Localized infections: Candida albicans infection of the mouth and pharynx may occur.
  • Monitor patients periodically.
  • Advise the patient to rinse his/her mouth with water without swallowing after inhalation to help reduce the risk.
  • ( 5.4 ) Immunosuppression: Potential worsening of existing tuberculosis, fungal, bacterial, viral, parasitic infection, or ocular herpes simplex.
  • Use with caution in patients with these infections.
  • More serious or even fatal course of chickenpox or measles can occur in susceptible patients.
  • ( 5.5 ) Transferring patients from systemic corticosteroids: Risk of impaired adrenal function when transferring from systemic corticosteroids.
  • Taper patients slowly from systemic corticosteroids if transferring to Fluticasone Propionate/Salmeterol.
02 Point of care

Dosing matrix

Population and organ-function guidance, shown together for faster comparison.

Adult

only. ( 2.1 ) Starting dosage is based on prior asthma therapy and disease severity. ( 2.2 ) 1 inhalation of Fluticasone Propionate/Salmeterol 55 mcg/14 mcg, 113 mcg/14 mcg, or 232 mcg/14 mcg twice daily. ( 2.2 ) Do not use with a spacer or volume holding chamber. ( 2.2 ) 2.1 Administration Instructions Fluticasone Propionate/Salmeterol MDPI is for oral inhalation and does not require priming. Do not use Fluticasone Propionate/Salmeterol MDPI with a spacer or volume holding chamber. Do not use more than two times every 24 hours. More frequent administration or a greater number of daily inhalations (more than one inhalation twice daily) is not recommended as some patients are more likely to experience adverse reactions with higher salmeterol dosages. Avoid the concomitant use of other long acting beta 2 -adrenergic agonist (LABAs) [see Warnings and Precautions ( 5.3 , 5.11 )]. If asthma symptoms arise in the period between doses, an inhaled, short-acting beta 2 -agonist should be taken for immediate relief. 2.2 Recommended Dosage Administer 1 inhalation of Fluticasone Propionate/Salmeterol MDPI twice daily by oral inhalation (approximately 12 hours apart at the same time every day). Rinse the mouth with water without swallowing after each inhalation. Dosage Selection The recommended starting dosage for Fluticasone Propionate/Salmeterol MDPI is based on asthma severity and current inhaled corticosteroid use and strength. Patients not taking inhaled corticosteroids (ICS) (with less severe asthma): 1 inhalation of 55 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI dose strength (55 mcg of fluticasone propionate and 14 mcg of salmeterol), twice daily by oral inhalation. Patients with greater asthma severity, use the higher dose strengths: 1 inhalation of 113 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI (113 mcg of fluticasone propionate and 14 mcg of salmeterol) twice daily; or 1 inhalation of 232 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI (232 mcg of fluticasone propionate and 14 mcg of salmeterol) twice daily Patients switching to Fluticasone Propionate/Salmeterol MDPI from another inhaled corticosteroid or combination product: 1 inhalation of low (55 mcg/14 mcg), medium (113 mcg/14 mcg) or high (232 mcg/14 mcg) Fluticasone Propionate/Salmeterol MDPI twice daily by oral inhalation based on the strength of the previous inhaled corticosteroid product, or the strength of the inhaled corticosteroid from a combination product, and disease severity. The maximum recommended dosage of Fluticasone Propionate/Salmeterol MDPI is 232 mcg/14 mcg twice daily. General Dosing Information Improvement in asthma control following Fluticasone Propionate/Salmeterol MDPI administration can occur within 15 minutes of beginning treatment; although maximum benefit may not be achieved for 1 week or longer after starting treatment. Individual patients will experience a variable time to onset and degree of symptom relief. For patients who do not respond adequately to the starting dose of Fluticasone Propionate/Salmeterol MDPI after 2 weeks of therapy, consider increasing the strength (replace with higher strength) to possibly provide additional improvement in asthma control. If a previously effective dosage regimen fails to provide adequate improvement in asthma control, re-evaluate the therapeutic regimen, including patient compliance and inhaler technique, and consider additional therapeutic options (e.g., increasing the dose of Fluticasone Propionate/Salmeterol MDPI with a higher strength, adding additional controller therapies). After asthma stability has been achieved, it is desirable to titrate to the lowest effective dosage to reduce the risk of adverse reactions. 2.3 Storing and Cleaning the Inhaler Keep the inhaler in a cool dry place. Routine maintenance is not required. If the mouthpiece needs cleaning, gently wipe the mouthpiece with a dry cloth or tissue as needed. Never wash or put any part of the inhaler in water. 2.4 Dose Counter The Fluticasone Propionate/Salmeterol MDPI has a dose counter: The number 60 is displayed (prior to use). The dose counter will count down each time the mouthpiece is opened and closed [see Patient Counseling Information ( 17 )]. 2.1 Administration Instructions Fluticasone Propionate/Salmeterol MDPI is for oral inhalation and does not require priming. Do not use Fluticasone Propionate/Salmeterol MDPI with a spacer or volume holding chamber. Do not use more than two times every 24 hours. More frequent administration or a greater number of daily inhalations (more than one inhalation twice daily) is not recommended as some patients are more likely to experience adverse reactions with higher salmeterol dosages. Avoid the concomitant use of other long acting beta 2 -adrenergic agonist (LABAs) [see Warnings and Precautions ( 5.3 , 5.11 )]. If asthma symptoms arise in the period between doses, an inhaled, short-acting beta 2 -agonist should be taken for immediate relief. 2.2 Recommended Dosage Administer 1 inhalation of Fluticasone Propionate/Salmeterol MDPI twice daily by oral inhalation (approximately 12 hours apart at the same time every day). Rinse the mouth with water without swallowing after each inhalation. Dosage Selection The recommended starting dosage for Fluticasone Propionate/Salmeterol MDPI is based on asthma severity and current inhaled corticosteroid use and strength. Patients not taking inhaled corticosteroids (ICS) (with less severe asthma): 1 inhalation of 55 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI dose strength (55 mcg of fluticasone propionate and 14 mcg of salmeterol), twice daily by oral inhalation. Patients with greater asthma severity, use the higher dose strengths: 1 inhalation of 113 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI (113 mcg of fluticasone propionate and 14 mcg of salmeterol) twice daily; or 1 inhalation of 232 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI (232 mcg of fluticasone propionate and 14 mcg of salmeterol) twice daily Patients switching to Fluticasone Propionate/Salmeterol MDPI from another inhaled corticosteroid or combination product: 1 inhalation of low (55 mcg/14 mcg), medium (113 mcg/14 mcg) or high (232 mcg/14 mcg) Fluticasone Propionate/Salmeterol MDPI twice daily by oral inhalation based on the strength of the previous inhaled corticosteroid product, or the strength of the inhaled corticosteroid from a combination product, and disease severity. The maximum recommended dosage of Fluticasone Propionate/Salmeterol MDPI is 232 mcg/14 mcg twice daily. General Dosing Information Improvement in asthma control following Fluticasone Propionate/Salmeterol MDPI administration can occur within 15 minutes of beginning treatment; although maximum benefit may not be achieved for 1 week or longer after starting treatment. Individual patients will experience a variable time to onset and degree of symptom relief. For patients who do not respond adequately to the starting dose of Fluticasone Propionate/Salmeterol MDPI after 2 weeks of therapy, consider increasing the strength (replace with higher strength) to possibly provide additional improvement in asthma control. If a previously effective dosage regimen fails to provide adequate improvement in asthma control, re-evaluate the therapeutic regimen, including patient compliance and inhaler technique, and consider additional therapeutic options (e.g., increasing the dose of Fluticasone Propionate/Salmeterol MDPI with a higher strength, adding additional controller therapies). After asthma stability has been achieved, it is desirable to titrate to the lowest effective dosage to reduce the risk of adverse reactions. 2.3 Storing and Cleaning the Inhaler Keep the inhaler in a cool dry place. Routine maintenance is not required. If the mouthpiece needs cleaning, gently wipe the mouthpiece with a dry cloth or tissue as needed. Never wash or put any part of the inhaler in water. 2.4 Dose Counter The Fluticasone Propionate/Salmeterol MDPI has a dose counter: The number 60 is displayed (prior to use). The dose counter will count down each time the mouthpiece is opened and closed [see Patient Counseling Information ( 17 )].

