Pharmacy Guide

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Pharmacy Guide

Patient leaflets and SmPCs, drug interaction checker, official dosages and NHS pharmacy opening hours — all in one place.

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Sevoflurane 100% Inhalation Vapour, liquid

⚠ This medicine appears to have been discontinued

The electronic medicines compendium (emc) no longer publishes a Summary of Product Characteristics for this product, which usually means it is no longer marketed in the UK. The patient leaflet below is kept for reference, but the product may not be available.

If you were prescribed this medicine, other products containing Sevoflurane may still be available. Do not stop your treatment — ask your pharmacist or GP what to use instead.

Active substance: Sevoflurane

Equivalent medicines (same active substance, strength and form)

Source: electronic medicines compendium (emc)
Official leaflet: Read the PIL on emc

What it is and what it is used for

for

The active ingredient in Sevoflurane 100% Inhalation Vapour, liquid is sevoflurane, which is a general anaesthetic used for surgical operations and other procedures. It is an inhaled anaesthetic that is given to you as a vapour for you to breathe in. It causes you to fall into a deep sleep (induction of anaesthesia). It also maintains a deep, painless sleep during which you can undergo surgery (maintenance of anaesthesia). You must talk to a doctor if you do not feel better or if you feel worse. 2.

What you need to know before you take it

sevoflurane 100% inhalation vapour, liquid

Sevoflurane should be administered only by healthcare professionals appropriately trained in the administration of general anaesthesia under the supervision of or by an anaesthetist. You should not be given Sevoflurane 100% Inhalation Vapour, liquid if any of the following applies to you, please tell your doctor if:

  • There are medical reasons why you should not be given a general anaesthetic.
  • You have been told previously that you should not receive general anaesthesia.
  • You are hypersensitive (or allergy) to sevoflurane or other similar anaesthetic.
  • You, or anyone in your family, are susceptible to a condition called malignant hyperthermia (rapid rise in body temperature and severe muscle contractions) during anaesthesia.
  • You have liver problems or if you have previously had general anaesthetics, particularly if repeated over a short period of time. Some anaesthetics can occasionally cause problems in

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the liver, which can cause yellowing of the skin and eyes (jaundice). You have ever had QT prolongation (prolongation of a specific time interval in an ECG) or torsade de pointes (a specific type of heart rhythm), which may also be associated with QT prolongation. Sevoflurane has sometimes been known to cause these. You are prone to or at risk for seizures (fits). You have a mitochondrial disease.

Warnings and precautions Talk to your doctor before taking Sevoflurane 100% Inhalation Vapour, liquid if:

  • You have previously had general anaesthetics, particularly if repeated over a short period of time. You may have an increased risk of liver problems
  • You are suffering from any illness, other than those connected with your operation, particularly any kidney or heart problems, low blood pressure, severe headaches, nausea or vomiting or Pompe's disease in children (a metabolic disorder). Sevoflurane may produce abnormal heart rhythms, which may be severe in some cases
  • You have a certain type of muscle weakness (myasthenia gravis) because people with this disease are very sensitive to medicinal products that suppress breathing.
  • You have a coronary artery disease
  • You are hypovolaemic (reduced blood volume) or weak
  • You suffer from a neuromuscular disease, particularly Duchenne muscular dystrophy
  • You have raised pressure in the skull (intracranial pressure), such as from a head inUury or brain tumour
  • You have seizures or seizure disorders (fits), as sevoflurane may increase the risk of seizures.
  • You are pregnant or breastfeeding. Children
  • you have Down syndrome If any of the above apply to you check with your doctor, nurse or pharmacist. You may need to be checked carefully and your treatment may be changed. The following effects may occur during or after Sevoflurane 100% Inhalation Vapour administration: During the period in which you are anesthetized (induction phase), sevoflurane, as well as medicinal products that resemble it (halogenated anesthetics), may induce coughing. This must be taken into account. As with other anesthetics, minor mood changes may occur for a number of days after sevoflurane administration. Young children under the age of six are more likely to experience acute confusion (delirium) when waking up from anesthesia. In addition, children under the age of six are more likely to experience agitation/anxiety when waking up from anesthesia. In sensitive patients, anesthetics given by inhalation (inhalation anesthetics) may cause an increased metabolic (hypermetabolic) state of the skeletal muscles. This leads to high oxygen requirements of your muscles due to too high levels of CO2 in the blood (hypercapnia). In that case you may experience muscle stiffness (muscle rigidity), increased heart rate (tachycardia), increased breathing (tachypnea), blue discoloration of the lips, tongue, skin, and mucous membranes (cyanosis), heart rhythm disturbances (arrhythmia), and/or unstable blood pressure. In rare cases, the use of inhaled anesthetics (inhaled anesthetics) has been associated with an increased potassium level in the blood fluid (increase in serum potassium levels) that have led to heart rhythm disturbances (arrhythmias) and death in children after surgery.

