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Suprane

Desflurane · Liquid

Prescription NDA TE AN 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
Suprane
Generic name
Desflurane
Dosage form
Liquid
Route
Respiratory (Inhalation)
Marketing category
NDA · NDA
Labeler
Baxter Healthcare Corporation
Product type
Human Prescription Drug
DEA schedule
Not scheduled
Active ingredients
1
NDC product codes
4
Packages
4
Data completeness
76% of corroborating sources present

Active ingredients

Source: NDC Directory
Active ingredients and strengths as listed in the NDC Directory.
Ingredient Strength RxCUI Monograph
Desflurane 240 mL/240mL 208919 View

Forms, strengths and routes

Source: NDC Directory
Dosage form
Liquid
Route of administration
Respiratory (Inhalation)
Presentations
8

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
General Anesthesia [PE] PE All 29 members
General Anesthetic [EPC] EPC All 17 members

Regulatory status

Source: Drugs@FDANDC Directory
Application number
020118
Application type
NDA · New Drug Application
Approval date
September 18, 1992
Sponsor
BAXTER HLTHCARE
Products on application
1
Submissions recorded
20
Products approved under application 020118.
Product Trade name Form Strength Ingredient Status TE Flags
020118-001 SUPRANE LIQUID DESFLURANE Prescription AN RLD RS

Therapeutic equivalence

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

What 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
Most recent submissions on application 020118.
Type No. Action Status Date Review
Supplement 26 Labeling Approved November 1, 2022 Standard
Supplement 23 Labeling Approved March 1, 2019 Standard
Supplement 22 Manufacturing (CMC) Approved March 1, 2019 Standard
Supplement 24 Labeling Approved April 27, 2017 Standard
Supplement 21 Labeling Approved November 4, 2016 Standard
Supplement 20 Labeling Approved February 26, 2015 Standard
Supplement 19 Manufacturing (CMC) Approved September 27, 2013 Standard
Supplement 18 Labeling Approved September 23, 2013 Standard
Supplement 17 Labeling Approved April 5, 2010 Standard
Supplement 16 Labeling Approved April 14, 2009 Standard
Supplement 12 Efficacy Approved December 15, 2006 Priority
Supplement 11 Labeling Approved August 14, 2006 Standard
Supplement 10 Labeling Approved May 8, 2006 Standard
Supplement 8 Manufacturing (CMC) Approved August 8, 2002 Standard
Supplement 7 Manufacturing (CMC) Approved December 2, 1999 Standard
Supplement 5 Manufacturing (CMC) Approved December 9, 1998 Standard
Supplement 4 Manufacturing (CMC) Approved December 16, 1997 Standard
Supplement 2 Labeling Approved July 5, 1995 Standard
Supplement 1 Manufacturing (CMC) Approved March 26, 1993 Standard
Original application 1 Type 1 - New Molecular Entity Approved September 18, 1992 Standard

Review documents

  • 0 · Supplement · November 2, 2022
  • 0 · Supplement · November 2, 2022
  • 0 · Supplement · March 14, 2019
  • 0 · Supplement · March 14, 2019
  • 0 · Supplement · May 8, 2018
  • 0 · Supplement · May 8, 2018
  • 0 · Supplement · May 2, 2017
  • 0 · Supplement · May 2, 2017
  • 0 · Supplement · November 8, 2016
  • 0 · Supplement · November 8, 2016
  • 0 · Supplement · March 2, 2015
  • 0 · Supplement · February 27, 2015
  • 0 · Supplement · September 24, 2013
  • 0 · Supplement · September 23, 2013
  • 0 · Supplement · April 8, 2010
  • 0 · Supplement · April 5, 2010
  • 0 · Supplement · April 23, 2009
  • 0 · Supplement · April 20, 2009
  • 0 · Supplement · December 28, 2006
  • 0 · Supplement · December 26, 2006
  • 0 · Supplement · August 21, 2006
  • 0 · Supplement · August 18, 2006
  • 0 · Supplement · May 16, 2006
  • 0 · Supplement · May 16, 2006
  • 0 · Supplement · January 1, 1900
  • 0 · Supplement · January 1, 1900
  • 0 · Supplement · January 1, 1900
  • 0 · Supplement · January 1, 1900

Prescribing information

Source: openFDA Drug Labeling

Reproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20260715). This is the manufacturer's labelling text, not a summary and not advice.