Paediatric

8.4 Pediatric Use The safety and effectiveness of Fluticasone Propionate/Salmeterol MDPI have been established for the treatment of asthma in pediatric patients aged 12 years and older whose asthma (1) is inadequately controlled on a long term asthma control medication or (2) warrants initiation of treatment with both an ICS and a LABA. Use of Fluticasone Propionate/Salmeterol MDPI in pediatric patients aged 12 to 17 years for this indication is supported by evidence from two adequate and well-controlled trials in pediatric patients 12 years old and older with persistent symptomatic asthma despite ICS or ICS/LABA therapy (Trials 1 and 2) [see Clinical Studies ( 14 )]. In these trials, 58 adolescents received Fluticasone Propionate/Salmeterol MDPI one inhalation twice daily. The safety and effectiveness of Fluticasone Propionate/Salmeterol MDPI have not been established in pediatric patients younger than 12 years of age for the treatment of asthma. Effectiveness was not demonstrated in one adequate and well-controlled study conducted in 211 patients aged 4 to 11 years with persistent asthma on a stable asthma regimen who were treated with Fluticasone Propionate/Salmeterol MDPI 55 mcg/14 mcg one inhalation twice daily. Effect on Growth Inhaled corticosteroids, including fluticasone propionate, a component of this product, may cause a reduction in growth velocity in adolescents [see Warning and Precautions ( 5.13 )] . The growth of pediatric patients receiving ICS, including Fluticasone Propionate/Salmeterol MDPI, should be monitored. If an adolescent on any corticosteroid appears to have growth suppression, the possibility that he/she is particularly sensitive to this effect of corticosteroids should be considered. In such patients, the potential growth effects of prolonged ICS treatment should be weighed against the clinical benefits obtained. To minimize the systemic effects of ICS, including Fluticasone Propionate/Salmeterol MDPI, each patient should be titrated to the lowest strength that effectively controls his/her asthma [see Dosage and Administration ( 2 )].