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Sevoflurane may cause respiratory depression, which may be increased by narcotic premedication or other medicinal products that cause respiratory depression. Respiration should be monitored and if necessary be supported. Other medicines and Sevoflurane 100% Inhalation Vapour, liquid Tell your doctor if you are taking or have recently taken any of the following: The medicines or active substances contained in the medicines listed below may influence each other's effect when used together with Sevoflurane 100% Inhalation Vapour, liquid. Some of these medicines are given to you during your surgery by your anaesthetist, as indicated in the description.

  • Amphetamines (stimulants): used to treat attention-deficit hyperactivity disorder (ADHD) or narcolepsy)
  • Medicines that affect the heart such as adrenaline or epinephrine
  • Beta blockers (e.g. atenolol, propranolol): These are heart medicines often given to treat a high blood pressure.
  • Alcohol
  • Barbiturates (depressant)
  • St. John's Wort (an herbal remedy used to help with depression)
  • Decongestants (ephedrine): used as a decongestant and commonly found in cough and cold medicines
  • Non-selective monoamine oxidase (MAO) inhibitors (a type of antidepressants)
  • Calcium antagonists
  • Verapamil: This is a heart medicine, and it is given to treat a high blood pressure or when you suffer from an irregular heart beat.
  • Tranquillisers (benzodiazepines e.g. diazepam, lorazepam): These are sedative medicines, which have a calming effect. They are used when you feel nervous for instance before your surgery.
  • Strong painkillers such as morphine or codeine
  • Muscle relaxants (Non-depolarising e.g. vecuronium, pancuronium, atracurium and depolarising e.g. succinylcholine): These medicines are used during general anaesthesia to relax your muscles.
  • Isoniazid, used to treat tuberculosis (TB)
  • Isoprenaline

•

Other anaesthetics, e.g. nitrous oxide: This is a medicine used during general anaesthesia that will cause you to sleep and will ease your pain, propofol, opioids (e.g. alfentanil and sufentanil: These medicines are strong pain killers and are often used during general anaesthesia as sevoflurane may affect the way they work if they are given at the same time. Please tell your doctor or nurse if you are taking or have recently taken any other medicines, including medicines obtained without a prescription. This also applies to herbal medicinal products, vitamins and minerals. Sevoflurane 100% Inhalation Vapour, liquid with food and drink Sevoflurane 100% Inhalation Vapour, liquid is a medicine to make and keep you asleep so you can undergo surgery. You should ask your doctor, surgeon or anaesthetist when and what you can eat or drink after you wake up. Pregnancy and breast feeding Tell your doctor or anaesthetist if you are pregnant or think you may be pregnant or are breast feeding. It is not known whether sevoflurane or its by-products are transferred into human milk. It is

advisable to stop breast-feeding for 48 hours after sevoflurane administration and discard any milk that is produced during this period. You should not receive sevoflurane 100% Inhalation Vapour, liquid if you are pregnant unless it is essential. The use of sevoflurane for anesthesia during a C-section is safe for you as well as for your baby. The safety of sevoflurane during contractions and natural birth has not been demonstrated. Like other anesthetics, sevoflurane may cause reduced respiration in neonates. Your doctor will determine whether you may use sevoflurane. Driving and using machines Sevoflurane 100% Inhalation Vapour, liquid severely influences your ability to drive and operate tools. Do not drive or operate tools or machines until your doctor tells you it is safe. Receiving an anaesthetic may influence your alertness for several days. This may affect your ability to carry out tasks that require mental alertness. Ask your anaesthetist when it will be safe for you to drive and use machines again. 3.

How to take it

Sevoflurane 100% Inhalation Vapour, liquid will be given by a trained anaesthetist in a surgery or hospital. The anaesthetist will decide how much sevoflurane you need and when it is to be given. The dose will vary according to your age, weight, the type of surgery you need, and other medicines given to you during surgery. Sevoflurane 100% Inhalation Vapour, liquid is changed to vapour (gas) in a vaporiser. You will breathe it in as a vapour. It may be used to put you to sleep before your operation or, if you are put to sleep with an injection, it may be used to maintain anaesthesia during the operation. Once the anaesthetist stops you from inhaling sevoflurane, you will wake up within a few minutes. If you have any further questions on the use of this product, ask your anaesthetist, doctor or nurse. If you receive more Sevoflurane 100% Inhalation Vapour, liquid than you should Sevoflurane 100% Inhalation Vapour, liquid will be given to you by a healthcare professional and it is not likely that you will receive too much Sevoflurane 100% Inhalation Vapour, liquid. If you are given too much Sevoflurane 100% Inhalation Vapour, liquid, your anaesthetist will take any necessary measures. 4.