HUMAN PRESCRIPTION DRUG · 20260715 HUMAN PRESCRIPTION DRUG · 20251014 HUMAN PRESCRIPTION DRUG · 20251014

Recent Major Changes

openFDA Drug Labeling

RECENT MAJOR CHANGES Contraindications (4) 11/2022 Warnings and Precautions; Malignant Hyperthermia (5.1) 11/2022

Indications and Usage

openFDA Drug Labeling

1 INDICATIONS AND USAGE SUPRANE, a general anesthetic, is an inhalation agent indicated: • for induction and/or maintenance of anesthesia in adults ( 1.1 ) • for maintenance of anesthesia in pediatric patients following induction with agents other than SUPRANE and intubation. 1.1 Induction of Anesthesia SUPRANE is indicated as an inhalation agent for induction of anesthesia for inpatient and outpatient surgery in adults. SUPRANE is contraindicated as an inhalation agent for the induction of anesthesia in pediatric patients because of a high incidence of moderate to severe upper airway adverse events. 1.2 Maintenance of Anesthesia SUPRANE is indicated as an inhalation agent for maintenance of anesthesia for inpatient and outpatient surgery in adults and in pediatric patients. After induction of anesthesia with agents other than SUPRANE, and tracheal intubation, SUPRANE is indicated for maintenance of anesthesia in infants and children. SUPRANE is not approved for maintenance of anesthesia in non-intubated children due to an increased incidence of respiratory adverse reactions, including coughing, laryngospasm, and secretions [ See Warnings and Precautions (5.3) and Clinical Studies (14.5) ].

Dosage and Administration

openFDA Drug Labeling

2 DOSAGE AND ADMINISTRATION Only persons trained in the administration of general anesthesia should administer SUPRANE. Only a vaporizer specifically designed and designated for use with desflurane should be utilized for its administration. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment, and circulatory resuscitation must be immediately available. SUPRANE is administered by inhalation. The administration of general anesthesia must be individualized based on the patient’s response. Hypotension and respiratory depression increase as anesthesia with SUPRANE is deepened. The minimum alveolar concentration (MAC) of SUPRANE decreases with increasing patient age. The MAC for SUPRANE is also reduced by concomitant N 2 O administration ( see Table 1 ). The dose should be adjusted accordingly. The following table provides mean relative potency based upon age and effect of N 2 O in predominately ASA physical status I or II patients. Benzodiazepines and opioids decrease the MAC of SUPRANE [ See Drug Interactions (7.1, Table 3) ] . SUPRANE also decreases the doses of neuromuscular blocking agents required [ See Drug Interactions (7.2, Table 4) ]. The dose should be adjusted accordingly. Table 1 Effect of Age on Minimum Alveolar Concentration of Desflurane Mean ± SD (percent atmospheres) Age N O 2 100% N N 2 O 60%/40% O 2 2 weeks 6 9.2 ± 0.0 - - 10 weeks 5 9.4 ± 0.4 - - 9 months 4 10.0 ± 0.7 5 7.5 ± 0.8 2 years 3 9.1 ± 0.6 - - 3 years - - 5 6.4 ± 0.4 4 years 4 8.6 ± 0.6 - - 7 years 5 8.1 ± 0.6 - - 25 years 4 7.3 ± 0.0 4 4.0 ± 0.3 45 years 4 6.0 ± 0.3 6 2.8 ± 0.6 70 years 6 5.2 ± 0.6 6 1.7 ± 0.4 N = number of crossover pairs (using up-and-down method of quantal response) • SUPRANE should be administered only by persons trained in the administration of general anesthesia. It should only be administered using a vaporizer specifically designed and designated for use with SUPRANE. ( 2 ) • The administration of general anesthesia must be individualized based on the patient’s response, including cardiovascular and pulmonary changes. ( 2 ) • SUPRANE should not be used as the sole agent for anesthetic induction in patients with coronary artery disease or where increases in heart rate or blood pressure are undesirable. ( 2.6 ) • For dosing considerations in patients with intracranial space occupying lesions, see Full Prescribing Information. ( 2.7 ) 2.1 Preanesthetic Medication Issues such as whether or not to premedicate and the choice of premedication(s) must be individualized. In clinical studies, patients scheduled to be anesthetized with SUPRANE frequently received IV preanesthetic medication, such as opioid and/or benzodiazepine. 2.2 Induction In adults, some premedicated with opioid, a frequent starting concentration was 3% SUPRANE, increased in 0.5-1.0% increments every 2 to 3 breaths. End-tidal concentrations of 4-11%, SUPRANE with and without N 2 O, produced anesthesia within 2 to 4 minutes. When SUPRANE was tested as the primary anesthetic induction agent, the incidence of upper airway irritation (apnea, breathholding, laryngospasm, coughing and secretions) was high. During induction in adults, the overall incidence of oxyhemoglobin desaturation (SpO 2 < 90%) was 6% [ See Adverse Reactions (6.1) ] . After induction in adults with an intravenous drug such as thiopental or propofol, SUPRANE can be started at approximately 0.5-1 MAC, whether the carrier gas is O 2 or N 2 O/O 2 . Inspired concentrations of SUPRANE greater than 12% have been safely administered to patients, particularly during induction of anesthesia. Such concentrations will proportionately dilute the concentration of oxygen; therefore, maintenance of an adequate concentration of oxygen may require a reduction of nitrous oxide or air if these gases are used concurrently. 2.3 Maintenance Surgical levels of anesthesia in adults may be maintained with concentrations of 2.5-8.5% SUPRANE with or without the concomitant use of nitrous oxide. …