Renal

Low for inhaled; monitor electrolytes if continuous nebs.

  • CrCl 0–120: Confirm renal dosing in product SmPC / primary label.
Hepatic

Low clinical concern for inhaled therapy.

03 Clinical use

Use, effects & interactions

Indications

  • 1 INDICATIONS AND USAGE Fluticasone Propionate/Salmeterol Multidose Dry Powder Inhaler (FS MDPI) is indicated for the treatment of asthma in adult and pediatric patients aged 12 years and older.
  • Fluticasone Propionate/Salmeterol MDPI should be used for patients not adequately controlled on a long term asthma control medication such as an inhaled corticosteroid or whose disease warrants initiation of treatment with both an inhaled corticosteroid and long acting beta 2 -adrenergic agonist (LABA).
  • Limitations of Use : Fluticasone Propionate/Salmeterol MDPI is not indicated for the relief of acute bronchospasm.
  • Fluticasone Propionate/Salmeterol Multi-Dose Dry Powder Inhaler (MDPI) is a combination of fluticasone propionate, a corticosteroid, and salmeterol, a long-acting beta 2 -adrenergic agonist (LABA), indicated for treatment of asthma in adult and pediatric patients aged 12 years and older.
  • Fluticasone Propionate/Salmeterol inhalation powder should be used for patients not adequately controlled on a long term asthma control medication such as an inhaled corticosteroid or whose disease warrants initiation of treatment with both an inhaled corticosteroid and long acting beta 2 -adrenergic agonist (LABA).
  • ( 1 ) Limitations of Use : Not indicated for the relief of acute bronchospasm.

Adverse effects

  • 6 ADVERSE REACTIONS The following clinically significant adverse reactions are described elsewhere in the labeling: Serious asthma-related events – hospitalizations, intubations, death [see Warnings and Precautions ( 5.1 )] Oropharyngeal candidiasis [see Warnings and Precautions ( 5.4 )] Immunosuppression and risk of infections [see Warnings and Precautions ( 5.5 )] Hypercorticism and adrenal suppression [see Warnings and Precautions ( 5.7 )] Cardiovascular and central nervous system effects [see Warnings and Precautions ( 5.11 )] Reduction in bone mineral density [see Warnings and Precautions ( 5.12 )] Growth effects in pediatrics [see Warnings and Precautions ( 5.13 )] Glaucoma and cataracts [see Warnings and Precautions ( 5.14 )] Most common adverse reactions (greater than or equal to 3%): nasopharyngitis, oral candidiasis, headache, cough and back pain.
  • ( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Teva Pharmaceuticals at 1-888-483-8279 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. 6.1 Clinical Trials Experience in Asthma Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice.
  • In two placebo-controlled, 12-week, clinical studies (Trials 1 and 2) [see Clinical Studies ( 14 )] , a total of 1,364 adolescent and adult patients with persistent symptomatic asthma despite ICS or ICS/LABA therapy were treated twice daily with either placebo
  • fluticasone propionate MDPI 55 mcg, 113 mcg, 232 mcg
  • or fluticasone propionate/salmeterol MDPI 55 mcg/14 mcg, 113 mcg/14 mcg, 232 mcg/14 mcg.
  • Sixty percent of patients were female and 80% of patients were white.
  • The average duration of exposure was 82 to 84 days in the fluticasone propionate MDPI and fluticasone propionate/salmeterol MDPI treatment groups compared with 75 days in the placebo group.
  • Table 2 displays the incidence of most common adverse reactions in pooled Trials 1 and 2.
  • Table 2: Adverse Reactions with ≥3% Incidence with Fluticasone Propionate/Salmeterol MDPI, and More Common than Placebo in Subjects with Asthma (Trials 1 and 2) Adverse Reaction Fluticasone Propionate MDPI 55 mcg(n=129)% Fluticasone Propionate MDPI 113 mcg(n=274)% Fluticasone Propionate MDPI 232 mcg(n=146)% Fluticasone Propionate /Salmeterol MDPI 55 mcg/14 mcg(n=128)% Fluticasone Propionate /Salmeterol MDPI 113 mcg/14 mcg(n=269)% Fluticasone Propionate /Salmeterol MDPI232 mcg/14 mcg (n=145)% Placebo(n=273)% Nasopharyngitis 5.4 5.8 4.8 8.6 4.8 6.9 4.4 Oral candidiasis* 3.1 2.9 4.8 1.6 2.2 3.4 0.7 Headache 1.6 7.3 4.8 5.5 4.8 2.8 4.4 Cough 1.6 1.8 3.4 2.3 3.7 0.7 2.6 Back pain 0 1.5 1.4 3.1 0.7 0 1.8 *Oral candidiasis includes oropharyngeal candidiasis, oral fungal infection, and oropharyngitis fungal Other adverse reactions not previously listed (and occurring in <3% of patients and in three or more patients on Fluticasone Propionate/Salmeterol MDPI) that were reported more frequently by patients with asthma treated with Fluticasone Propionate/Salmeterol MDPI compared with patients treated with placebo include the following: Sinusitis, oropharyngeal pain, pharyngitis, dizziness, influenza, rhinitis allergic, respiratory tract infection, rhinitis, nasal congestion, abdominal pain upper, myalgia, pain in extremity, dyspepsia, laceration, dermatitis contact, and palpitations.
  • Long Term Safety Study: This was a 26-week, open labeled study of 674 patients previously treated with ICS who were treated twice daily with fluticasone propionate MDPI 113 mcg or 232 mcg
  • fluticasone propionate/salmeterol MDPI 113 mcg/14 mcg or 232 mcg/14 mcg
  • fluticasone propionate inhalation aerosol 110 mcg or 220 mcg
  • fluticasone propionate and salmeterol inhalation powder (250 mcg/50 mcg), or fluticasone propionate and salmeterol inhalation powder (500 mcg/50 mcg).
  • The types of adverse reactions were similar to those reported above in placebo controlled studies. 6.2 Postmarketing Experience In addition to adverse reactions reported from clinical trials, the following adverse reactions have been identified during post approval use of fluticasone propionate and/or salmeterol regardless of indication.
  • Assess inhaler technique every visit.
  • Increasing SABA use = uncontrolled disease — step up controller therapy.
  • Never prescribe LABA alone for asthma.
04 Pharmacology