Possible side effects

Like all medicines, Sevoflurane 100% Inhalation Vapour, liquid can cause side effects, although not everybody gets them. It is however, important to consult your ward doctor, nurse or anaesthetist if you are feeling unwell. Serious rare side effects (can be life-threatening):

  • Anaphylaxis and anaphylactoid reactions (see not known side effects section for more information).

The following side effects are serious and you may need immediate medical attention. Hospital staff will monitor you throughout your anaesthesia and will give immediate assistance when necessary. Tell the doctor or nurse immediately if you have any of the following:

  • Allergic reactions, which can be severe, with swelling of the face, tongue and throat and difficulty breathing.
  • Malignant hyperthermia (very high temperature), which may require intensive care and may be fatal. This condition may run in families.
  • Increased potassium levels in the blood (hyperkalaemia), which may result in abnormal heart rhythms and can be fatal in children during the post-operative phase. This has been seen in patients with neuromuscular disease, particularly Duchenne muscular dystrophy. If you experience any of the following, tell your doctor or nurse: Very common side effects (may affect more than 1 in 10 people)
  • restlessness (agitation) in children
  • slow heart rate (bradycardia)
  • low blood pressure
  • coughing
  • nausea and vomiting. Common side effects (may affect up to 1 in 10 people)
  • headache
  • drowsiness
  • dizziness
  • fast heart rate
  • increased blood pressure
  • breathing disorder
  • airway obstruction
  • slow and shallow breathing
  • throat spasm, respiratory problems
  • mouth watering
  • hypothermia, chills
  • fever
  • abnormal blood sugar level, liver function test or white blood cell counts i.e. increased susceptibility to infections
  • increased blood fluoride. Uncommon side effects (may affect up to 1 to 100 people)
  • confusion
  • abnormal heart rhythm and abnormal heart beats
  • AV blockade (a disorder of the electrical conduction of the heart)
  • stopping breathing, low oxygen levels, fluid on the lungs
  • retention of urine, glucose in the urine
  • increased blood creatinine levels (an indicator of poor kidney function), as detected by a blood sample test. Other side effects [frequency not known (frequency cannot be estimated from available data)]
  • asthma
  • allergic reactions e.g.:
  • rash

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  • redness of the skin
  • urticaria (hives)
  • itching
  • swollen eyelids, breathing difficulties anaphylaxis and anaphylactoid reactions. These allergic reactions occur quickly and can be life- threatening. Symptoms of anaphylaxis include:
  • malignant hyperthermia
  • angioedema (swelling of the skin of the face, limbs, lips, tongue or throat)
  • breathing difficulties
  • low blood pressure
  • urticaria (hives) epilepsy-like fits sudden twitching movements cardiac arrest cramping of the airways difficulty in breathing or wheezing breath holding shortness of breath reduced liver function or hepatitis (inflamed liver), characterised by e.g. loss of appetite, fever, nausea, vomiting, abdominal discomfort, jaundice and dark urine. dangerously raised body temperature chest discomfort a rise in the pressure inside the skull irregular heart beat or palpitations inflammation of the pancreas Increases in blood potassium levels as detected by a blood sample test muscle stiffness inflammation of the kidneys (symptoms may include fever, confusion or sleepiness, rash, swelling, more or less urine than normal, and blood in the urine) swelling

Sometimes seizures (fits) are seen. These can occur when receiving Sevoflurane 100% Inhalation Vapour, liquid, or up to a day later during recovery. They occur mostly in children and young adults. In children with Down Syndrome who receive sevoflurane, a slowing of the heart rate can occur. Children with Pompe's disease, a disease that they are born with, may have irregular heart rhythm during anaesthesia with sevoflurane. Levels of fluoride in the blood may be raised slightly during and immediately after anaesthesia, but these levels are not thought to be harmful and soon return to normal. If any of the side effects get serious, or if you notice any side effects not listed in the leaflet, please tell your doctor or pharmacist. If you notice any change in the way you feel after receiving sevoflurane, please inform your doctor or pharmacist. Some side effects may need treatment. Reporting of side effects If you get any side effects, talk to your doctor, pharmacist or nurse. This includes any possible side effects not listed in this leaflet. You can also report side effects directly via Yellow Card Scheme at: www.mhra.gov.uk/yellowcard . By reporting side effects you can help provide more information on the safety of this medicine.

5.