Dosage Forms and Strengths

openFDA Drug Labeling

3 DOSAGE FORMS AND STRENGTHS SUPRANE (desflurane, USP) is a colorless, non-flammable, volatile liquid (below 22.8°C) for inhalation, 100% desflurane. • Liquid (volatile): 100% ( 3 )

Contraindications

openFDA Drug Labeling

4 CONTRAINDICATIONS The use of SUPRANE is contraindicated in the following conditions: • Known or suspected genetic susceptibility to malignant hyperthermia [see Warnings and Precautions (5.1) , Clinical Pharmacology (12.5) ] . • Patients in whom general anesthesia is contraindicated. • Induction of anesthesia in pediatric patients. • Patients with known sensitivity to SUPRANE or to other halogenated agents [ See Warnings and Precautions (5.5) ]. • Patients with a history of moderate to severe hepatic dysfunction following anesthesia with SUPRANE or other halogenated agents and not otherwise explained [ See Warnings and Precautions (5.5) ]. • Patients with known or suspected genetic susceptibility to malignant hyperthermia ( 4 ) • Patients in whom general anesthesia is contraindicated ( 4 ) • Induction of anesthesia in pediatric patients ( 4 ) • Patients with known sensitivity to halogenated agents ( 4 ) • Patients with a history of moderate to severe hepatic dysfunction following anesthesia with halogenated agents and not otherwise explained. ( 4 )