Mechanism & disposition

12.

1 Mechanism of Action This product contain…The mechanisms of action described below f…These drugs represent 2 different classes…
Read complete mechanism

12.1 Mechanism of Action This product contains both fluticasone propionate and salmeterol. The mechanisms of action described below for the individual components apply to this combination product. These drugs represent 2 different classes of medications (a synthetic corticosteroid and a LABA) that have different effects on clinical, physiologic, and inflammatory indices. Fluticasone Propionate : Fluticasone propionate is a synthetic trifluorinated corticosteroid with anti-inflammatory activity. Fluticasone propionate has been shown in vitro to exhibit a binding affinity for the human glucocorticoid receptor that is 18 times that of dexamethasone, almost twice that of beclomethasone-17-monopropionate (BMP), the active metabolite of beclomethasone dipropionate, and over 3 times that of budesonide. Data from the McKenzie vasoconstrictor assay in humans are consistent with these results. The clinical significance of these findings is unknown. Inflammation is an important component in the pathogenesis of asthma. Corticosteroids have been shown to have a wide range of actions on multiple cell types (e.g., mast cells, eosinophils, neutrophils, macrophages, and lymphocytes) and mediators (e.g., histamine, eicosanoids, leukotrienes, and cytokines) involved in inflammation. These anti-inflammatory actions of corticosteroids contribute to their efficacy in the treatment of asthma. Salmeterol : Salmeterol is a selective LABA. In vitro studies show salmeterol to be at least 50 times more selective for beta 2 ‑adrenoceptors than albuterol. Although beta 2 ‑adrenoceptors are the predominant adrenergic receptors in bronchial smooth muscle and beta 1 ‑adrenoceptors are the predominant receptors in the heart, there are also beta 2 ‑adrenoceptors in the human heart comprising 10% to 50% of the total beta‑adrenoceptors. The precise function of these receptors has not been established, but their presence raises the possibility that even selective beta 2 ‑agonists may have cardiac effects. The pharmacologic effects of beta 2 ‑adrenoceptor agonist drugs, including salmeterol, are at least in part attributable to stimulation of intracellular adenyl cyclase, the enzyme that catalyzes the conversion of adenosine triphosphate (ATP) to cyclic-3′,5′-adenosine monophosphate (cyclic AMP). Increased cyclic AMP levels cause relaxation of bronchial smooth muscle and inhibition of release of mediators of immediate hypersensitivity from cells, especially from mast cells. In vitro tests show that salmeterol is a potent and long‑lasting inhibitor of the release of mast cell mediators, such as histamine, leukotrienes, and prostaglandin D 2 , from human lung. Salmeterol inhibits histamine‑induced plasma protein extravasation and inhibits platelet‑activating factor‑induced eosinophil accumulation in the lungs of guinea pigs when administered by the inhaled route. In humans, single doses of salmeterol administered via inhalation aerosol attenuate allergen‑induced bronchial hyperresponsiveness.