How to store it

sevoflurane 100% inhalation vapour, liquid

Keep out of the sight and reach of children. Do not use Sevoflurane 100% Inhalation Vapour, liquid after the expiry date (MM-YYYY) which is stated on both the bottle label and carton. The expiry date refers to the last day of that month. The abbreviation, EXP is used for expiry date on the labels. Store below 25 °C. Do not refrigerate. Keep the bottle tightly closed. Store upright.

6.

Contents of the pack and other information

What Sevoflurane 100% Inhalation Vapour, liquid contains: Sevoflurane 100% Inhalation Vapour, liquid contains 100% of the active ingredient sevoflurane. There are no other ingredients. This medicine contains fluorinated greenhouse gases. Each container contains 380 g of Sevoflurane corresponding to 0.0741 tone CO2 equivalent (global warming potential GWP = 195). What Sevoflurane 100% Inhalation Vapour, liquid looks like and contents of the pack: Sevoflurane is a colourless liquid available in 250 ml amber coloured glass bottles (with or without an outer PVC coating) with either a screw cap or an integrated adaptor closure. Pack sizes of 1 and 6 bottles. Not all pack sizes may be marketed. Marketing Authorisation Holder Piramal Critical Care Limited Suite 4, Ground Floor, Heathrow Boulevard – East Wing, 280 Bath Road, West Drayton, UB7 0DQ, United Kingdom Manufacturer Piramal Critical Care B.V. Rouboslaan 32 (ground floor), 2252 TR Voorschoten The Netherlands

Or (For UK only) Piramal Critical Care Limited Suite 4, Ground Floor, Heathrow Boulevard – East Wing, 280 Bath Road, West Drayton, UB7 0DQ, United Kingdom. This medicinal product is authorised in the Member States of the EEA under the following names: Austria -Sevofluran Piramal 100 % Flüssigkeit zur Herstellung eines Dampfs zur Inhalation Bulgaria – Sevoflurane Piramal 100% Inhalation Vapour, liquid Cyprus – Sevoflurane – Piramal Czech Republic – Sojourn 100% tekutina k přípravě inhalace parou Denmark – SojournTM Estonia – Sevoflurane- Piramal, inhalatsiooniaur, vedelik 100% Germany – Sevofluran Piramal 100 % Flüssigkeit zur Herstellung eines Dampfs zur Inhalation Greece – SojournTM Sevoflurane 100% Inhalation Vapour, liquid Hungary – Sevoflurane Piramal folyadék inhalációs gőz képzéséhez Iceland – Sevoflurane Piramal 100% innöndunargufa, vökvi Ireland – Sevoflurane 100% Inhalation Vapour, liquid Italy – Sevoflurane Piramal Latvia – Sevoflurane Piramal 100 % Inhalation Vapour, liquid Lithuania – Sevoflurane Piramal 100% inhaliaciniai garai skystis Luxemburg – Sevoflurane 100% Malta – Sevoflurane 100% Inhalation Vapour, liquid Netherlands – Sevoflurane 100% (Piramal), Vloeistof voor inhalatiedamp Norway – Sevoflurane Piramal væske til inhalasjonsdamp Poland – Sojourn Portugal – Sevoflurano Ojourn 100% líquido para inalação por vaporização Slovenia – Sevofluran Piramal 250 ml para za inhaliranje, tekocina Spain – Sevoflurano Piramal 100% líquido para inhalación del vapor United Kingdom – Sevoflurane 100% Inhalation Vapour, liquid This leaflet was last revised in: 03/2026

Frequently asked questions about Sevoflurane 100% Inhalation Vapour, liquid

How do I take Sevoflurane 100% Inhalation Vapour, liquid?

Sevoflurane 100% Inhalation Vapour, liquid comes as inhaler. Always follow the dose your doctor or pharmacist has given you, and read the leaflet that comes with the medicine.

What is the active substance in Sevoflurane 100% Inhalation Vapour, liquid?

The active substance in Sevoflurane 100% Inhalation Vapour, liquid is sevoflurane.

Are there equivalent medicines to Sevoflurane 100% Inhalation Vapour, liquid?

Medicines with the same active substance, strength and form include: Sevoflurane Baxter, 100%, Inhalation vapour, liquid. They are interchangeable only if your prescriber or pharmacist says so.

Where does this information come from?

This leaflet reproduces the patient information leaflet approved for Sevoflurane 100% Inhalation Vapour, liquid, as published on the electronic medicines compendium (emc). The version printed inside your medicine’s packaging is the one that applies to you.

Can I get Sevoflurane 100% Inhalation Vapour, liquid without a prescription?

Whether a medicine is available over the counter or on prescription only depends on its licence. Check the leaflet, or ask your pharmacist — they can tell you straight away.

About this leaflet

The text above reproduces the patient information leaflet approved for this medicine, restructured for easier reading.