Warnings and Cautions

openFDA Drug Labeling

5 WARNINGS AND PRECAUTIONS • Malignant Hyperthermia : Malignant hyperthermia may occur, especially in individuals with known or suspected susceptibility based on genetic factors or family history. Discontinue triggering agents, administer intravenous dantrolene sodium, and apply supportive therapies. ( 5.1 ) • Perioperative Hyperkalemia : Perioperative hyperkalemia may occur. Patients with latent or overt neuromuscular disease, particularly with Duchenne muscular dystrophy, appear to be most vulnerable. Early, aggressive intervention is recommended. ( 5.2 ) • Respiratory Adverse Reactions in Pediatric Patients : - Not approved for maintenance of anesthesia in non-intubated children due to an increased incidence of respiratory adverse reactions. Monitor and treat accordingly.( 5.3 ) - May cause airway narrowing and increased airway resistance in children with asthma or a history of recent upper airway infection. Monitor and treat accordingly.( 5.3 ) • QT Prolongation : Carefully monitor cardiac rhythm when administering SUPRANE to susceptible patients. ( 5.4 ) • Interactions with Desiccated Carbon Dioxide (CO 2 ) Absorbents : May react with desiccated CO 2 absorbents to produce carbon monoxide. Replace desiccated CO 2 absorbent before administration of SUPRANE. ( 5.5 ) • Hepatobiliary Disorders : May cause sensitivity hepatitis in patients sensitized by previous exposure to halogenated anesthetics. Approach repeated anesthesia with caution. ( 5.6 ) • Pediatric Neurotoxicity : In developing animals, exposures greater than 3 hours cause neurotoxicity. Weigh benefits against potential risks when considering elective procedures in children under 3 years old. ( 5.7 ) • Postoperative Agitation in Children : May cause postoperative agitation during emergence from anesthesia in children. ( 5.9 ) 5.1 Malignant Hyperthermia In susceptible individuals, volatile anesthetic agents, including desflurane, may trigger malignant hyperthermia, a skeletal muscle hypermetabolic state leading to high oxygen demand. Fatal outcomes of malignant hyperthermia have been reported. The risk of developing malignant hyperthermia increases with the concomitant administration of succinylcholine and volatile anesthetic agents. SUPRANE can induce malignant hyperthermia in patients with known or suspected susceptibility based on genetic factors or family history, including those with certain inherited ryanodine receptor ( RYR1 ) or dihydropyridine receptor ( CACNA1S ) variants. [see Contraindications (4) , Clinical Pharmacology (12.5) ] Signs consistent with malignant hyperthermia may include hyperthermia, hypoxia, hypercapnia, muscle rigidity (e.g., jaw muscle spasm), tachycardia (e.g., particularly that unresponsive to deepening anesthesia or analgesic medication administration), tachypnea, cyanosis, arrhythmias, hypovolemia, and hemodynamic instability. Skin mottling, coagulopathies, and renal failure may occur later in the course of the hypermetabolic process. Successful treatment of malignant hyperthermia depends on early recognition of the clinical signs. If malignant hyperthermia is suspected, discontinue all triggering agents (i.e., volatile anesthetic agents and succinylcholine), administer intravenous dantrolene sodium, and initiate supportive therapies. Consult prescribing information for intravenous dantrolene sodium for additional information on patient management. Supportive therapies include administration of supplemental oxygen and respiratory support based on clinical need, maintenance of hemodynamic stability and adequate urinary output, management of fluid and electrolyte balance, correction of acid basederangements, and institution of measures to control rising temperature. 5.2 Perioperative Hyperkalemia Use of inhaled anesthetic agents has been associated with rare increases in serum potassium levels that have resulted in cardiac arrhythmias and death in pediatric patients during the postoperative period. Patients with latent as well as over …