Onset

Minutes (SABA)

Duration

3–6 h SABA; 12 h LABA

Route

RESPIRATORY (INHALATION)

Absorption

Fluticasone Propionate: Fluticasone Propionate/Salmeterol MDPI acts locally in the lung; therefore, plasma levels may not predict therapeutic effect. Trials using oral dosing of labeled and unlabeled drug have demonstrated that the oral systemic bioavailability of fluticasone pro...

Distribution

Fluticasone Propionate: Following intravenous administration, the initial disposition phase for fluticasone propionate was rapid and consistent with its high lipid solubility and tissue binding. The volume of distribution averaged 4.2 L/kg. The percentage of fluticasone propionat...

Metabolism

in the gut and liver. In contrast, the majority of the fluticasone propionate delivered to the lung was systemically absorbed. After administration of 232 mcg/14 mcg Fluticasone Propionate/Salmeterol MDPI to patients aged 12 years and older with persistent asthma in a clinical tr...

Elimination

Fluticasone Propionate: Following intravenous dosing, fluticasone propionate showed polyexponential kinetics and had a terminal elimination

Half-life

of approximately 7.8 hours. Terminal half-life estimates of fluticasone propionate following oral inhalation administration of Fluticasone Propionate/Salmeterol MDPI were approximately 10.8 hours.