Medical disclaimer: This page is for information only and does not replace advice from your doctor or pharmacist. Always read the leaflet supplied with your medicine. If you are unwell, call NHS 111; in an emergency, call 999.

Medicines with the same active substance: Sevoflurane (3 medicines)
See every medicine containing this substance, or browse the full A–Z of active substances.
⚕For healthcare professionals — Summary of Product Characteristics (SmPC)Full SmPC: dosage, interactions, contraindications, warnings+
Technical information intended for healthcare professionals (doctors and pharmacists). The Summary of Product Characteristics (SmPC) is the official document approved by the MHRA/EMA. It does not replace the patient leaflet or a doctor’s advice.

4.1. Therapeutic indications

Induction and maintenance of general anaesthesia in adult and paediatric patients of all ages, including full term neonates (see section 4.2 for age details).

4.2. Posology and method of administration

Posology

Premedication should be selected according to the need of the individual patient, and at the discretion of the anaesthetist.

Surgical Anaesthesia:

Sevoflurane should be delivered via a vaporizer specifically calibrated for use with Sevoflurane so that the concentration delivered can be accurately controlled.

MAC (minimum alveolar concentration) values for sevoflurane decrease with age and with the addition of nitrous oxide. Dosage should be individualised and titrated to the desired effect according to the patient's age and clinical status. The table below indicates average MAC values for different age groups.

Table 1: MAC values for Adults and Paediatric patients according to age

Age of Patient (years)

Sevoflurane 100% Inhalation Vapour, liquid in Oxygen

Sevoflurane 100% Inhalation Vapour, liquid in 65% N2O/35% O2

0 – 1 months*

3.3%

2.0%**

1 - < 6 months

3.0%

6 months - < 3 years

2.8%

3 – 12

2.5%

25

2.6%

1.4%

40

2.1%

1.1%

60

1.7%

0.9%

80

1.4%

0.7%

* Neonates are full term gestational age. MAC in premature infants has not been determined.

** In 1 – <3 year old paediatric patients, 60% N2O/40% O2 was used.

Anaesthesia Induction

Dosage should be individualised and titrated to the desired effect according to the patient's age and clinical status. A short acting barbiturate or other intravenous induction agent may be administered followed by inhalation of sevoflurane.

Induction with sevoflurane may be achieved by inhalation of 0.5-1.0% sevoflurane in oxygen (O2) with or without nitrous oxide (N2O), increasing by increments of 0.5-1.0% sevoflurane, to a maximum of 8% in adults and children until the required depth of anaesthesia is achieved.

In adults inspired concentrations of up to 5% sevoflurane usually produce surgical anaesthesia in less than 2 minutes. In children, inspired concentrations of up to 7% sevoflurane usually produce surgical anaesthesia in less than 2 minutes.

Maintenance of Anaesthesia

Surgical levels of anaesthesia may be maintained by inhalation of 0.5-3% sevoflurane in O2 with or without concomitant use of N2O.

Emergence:

Emergence times are generally short following sevoflurane anaesthesia. Therefore, patients may require early postoperative pain relief. When all anaesthetic administration has been stopped, the patient's airways should be ventilated with 100% oxygen until complete awakening

Elderly people:

MAC decreases with increasing age. The average concentration of sevoflurane to achieve MAC in an 80 year old is approximately 50% of that required in a 20 year old.

Paediatric population:

Refer to Table 1 for MAC values for paediatric patients according to age when used in oxygen with or without concomitant use of nitrous oxide.

Impaired kidney function

Due to the small number of patients with renal impairment (baseline serum creatinine greater than 1.5 mg / dl) studied, the safety of sevoflurane administration in this group has not been fully established. Sevoflurane should therefore be administered with caution in patients with renal impairment.

Method of Administration

Inhalation use. Sevoflurane has to be administered either via face mask or via endotracheal tube. Sevoflurane should be administered only by persons trained in the administration of general anaesthesia. Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment and circulatory resuscitation must be immediately available. Sevoflurane should be delivered via a vaporiser specifically calibrated for use with sevoflurane so that the concentration delivered can be accurately controlled. If the carbon dioxide absorbent may be desiccated, it must be replaced before the use of sevoflurane. (see section 4.4.)

4.3. Contraindications

Sevoflurane should not be used in patients with known or suspected hypersensitivity to sevoflurane or other halogenated anaesthetics (e.g. history of liver function disorder, fever or leucocytosis of unknown cause after anaesthesia with one of these agents).

Sevoflurane is also contraindicated in patients with known or suspected genetic susceptibility to malignant hyperthermia.

Sevoflurane is contraindicated in patients in whom general anaesthesia is contraindicated.

Sevoflurane should not be used in patients with a history of unexplained moderate/severe hepatic dysfunction with jaundice, fever, and/or eosinophilia in association with halogenated anaesthetics.