Adverse Reactions

openFDA Drug Labeling

6 ADVERSE REACTIONS Most common adverse reactions (incidence> 10%) are coughing, breath holding, apnea, nausea, vomiting. (6) To report SUSPECTED ADVERSE REACTIONS, contact Baxter Healthcare Corporation at 1-800-262-3784 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 a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice. Adverse event information is derived from controlled clinical trials, the majority of which were conducted in the United States. The studies were conducted using a variety of premedications, other anesthetics, and surgical procedures of varying length. Most adverse events reported were mild and transient, and may reflect the surgical procedures, patient characteristics (including disease) and/or medications administered. Of the 2,143 patients exposed to SUPRANE in clinical trials, 370 adults and 152 children were induced with desflurane alone and 987 patients were maintained principally with desflurane. The frequencies given reflect the percent of patients with the event. Each patient was counted once for each type of adverse event. They are presented in alphabetical order according to body system. Table 2 Frequency of Events Occurring in Greater Than 1% of Clinical Trial Patients (in Reports Deemed “Probably Causally Related”) Induction (use as a mask inhalation agent) Adult Patients (N=370): Coughing 34%, breathholding 30%, apnea 15%, increased secretions Incidence of events 3% - 10% , laryngospasm , oxyhemoglobin desaturation (SpO 2 < 90%) , pharyngitis . Maintenance or Recovery Adult and Intubated Pediatric Patients (N=687): Body as a Whole Headache Cardiovascular Bradycardia, hypertension, nodal arrhythmia, tachycardia Digestive Nausea 27%, vomiting 16% Nervous system Increased salivation Respiratory Apnea , breathholding, cough increased , laryngospasm , pharyngitis Special Senses Conjunctivitis (conjunctival hyperemia) Frequency of Events Occurring in Less Than 1% of Patients (in Reports Deemed “Probably Causally Related”) Reported in 3 or more patients, regardless of severity Adverse reactions reported only from postmarketing experience or in the literature, not seen in clinical trials, are considered rare and are italicized. Cardiovascular Arrhythmia, bigeminy, abnormal electrocardiogram, myocardial ischemia, vasodilation Digestive Hepatitis Nervous System Agitation, dizziness Respiratory Asthma, dyspnea, hypoxia Frequency of Events Occurring in Less Than 1% of Clinical Trial Patients (in Reports Deemed “Causal Relationship Unknown”) Reported in 3 or more patients, regardless of severity Body as a Whole Fever Cardiovascular Hemorrhage, myocardial infarction Metabolic and Nutrition Increased creatinine phosphokinase Musculoskeletal System Myalgia Skin and Appendages Pruritus 6.2 Post-Marketing Experience The following adverse reactions have been identified during post-approval use of SUPRANE. Because these reactions are reported voluntarily from a population of uncertain size, it is not possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Blood and Lymphatic System Disorders : Coagulopathy Metabolism and Nutrition Disorders : Hyperkalemia, Hypokalemia, metabolic acidosis Psychiatric Disorders: Delirium Nervous System Disorders : Convulsion, Post-operative agitation in children Eye Disorders: Ocular icterus Cardiac Disorders: Cardiac arrest, electrocardiogram QT prolonged, torsade de pointes, ventricular failure, ventricular hypokinesia, atrial fibrillation Vascular Disorders: Malignant hypertension, hemorrhage, hypotension, shock Respiratory, Thoracic and Mediastinal Disorders: Respiratory arrest, respiratory failure, respiratory distress, bronchospasm, hemoptysis Gastrointestinal Disorders : Pancreatitis acute, abdom …