05 Special populations

Pregnancy, lactation & diet

Pregnancy

8.1 Pregnancy Risk Summary There are no randomized clinical studies of fluticasone propionate/salmeterol MDPI or individual monoproducts, fluticasone propionate and salmeterol, in pregnant women. There are clinical considerations with the use of Fluticasone Propionate/Salmeterol MDPI in pregnant women [see Clinical Considerations] . Animal reproduction studies are available with the combination of fluticasone propionate and salmeterol as well as individual components. In animals, teratogenicity characteristic of corticosteroids, decreased fetal body weight and/or skeletal variations, in rats, mice, and rabbits were observed with subcutaneously administered maternal toxic doses of fluticasone propionate less than the maximum recommended human daily inhaled dose (MRHDID) on a mcg/m 2 basis [see Data] . However, fluticasone propionate administered via inhalation to rats decreased fetal body weight, but did not induce teratogenicity at a maternal toxic dose less than the MRHDID on a mcg/m 2 basis [see Data] . Experience with oral corticosteroids suggests that rodents are more prone to teratogenic effects from corticosteroids than humans. Oral administration of salmeterol to pregnant rabbits caused teratogenicity characteristic of beta-adrenoceptor stimulation at maternal doses approximately 700 times the MRHDID on a mcg/m 2 basis. These adverse effects generally occurred at large multiples of the MRHDID when salmeterol was administered by the oral route to achieve high systemic exposures. No such effects occurred at an oral salmeterol dose approximately 420 times the MRHDID [see Data] . The estimated risk of major birth defects and miscarriage for the indicated population is 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 several perinatal adverse outcomes such as preeclampsia in the mother and prematurity, low birth weight, and small for gestational age in the neonate. Pregnant women with asthma should be closely monitored and medication adjusted as necessary to maintain optimal asthma control. Data Animal Data Fluticasone Propionate and Salmeterol: In an embryo/fetal development study with pregnant rats that received the combination of subcutaneous administration of fluticasone propionate and oral administration of salmeterol at doses of 0/1000, 30/0, 10/100, 30/1000, and 100/10,000 mcg/kg/day (as fluticasone propionate/salmeterol) during the period of organogenesis, findings were generally consistent with the individual monoproducts and there was no exacerbation of expected fetal effects. Omphalocele, increased embryo/fetal deaths, decreased body weight, and skeletal variations were observed in rat fetuses, in the presence of maternal toxicity, when combining fluticasone propionate at a dose approximately 2 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 100 mcg/kg/day) and a dose of salmeterol at approximately 3500 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). The rat no observed adverse effect level (NOAEL) was observed when combining fluticasone propionate at a dose 0.6 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 30 mcg/kg/day) and a dose of salmeterol at approximately 350 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 1000 mcg/kg/day). In an embryo/fetal development study with pregnant mice that received the combination of subcutaneous administration of fluticasone propionate and oral administration of salmeterol at doses of 0/1400, 40/0, 10/200, 40/1400, or 150/10,000 mcg/kg/day (as fluticasone propionate/salmeterol) during the period of organogenesis, findings were generally consistent with the individual monoproducts and there was no exacerbation of expected fetal effects. Cleft palate, fetal death, increased implantation loss, and delayed ossification were observed in mouse fetuses when combining fluticasone propionate at a dose approximately 1.4 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 150 mcg/kg/day) and salmeterol at a dose approximately 1470 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). No developmental toxicity was observed at combination doses of fluticasone propionate up to approximately 0.8 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 40 mcg/kg) and doses of salmeterol up to approximately 420 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 1400 mcg/kg). Fluticasone Propionate: In embryo/fetal development studies with pregnant rats and mice dosed by the subcutaneous route throughout the period of organogenesis, fluticasone propionate was teratogenic in both species. Omphalocele, decreased body weight, and skeletal variations were observed in rat fetuses, in the presence of maternal toxicity, at a dose approximately 2 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 100 mcg/kg/day). The rat NOAEL was observed at approximately 0.6 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 30 mcg/kg/day). Cleft palate and fetal skeletal variations were observed in mouse fetuses at a dose approximately 0.5 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 45 mcg/kg/day). The mouse NOAEL was observed with a dose approximately 0.16 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 15 mcg/kg/day). In an embryo/fetal development study with pregnant rats dosed by the inhalation route throughout the period of organogenesis, fluticasone propionate produced decreased fetal body weights and skeletal variations, in the presence of maternal toxicity, at a dose approximately 0.5 times the MRHDID (on a mcg/m 2 basis with a maternal inhalation dose of 25.7 mcg/kg/day); however, there was no evidence of teratogenicity. The NOAEL was observed with a dose approximately 0.1 times the MRHDID (on a mcg/m 2 basis with a maternal inhalation dose of 5.5 mcg/kg/day). In an embryo/fetal development study in pregnant rabbits that were dosed by the subcutaneous route throughout organogenesis, fluticasone propionate produced reductions of fetal body weights, in the presence of maternal toxicity at doses approximately 0.02 times the MRHDID and higher (on a mcg/m 2 basis with a maternal subcutaneous dose of 0.57 mcg/kg/day). Teratogenicity was evident based upon a finding of cleft palate for 1 fetus at a dose approximately 0.2 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 4 mcg/kg/day). The NOAEL was observed in rabbit fetuses with a dose approximately 0.004 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 0.08 mcg/kg/day). In a pre- and post-natal development study in pregnant rats dosed by the subcutaneous route from late gestation through delivery and lactation (Gestation Day 17 to Postpartum Day 22), fluticasone propionate was not associated with decreases in pup body weight, and had no effects on developmental landmarks, learning, memory, reflexes, or fertility at doses up to approximate equivalence to the MRHDID (on a mcg/m 2 basis with maternal subcutaneous doses up to 50 mcg/kg/day). Fluticasone propionate crossed the placenta following subcutaneous administration to mice and rats and oral administration to rabbits. Salmeterol: In three embryo/fetal development studies, pregnant rabbits received oral administration of salmeterol at doses ranging from 100 to 10,000 mcg/kg/day during the period of organogenesis. In pregnant Dutch rabbits administered salmeterol doses approximately 700 times the MRHDID (on a mcg/m 2 basis at maternal oral doses of 1000 mcg/kg/day and higher), fetal toxic effects were observed characteristically resulting from beta‑adrenoceptor stimulation. These included precocious eyelid openings, cleft palate, sternebral fusion, limb and paw flexures, and delayed ossification of the frontal cranial bones. No such effects occurred at a salmeterol dose approximately 420 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 600 mcg/kg/day). New Zealand White rabbits were less sensitive since only delayed ossification of the frontal cranial bones was seen at a salmeterol dose approximately 7,000 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). In two embryo/fetal development studies, pregnant rats received salmeterol by oral administration at doses ranging from 100 to 10,000 mcg/kg/day during the period of organogenesis. Salmeterol produced no maternal toxicity or embryo/fetal effects at doses up to 3500 times the MRHDID (on a mcg/m 2 basis at maternal oral doses up to 10,000 mcg/kg/day). In a peri-and post-natal development study in pregnant rats dosed by the oral route from late gestation through delivery and lactation, salmeterol at a dose 3500 times the MRHDID (on mcg/m 2 basis with a maternal oral dose of 10,000 mcg/kg/day) was fetotoxic and decreased the fertility of survivors. Salmeterol xinafoate crossed the placenta following oral administration to mice and rats.