Sevoflurane should not be used in patients with a history of confirmed hepatitis due to a halogenated inhalational anaesthetic or a history of unexplained moderate to severe hepatic dysfunction with jaundice, fever, and eosinophilia after anaesthesia with sevoflurane.

4.4. Special warnings and precautions for use

Sevoflurane may cause respiratory depression, which may be augmented by narcotic premedication or other agents causing respiratory depression. Respiration should be supervised and if necessary, assisted.

Sevoflurane should be administered only by persons trained in the administration of general anaesthesia.

Facilities for maintenance of a patent airway, artificial ventilation, oxygen enrichment and circulatory resuscitation must be immediately available. All patients anaesthetised with sevoflurane should be constantly monitored, including electrocardiogram (ECG), blood pressure (BP), oxygen saturation and end tidal carbon dioxide (CO2.)

The concentration of sevoflurane being delivered from a vaporiser must be known exactly. As volatile anaesthetics differ in their physical properties, only vaporisers specifically calibrated for sevoflurane must be used. The administration of general anaesthesia must be individualised based on the patient's response. Hypotension and respiratory depression increase as anaesthesia is deepened.

During the use of halogenated inhalational anaesthetics such as sevoflurane, an AV junctional rhythm may develop in isolated cases, especially when a vagolytic drug such as atropine has been given beforehand.

Awakening delirium is about 2-3 times more common in young children under six years of age than in adults. Agitation in awakening anaesthesia in young children has been reported more frequently with short-awakening anaesthetics such as sevoflurane compared to some other anaesthetics with longer awakening durations, such as propofol and halothane. Rapid emergence in children may be associated with agitation and lack of co-operation (in about 25% of cases).

As with other halogenated inhalational anaesthetics, sevoflurane has a dilating effect on the systemic and coronary arterial system. Therefore, sevoflurane should be used with caution in patients with coronary heart disease and it is important to maintain normal haemodynamics to avoid myocardial ischemia in these patients.

Malignant Hyperthermia

In susceptible individuals, potent inhalation anaesthetic agents may trigger a skeletal muscle hypermetabolic state leading to high oxygen demand and the clinical syndrome known as malignant hyperthermia. The clinical syndrome is signalled by hypercapnia, and may include muscle rigidity, tachycardia, tachypnoea, cyanosis, arrhythmias, and/or unstable blood pressure. Some of these nonspecific signs may also appear during light anaesthesia, acute hypoxia, hypercapnia and hypovolaemia.

In clinical trials, one case of malignant hyperthermia was reported. In addition, there have been postmarketing reports of malignant hyperthermia. Some of these reports have been fatal.

Treatment includes discontinuation of triggering agents (e.g. sevoflurane), administration of intravenous dantrolene sodium (consult prescribing information for intravenous dantrolene sodium for additional information on patient management), and application of supportive therapy. Such therapy includes vigorous efforts to restore body temperature to normal, respiratory and circulatory support as indicated, and management of electrolyte-fluid-acid-base abnormalities. Renal failure may appear later, and urine flow should be monitored and sustained if possible. Use of inhaled anaesthetic agents has been associated with rare increases in serum potassium levels that have resulted in cardiac arrhythmias and death in paediatric patients during the postoperative period.

Perioperative Hyperkalaemia

Use of inhaled anaesthetic agents has been associated with rare increases in serum potassium levels that have resulted in cardiac arrhythmias and death in paediatric patients during the postoperative period. Patients with latent as well as overt neuromuscular disease, particularly Duchenne muscular dystrophy, appear to be most vulnerable. Concomitant use of succinylcholine has been associated with most, but not all, of these cases. These patients also experienced significant elevations in serum creatine kinase levels and, in some cases, changes in urine consistent with myoglobinuria. Despite the similarity in presentation to malignant hyperthermia, none of these patients exhibited signs or symptoms of muscle rigidity or hypermetabolic state. Early and aggressive intervention to treat the hyperkalaemia and resistant arrhythmias is recommended, as is subsequent evaluation for latent neuromuscular disease. If a neuromuscular disease is suspected, further evaluation should take place.

Isolated reports of QT prolongation, very rarely associated with Torsades de Pointes (in exceptional cases, fatal), have been received. Caution should be exercised when administering sevoflurane to susceptible patients.

Isolated cases of ventricular arrhythmia were reported in paediatric patients with Pompe's disease.

Caution should be exercised in administering general anaesthesia, including sevoflurane, to patients with mitochondrial disorders.

Hepatic

Very rare cases of mild, moderate and severe post-operative hepatic dysfunction or hepatitis with or without jaundice have been reported from postmarketing experiences.