Drug Interactions

openFDA Drug Labeling

7 DRUG INTERACTIONS No clinically significant adverse interactions with commonly used preanesthetic drugs, or drugs used during anesthesia (muscle relaxants, intravenous agents, and local anesthetic agents) were reported in clinical trials. The effect of SUPRANE on the disposition of other drugs has not been determined. Similar to isoflurane, SUPRANE does not predispose to premature ventricular arrhythmias in the presence of exogenously infused epinephrine in swine. • Concomitant use of N 2 O, benzodiazepines and/or opioids reduces the MAC of SUPRANE. Adjust dose accordingly. ( 7.1 , 7.3 ) • SUPRANE decreases the doses of neuromuscular blocking agents required. Adjust dose accordingly. ( 7.2 ) 7.1 Benzodiazepines and Opioids (MAC Reduction) Benzodiazepines and opioids decrease the amount of desflurane (MAC) needed to produce anesthesia. This effect is shown in Table 3 for intravenous midazolam (25-50 μg/kg) and intravenous fentanyl (3-6 μg/kg) in patients of two different age groups. Table 3 SUPRANE MAC with Fentanyl or Midazolam Mean ± SD (percent reduction) Dose 18-30 years 31-65 years No fentanyl 6.4 ± 0.0 6.3 ± 0.4 3 μg/kg fentanyl 3.5 ± 1.9 (46%) 3.1 ± 0.6 (51%) 6 μg/kg fentanyl 3.0 ± 1.2 (53%) 2.3 ± 1.0 (64%) No midazolam 6.9 ± 0.1 5.9 ± 0.6 25 μg/kg midazolam - 4.9 ± 0.9 (16%) 50 μg/kg midazolam - 4.9 ± 0.5 (17%) 7.2 Neuromuscular Blocking Agents Anesthetic concentrations of desflurane at equilibrium (administered for 15 or more minutes before testing) reduced the ED 95 of succinylcholine by approximately 30% and that of atracurium and pancuronium by approximately 50% compared to N 2 O/opioid anesthesia ( see Table 4 ). The effect of desflurane on duration of nondepolarizing neuromuscular blockade has not been studied. Table 4 Dosage of Muscle Relaxant Causing 95% Depression in Neuromuscular Blockade Desflurane Concentration Mean ED 95 (μg/kg) Pancuronium Atracurium Succinylcholine Vecuronium 0.65 MAC 60% N 2 O/O 2 26 133 - - 1.25 MAC 60% N 2 O/O 2 18 119 - - 1.25 MAC O 2 22 120 360 19 Dosage reduction of neuromuscular blocking agents during induction of anesthesia may result in delayed onset of conditions suitable for endotracheal intubation or inadequate muscle relaxation, because potentiation of neuromuscular blocking agents requires equilibration of muscle with the delivered partial pressure of SUPRANE. Among nondepolarizing drugs, pancuronium, atracurium, and vecuronium interactions have been studied. In the absence of specific guidelines: 1. For endotracheal intubation, do not reduce the dose of nondepolarizing muscle relaxants or succinylcholine. 2. During maintenance of anesthesia, the dose of nondepolarizing muscle relaxants is likely to be reduced compared to that during N 2 O/opioid anesthesia. Administration of supplemental doses of muscle relaxants should be guided by the response to nerve stimulation. 7.3 Concomitant use with N 2 O Concomitant administration of N 2 O reduces the MAC of SUPRANE [ See Dosage and Administration (2), Table 1 ].

Use in Specific Populations

openFDA Drug Labeling

8. USE IN SPECIFIC POPULATIONS 8.1 Pregnancy Risk Summary There are no adequate and well-controlled studies in pregnant women. In animal reproduction studies, embryo-fetal toxicity (reduced viable fetuses and/or increased post-implantation loss) was noted in pregnant rats and rabbits administered 1 MAC desflurane for 4 hours a day (4 MAC-hours/day) during organogenesis. Published studies in pregnant primates demonstrate that the administration of anesthetic and sedation drugs that block NMDA receptors and/or potentiate GABA activity during the period of peak brain development increases neuronal apoptosis in the developing brain of the offspring when used for longer than 3 hours. There are no data on pregnancy exposures in primates corresponding to periods prior to the third trimester in humans [See Data]. The estimated background risk of major birth defects and miscarriage for the indicated population is unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2-4% and 15- 20%, respectively. Clinical Considerations Labor or Delivery The safety of SUPRANE during labor or delivery has not been demonstrated. SUPRANE is a uterine-relaxant. Data Animal Data Pregnant rats were exposed to 8.2% desflurane (1 MAC; 60% oxygen) for 0.5, 1.0, or 4.0 hours (0.5, 1.0, or 4.0 MAC-hours) per day during organogenesis (Gestation Day 6-15). Embryo-fetal toxicity (increased post-implantation loss and reduced viable fetuses) was noted in the 4 hour treatment group in the presence of maternal toxicity (reduced body weight gain). There was no evidence of malformations in any group. Pregnant rabbits were exposed to 8.9% desflurane (1 MAC; 60% oxygen) for 0.5, 1.0, or 3.0 hours per day during organogenesis (Gestation Days 6-18). Fetal toxicity (reduced viable fetuses) was noted in the 3 hour treatment group in the presence of maternal toxicity (reduced body weight). There was no evidence of malformations in any group. Pregnant rats were exposed to 8.2% desflurane (1 MAC; 60% oxygen) for 0.5, 1.0, or 4.0 hours per day from late gestation and through lactation (Gestation Day 15 to Lactation Day 21). Pup body weights were reduced in the 4 hours per day group in the presence of maternal toxicity (increased mortality and reduced body weight gain). This study did not evaluate neurobehavioral function including learning and memory or reproductive behavior in the first generation (F1) pups. In a published study in primates, administration of an anesthetic dose of ketamine for 24 hours on Gestation Day 122 increased neuronal apoptosis in the developing brain of the fetus. In other published studies, administration of either isoflurane or propofol for 5 hours on Gestation Day 120 resulted in increased neuronal and oligodendrocyte apoptosis in the developing brain of the offspring. With respect to brain development, this time period corresponds to the third trimester of gestation in the human. The clinical significance of these findings is not clear; however, studies in juvenile animals suggest neuroapoptosis correlates with long-term cognitive deficits [See Warnings and Precautions (5.6), Use in Specific Populations (8.4), and Nonclinical Toxicology (13.2)]. 8.2 Lactation It is not known whether this drug is excreted in human milk. Because many drugs are excreted in human milk, caution should be exercised when SUPRANE is administered to a nursing woman. 8.4 Pediatric Use Respiratory Adverse Reactions in Pediatric Patients SUPRANE is indicated for maintenance of anesthesia in infants and children after induction of anesthesia with agents other than SUPRANE, and tracheal intubation. Is not approved for maintenance of anesthesia in non-intubated children due to an increased incidence of respiratory adverse reactions, including coughing (26%), laryngospasm (13%) and secretions (12%) [Se …