Lactation

impairment: Monitor for systemic corticosteroid effects. ( 8.6 ) 8.1 Pregnancy Risk Summary There are no randomized clinical studies of fluticasone propionate/salmeterol MDPI or individual monoproducts, fluticasone propionate and salmeterol, in pregnant women. There are clinical considerations with the use of Fluticasone Propionate/Salmeterol MDPI in pregnant women [see Clinical Considerations] . Animal reproduction studies are available with the combination of fluticasone propionate and salmeterol as well as individual components. In animals, teratogenicity characteristic of corticosteroids, decreased fetal body weight and/or skeletal variations, in rats, mice, and rabbits were observed with subcutaneously administered maternal toxic doses of fluticasone propionate less than the maximum recommended human daily inhaled dose (MRHDID) on a mcg/m 2 basis [see Data] . However, fluticasone propionate administered via inhalation to rats decreased fetal body weight, but did not induce teratogenicity at a maternal toxic dose less than the MRHDID on a mcg/m 2 basis [see Data] . Experience with oral corticosteroids suggests that rodents are more prone to teratogenic effects from corticosteroids than humans. Oral administration of salmeterol to pregnant rabbits caused teratogenicity characteristic of beta-adrenoceptor stimulation at maternal doses approximately 700 times the MRHDID on a mcg/m 2 basis. These adverse effects generally occurred at large multiples of the MRHDID when salmeterol was administered by the oral route to achieve high systemic exposures. No such effects occurred at an oral salmeterol dose approximately 420 times the MRHDID [see Data] . The estimated risk of major birth defects and miscarriage for the indicated population is 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 several perinatal adverse outcomes such as preeclampsia in the mother and prematurity, low birth weight, and small for gestational age in the neonate. Pregnant women with asthma should be closely monitored and medication adjusted as necessary to maintain optimal asthma control. Data Animal Data Fluticasone Propionate and Salmeterol: In an embryo/fetal development study with pregnant rats that received the combination of subcutaneous administration of fluticasone propionate and oral administration of salmeterol at doses of 0/1000, 30/0, 10/100, 30/1000, and 100/10,000 mcg/kg/day (as fluticasone propionate/salmeterol) during the period of organogenesis, findings were generally consistent with the individual monoproducts and there was no exacerbation of expected fetal effects. Omphalocele, increased embryo/fetal deaths, decreased body weight, and skeletal variations were observed in rat fetuses, in the presence of maternal toxicity, when combining fluticasone propionate at a dose approximately 2 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 100 mcg/kg/day) and a dose of salmeterol at approximately 3500 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). The rat no observed adverse effect level (NOAEL) was observed when combining fluticasone propionate at a dose 0.6 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 30 mcg/kg/day) and a dose of salmeterol at approximately 350 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 1000 mcg/kg/day). In an embryo/fetal development study with pregnant mice that received the combination of subcutaneous administration of fluticasone propionate and oral administration of salmeterol at doses of 0/1400, 40/0, 10/200, 40/1400, or 150/10,000 mcg/kg/day (as fluticasone propionate/salmeterol) during the period of organogenesis, findings were generally consistent with the individual monoproducts and there was no exacerbation of expected fetal effects. Cleft palate, fetal death, increased implantation loss, and delayed ossification were observed in mouse fetuses when combining fluticasone propionate at a dose approximately 1.4 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 150 mcg/kg/day) and salmeterol at a dose approximately 1470 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). No developmental toxicity was observed at combination doses of fluticasone propionate up to approximately 0.8 times the MRHDID (on a mcg/m 2 basis at a maternal subcutaneous dose of 40 mcg/kg) and doses of salmeterol up to approximately 420 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 1400 mcg/kg). Fluticasone Propionate: In embryo/fetal development studies with pregnant rats and mice dosed by the subcutaneous route throughout the period of organogenesis, fluticasone propionate was teratogenic in both species. Omphalocele, decreased body weight, and skeletal variations were observed in rat fetuses, in the presence of maternal toxicity, at a dose approximately 2 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 100 mcg/kg/day). The rat NOAEL was observed at approximately 0.6 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 30 mcg/kg/day). Cleft palate and fetal skeletal variations were observed in mouse fetuses at a dose approximately 0.5 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 45 mcg/kg/day). The mouse NOAEL was observed with a dose approximately 0.16 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 15 mcg/kg/day). In an embryo/fetal development study with pregnant rats dosed by the inhalation route throughout the period of organogenesis, fluticasone propionate produced decreased fetal body weights and skeletal variations, in the presence of maternal toxicity, at a dose approximately 0.5 times the MRHDID (on a mcg/m 2 basis with a maternal inhalation dose of 25.7 mcg/kg/day); however, there was no evidence of teratogenicity. The NOAEL was observed with a dose approximately 0.1 times the MRHDID (on a mcg/m 2 basis with a maternal inhalation dose of 5.5 mcg/kg/day). In an embryo/fetal development