Clinical judgment should be exercised when sevoflurane is used in patients with underlying hepatic conditions or under treatment with drugs known to cause hepatic dysfunction. In patients who have experienced hepatic injury, jaundice, unexplained fever or eosinophilia after administration of other inhalation anaesthetics, it is recommended to avoid administration of sevoflurane if anaesthesia with intravenous medicinal products or regional anaesthesia is possible (see section 4.8).

Patients with repeated exposures to halogenated hydrocarbons, including sevoflurane, within a relatively short interval may have an increased risk of hepatic injury.

General

During the maintenance of anaesthesia, increasing the concentration of sevoflurane produces dose-dependent decreases in blood pressure. Excessive decrease in blood pressure may be related to depth of anaesthesia and in such instances may be corrected by decreasing the inspired concentration of sevoflurane. Due to sevoflurane's insolubility in blood, hemodynamic changes may occur more rapidly than with some other volatile anaesthetics. Particular care must be taken when selecting the dosage for patients who are hypovolaemic, hypotensive, or otherwise hemodynamically compromised, e.g., due to concomitant medications.

As with all anaesthetics, maintenance of haemodynamic stability is important to avoid myocardial ischaemia in patients with coronary artery disease.

Caution should be observed when using sevoflurane during obstetric anaesthesia because the relaxant effect on the uterus could increase the risk of uterine bleeding (see section 4.6).

The recovery from general anaesthesia should be assessed carefully before patients are discharged from the recovery room. Rapid emergence from anaesthesia is generally seen with sevoflurane so early relief of postoperative pain may be required. Although recovery of consciousness following sevoflurane administration generally occurs within minutes, the impact on intellectual function for two or three days following anaesthesia has not been studied. As with other anaesthetics, small changes in moods may persist for several days following administration (see section 4.7).

Replacement of Desiccated CO2 Absorbents:

Rare cases of extreme heat, smoke, and/or spontaneous fire in the anaesthesia machine have been reported during sevoflurane use in conjunction with the use of desiccated CO2 absorbent, specifically those containing potassium hydroxide (e.g. Baralyme). An unusually delayed rise or unexpected decline of inspired sevoflurane concentration compared to the vaporiser setting may be associated with excessive heating of the CO2 absorbent canister.

An exothermic reaction, enhanced sevoflurane degradation, and production of degradation products can occur when the CO2 absorbent becomes desiccated, such as after an extended period of dry gas flow through the CO2 absorbent canisters. Sevoflurane degradants (methanol, formaldehyde, carbon monoxide, and Compounds A, B, C, and D) were observed in the respiratory circuit of an experimental anaesthesia machine using desiccated CO2 absorbents and maximum sevoflurane concentrations (8%) for extended periods of time (≥ 2 hours). Concentrations of formaldehyde observed at the anaesthesia respiratory circuit (using sodium hydroxide containing absorbents) were consistent with levels known to cause mild respiratory irritation. The clinical relevance of the degradants observed under this extreme experimental model is unknown.

If a health care professional suspects that the CO2 absorbent has become desiccated, it must be replaced before subsequent use of volatile anaesthetics (such as sevoflurane). It must be taken into account that the colour indicator does not always change after desiccation has taken place. Therefore, the lack of significant colour change should not be taken as an assurance of adequate hydration. CO2 absorbents should be replaced routinely regardless of the state of the colour indicator (see Section 6.6).

Renal Impairment:

Although data from controlled clinical studies at low flow rates are limited, findings taken from patient and animal studies suggest there is a potential for renal injury, which is presumed due to Compound A. Therefore, sevoflurane should be used with caution in patients with renal insufficiency. Animal and human studies demonstrate that sevoflurane administered for more than 2 MAC hours and at fresh gas flow rates of <2 L/min may be associated with proteinuria and glycosuria. Also see Section 5.1.

In some studies in rats, nephrotoxicity was seen in animals exposed to levels of Compound A (pentafluoroisopropenyl fluoromethyl ether (PIFE)) in excess of those usually seen in routine clinical practice. Consider all of the factors leading to Compound A exposure in humans, especially duration of exposure, fresh gas flow rate, and concentration of sevoflurane.

Inspired sevoflurane concentration and fresh gas flow rate should be adjusted to minimize exposure to Compound A. Sevoflurane exposure should not exceed 2 MAC hours at flow rates of 1 to <2 L/min. Fresh gas flow rates <1 L/min are not recommended.

The mechanism of this renal toxicity in rats is unknown and its relevance to man has not been established. (See Section 5.3, Preclinical Safety Data for further details.)

Sevoflurane should be administered with caution to patients with impaired renal function (GFR ≤ 60 ml/min); renal function should be monitored postoperatively.