Description

openFDA Drug Labeling

11 DESCRIPTION SUPRANE (desflurane, USP), a nonflammable liquid administered via vaporizer, is a general inhalation anesthetic. It is (±)1,2,2,2-tetrafluoroethyl difluoromethyl ether: Some physical constants are: Molecular weight 168.04 Specific gravity (at 20°C/4°C) 1.465 Vapor pressure in mm Hg 669 mm Hg @ 20°C 731 mm Hg @ 22°C 757 mm Hg @ 22.8°C (boiling point;1atm) 764 mm Hg @ 23°C 798 mm Hg @ 24°C 869 mm Hg @ 26°C Partition coefficients at 37°C: Blood/Gas 0.424 Olive Oil/Gas 18.7 Brain/Gas 0.54 Mean Component/Gas Partition Coefficients: Polypropylene (Y piece) 6.7 Polyethylene (circuit tube) 16.2 Latex rubber (bag) 19.3 Latex rubber (bellows) 10.4 Polyvinylchloride (endotracheal tube) 34.7 SUPRANE is nonflammable as defined by the requirements of International Electrotechnical Commission 601-2-13. SUPRANE is a colorless, volatile liquid below 22.8°C. Data indicate that SUPRANE is stable when stored under normal room lighting conditions according to instructions. SUPRANE is chemically stable. The only known degradation reaction is through prolonged direct contact with soda lime producing low levels of fluoroform (CHF 3 ). The amount of CHF 3 obtained is similar to that produced with MAC-equivalent doses of isoflurane. No discernible degradation occurs in the presence of strong acids. SUPRANE does not corrode stainless steel, brass, aluminum, anodized aluminum, nickel plated brass, copper, or beryllium. Suprane Chemical Structure Image

10. OVERDOSAGE The symptoms of overdosage of SUPRANE can present as a deepening of anesthesia, cardiac and/or respiratory depression in spontaneously breathing patients, and cardiac depression in ventilated patients in whom hypercapnia and hypoxia may occur only at a late stage. In the event of overdosage, or suspected overdosage, take the following actions: discontinue administration of SUPRANE, maintain a patent airway, initiate assisted or controlled ventilation with oxygen, and maintain adequate cardiovascular function.