study in pregnant rabbits that were dosed by the subcutaneous route throughout organogenesis, fluticasone propionate produced reductions of fetal body weights, in the presence of maternal toxicity at doses approximately 0.02 times the MRHDID and higher (on a mcg/m 2 basis with a maternal subcutaneous dose of 0.57 mcg/kg/day). Teratogenicity was evident based upon a finding of cleft palate for 1 fetus at a dose approximately 0.2 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 4 mcg/kg/day). The NOAEL was observed in rabbit fetuses with a dose approximately 0.004 times the MRHDID (on a mcg/m 2 basis with a maternal subcutaneous dose of 0.08 mcg/kg/day). In a pre- and post-natal development study in pregnant rats dosed by the subcutaneous route from late gestation through delivery and lactation (Gestation Day 17 to Postpartum Day 22), fluticasone propionate was not associated with decreases in pup body weight, and had no effects on developmental landmarks, learning, memory, reflexes, or fertility at doses up to approximate equivalence to the MRHDID (on a mcg/m 2 basis with maternal subcutaneous doses up to 50 mcg/kg/day). Fluticasone propionate crossed the placenta following subcutaneous administration to mice and rats and oral administration to rabbits. Salmeterol: In three embryo/fetal development studies, pregnant rabbits received oral administration of salmeterol at doses ranging from 100 to 10,000 mcg/kg/day during the period of organogenesis. In pregnant Dutch rabbits administered salmeterol doses approximately 700 times the MRHDID (on a mcg/m 2 basis at maternal oral doses of 1000 mcg/kg/day and higher), fetal toxic effects were observed characteristically resulting from beta‑adrenoceptor stimulation. These included precocious eyelid openings, cleft palate, sternebral fusion, limb and paw flexures, and delayed ossification of the frontal cranial bones. No such effects occurred at a salmeterol dose approximately 420 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 600 mcg/kg/day). New Zealand White rabbits were less sensitive since only delayed ossification of the frontal cranial bones was seen at a salmeterol dose approximately 7,000 times the MRHDID (on a mcg/m 2 basis at a maternal oral dose of 10,000 mcg/kg/day). In two embryo/fetal development studies, pregnant rats received salmeterol by oral administration at doses ranging from 100 to 10,000 mcg/kg/day during the period of organogenesis. Salmeterol produced no maternal toxicity or embryo/fetal effects at doses up to 3500 times the MRHDID (on a mcg/m 2 basis at maternal oral doses up to 10,000 mcg/kg/day). In a peri-and post-natal development study in pregnant rats dosed by the oral route from late gestation through delivery and lactation, salmeterol at a dose 3500 times the MRHDID (on mcg/m 2 basis with a maternal oral dose of 10,000 mcg/kg/day) was fetotoxic and decreased the fertility of survivors. Salmeterol xinafoate crossed the placenta following oral administration to mice and rats. 8.2 Lactation Risk Summary There are no available data on the presence of fluticasone propionate or salmeterol in human milk, the effects on the breastfed child, or the effects on milk production. Other corticosteroids have been detected in human milk. However, fluticasone propionate and salmeterol concentrations in plasma after inhaled therapeutic doses are low and therefore concentrations in human breast milk are likely to be correspondingly low [see Clinical Pharmacology (12.3)] . The developmental and health benefits of breastfeeding should be considered along with the mother’s clinical need for Fluticasone Propionate/Salmeterol MDPI and any potential adverse effects on the breastfed child from Fluticasone Propionate/Salmeterol MDPI or from the underlying maternal condition. Data Animal Data Subcutaneous administration of tritiated fluticasone propionate at a dose in lactating rats approximately 0.2 times the MRHDID for adults (on a mcg/m 2 basis) resulted in measurable levels in milk. Oral administration of salmeterol at a dose in lactating rats approximately 2900 times the MRHDID for adults (on a mcg/m 2 basis) resulted in measurable levels in milk . 8.4 Pediatric Use The safety and effectiveness of Fluticasone Propionate/Salmeterol MDPI have been established for the treatment of asthma in pediatric patients aged 12 years and older whose asthma (1) is inadequately controlled on a long term asthma control medication or (2) warrants initiation of treatment with both an ICS and a LABA. Use of Fluticasone Propionate/Salmeterol MDPI in pediatric patients aged 12 to 17 years for this indication is supported by evidence from two adequate and well-controlled trials in pediatric patients 12 years old and older with persistent symptomatic asthma despite ICS or ICS/LABA therapy (Trials 1 and 2) [see Clinical Studies ( 14 )]. In these trials, 58 adolescents received Fluticasone Propionate/Salmeterol MDPI one inhalation twice daily. The safety and effectiveness of Fluticasone Propionate/Salmeterol MDPI have not been established in pediatric patients younger than 12 years of age for the treatment of asthma. Effectiveness was not demonstrated in one adequate and well-controlled study conducted in 211 patients aged 4 to 11 years with persistent asthma on a stable asthma regimen who were treated with Fluticasone Propionate/Salmeterol MDPI 55 mcg/14 mcg one inhalation twice daily. Effect on Growth Inhaled corticosteroids, including fluticasone propionate, a component of this product, may cause a reduction in growth velocity in adolescents [see…

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Primary sourceFDA drug label via OpenFDA/DailyMed; Local active-ingredient clinical extract; Professional class pharmacology (Beta-2 adrenergic agonist (bronchodilator))
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