How Supplied / Storage and Handling

openFDA Drug Labeling

16. HOW SUPPLIED/STORAGE AND HANDLING SUPRANE (desflurane, USP) is available in an amber-colored glass bottle or an aluminum bottle containing 240 mL of desflurane as follows: 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 10019-641-34 6 Units Aluminum Bottle NDC 0404-9961-25 1 Aluminum Bottle in a bag (Bottle bears NDC 10019-641-64) 240 mL 16.1 Safety and Handling Occupational Caution There is no specific work exposure limit established for SUPRANE. However, the National Institute for Occupational Safety and Health Administration (NIOSH) recommends that no worker should be exposed at ceiling concentrations greater than 2 ppm of any halogenated anesthetic agent over a sampling period not to exceed one hour. Principle routes of exposure include: Skin contact May cause skin irritation. In case of contact, immediately flush skin with plenty of water. Remove contaminated clothing and shoes. Seek medical attention if irritation develops. Eye contact May cause eye irritation. In case of contact, immediately flush eyes with plenty of water for at least 15 minutes. Seek medical attention if irritation develops. Ingestion No specific hazards other than therapeutic effects. Do NOT induce vomiting unless directed to do so by medical personnel. Never give anything by mouth to an unconscious person. If large quantities of this material are swallowed, seek medical attention immediately. Inhalation If individuals smell vapors, or experience dizziness or headaches, they should be moved to an area with fresh air. Individuals could also experience the following: Cardiovascular effects: may include fluctuations in heart rate, changes in blood pressure, chest pain. Respiratory effects: may include shortness of breath, bronchospasms, laryngospasms, respiratory depression. Gastrointestinal effects: may include nausea, upset stomach, loss of appetite. Nervous System effects: may include ataxia, tremor, disturbance of speech, lethargy, headache, dizziness, blurred vision. The predicted effects of acute overexposure by inhalation of SUPRANE include headache, dizziness or (in extreme cases) unconsciousness [See Overdosage (10)]. There are no documented adverse effects of chronic exposure to halogenated anesthetic vapors (Waste Anesthetic Gases or WAGs) in the workplace. Although results of some epidemiological studies suggest a link between exposure to halogenated anesthetics and increased health problems (particularly spontaneous abortion), the relationship is not conclusive. Since exposure to WAGs is one possible factor in the findings for these studies, operating room personnel, and pregnant women in particular, should minimize exposure. Precautions include adequate general ventilation in the operating room, the use of a well-designed and well-maintained scavenging system; work practices to minimize leaks and spills while the anesthetic agent is in use, and routine equipment maintenance to minimize leaks. Consistent with clinical data, concentrations would need to reach 2-3% in inspired air before individuals would likely experience dizziness or other physiologic effects. 16.2 Storage Store at room temperature, 15°-30°C (59°-86°F). SUPRANE has been demonstrated to be stable for the period defined by the expiration dating on the label. The bottle should be recapped after each use of SUPRANE. Image9.jpg

Adverse event reports

Source: openFDA FAERS
1,699
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: DESFLURANE. 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
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
10019-641-34 10019-641 Baxter Healthcare Corporation 6 BOTTLE in 1 CARTON (10019-641-34) / 240 mL in 1 BOTTLE (10019-641-64) September 18, 1992
10019-644-34 10019-644 Baxter Healthcare Corporation 6 BOTTLE in 1 CARTON (10019-644-34) / 240 mL in 1 BOTTLE (10019-644-64) September 18, 1992
10019-646-34 10019-646 Baxter Healthcare Corporation 6 BOTTLE in 1 CARTON (10019-646-34) / 240 mL in 1 BOTTLE (10019-646-64) September 18, 1992
0404-9961-25 0404-9961 Henry Schein, Inc. 1 BOTTLE in 1 BAG (0404-9961-25) / 240 mL in 1 BOTTLE January 12, 2022
10019-641 10019-641 Baxter Healthcare Corporation — September 18, 1992
10019-644 10019-644 Baxter Healthcare Corporation — September 18, 1992
10019-646 10019-646 Baxter Healthcare Corporation — September 18, 1992
0404-9961 0404-9961 Henry Schein, Inc. — January 12, 2022

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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 · 11 sections on this page.