Neurosurgery & Neuromuscular Impairment:

In patients at risk from elevation of intra-cranial pressure, sevoflurane should be administered cautiously in conjunction with techniques to lower intra-cranial pressure (e.g. hyperventilation).

Seizures:

Rare cases of seizures have been reported in association with sevoflurane use.

Use of sevoflurane has been associated with seizures occurring in children and young adults as well as older adults with and without predisposing risk factors. Clinical judgment is necessary before sevoflurane is used in patients at risk of seizures. In children the depth of anaesthesia should be limited. EEG may permit the optimization of sevoflurane dose and help avoid the development of seizure activity in patients with a predisposition for seizures (see section 4.4-Paediatric population).

Paediatric population:

The use of sevoflurane has been associated with seizures. Many have occurred in children and young adults starting from 2 months of age, most of whom had no predisposing risk factors. Clinical judgment should be exercised when using sevoflurane in patients who may be at risk for seizures (see section 4.4 – Seizures).

Dystonic movements in children have been observed (see section 4.8).

Down syndrome

A significantly higher prevalence and degree of bradycardia has been reported in children with Down syndrome during and following sevoflurane induction.

Experience with repeat exposure to sevoflurane is very limited. However, there were no obvious differences in adverse events between first and subsequent exposures.

Sevoflurane should be used with caution in patients with Myasthenia Gravis.

Like other halogenated anaesthetics, sevoflurane may cause cough during induction.

Sevoflurane could cause QTc prolongation. In clinical practice, this rarely lead to Torsades de Pointes. Sevoflurane should be administered with caution to patients at risk, such as elderly and patients diagnosed with congenital QTc prolongation.

4.5. Interaction with other medicinal products and other forms of interaction

Sevoflurane has been shown to be safe and effective when administered concurrently with a wide variety of agents commonly encountered in surgical situations such as central nervous system agents, autonomic drugs, skeletal muscle relaxants, anti- infective agents including aminoglycosides, hormones and synthetic substitutes, blood derivatives and cardiovascular drugs, including epinephrine.

Beta-sympathomimetic, and Alpha and Beta-sympathomimetic agents

Beta-sympathomimetic agents like isoprenaline and alpha- and beta- sympathomimetic agents like adrenaline and noradrenaline should be used with caution during sevoflurane narcosis, due to a potential risk of ventricular arrhythmia. The dosage of adrenaline and noradrenaline utilised for local haemostatic action by subcutaneous or-gingival injections should be limited to, for example, 0.1 mg epinephrine within 10 minutes or 0.3 mg within one hour in adults. Parenteral administration of adrenaline and noradrenaline is not recommended.

Succinylcholine

Concomitant use of succinylcholine with 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 post-operative period.

Amphetamine derivatives

The use of amphetamines and derivatives as well as of ephedrine and derivatives can cause preoperative hypertensive crisis. It is preferable to interrupt treatments some days before surgery.

Non-selective MAO inhibitors

Risk of crisis intraoperative collapse cannot be excluded as this has been observed with other halogenated inhalational anaesthetic agents. It is generally recommended that treatment should be stopped 2 weeks prior to surgery.

Calcium Antagonists

Sevoflurane may lead to marked hypotension in patients treated with calcium antagonists, in particular dihydropyridine derivatives.

Caution should be exercised when calcium antagonists are used concomitantly with inhalation anesthetics due to the risk of additive negative inotropic effect.

Epinephrine/Adrenaline

Sevoflurane is similar to isoflurane in the sensitisation of the myocardium to the arrhythmogenic effect of exogenously administered adrenaline, the threshold dose of adrenaline producing multiple ventricular arrhythmias has been established at 5 microgram per Kg.

Indirect-acting Sympathomimetics

There is a risk of acute hypertensive episode with the concomitant use of sevoflurane and indirect-acting sympathomimetic products (amphetamines, ephedrine).

Beta blockers

Sevoflurane may increase the negative inotropic, chronotropic and dromotropic effects of beta blockers (by blocking cardiovascular compensatory mechanisms). Patients should be warned against interruption of beta-blockers and in any case abrupt interruption of the medication is to be avoided. The anaesthetist should be informed of beta-blocker therapy.

Verapamil

Impairment of atrioventricular conduction was observed when verapamil and sevoflurane were administered at the same time.

Inducers of CYP2E1

Medicinal products and compounds that increase the activity of cytochrome P450 isoenzyme CYP2E1, such as isoniazid and alcohol, may increase the metabolism of sevoflurane and lead to significant increases in plasma fluoride concentrations. Concomitant use of sevoflurane and isoniazid can potentiate the hepatotoxic effects of isoniazid. Due to possible induction of metabolism, isoniazid treatment should be discontinued 1 week before surgery and not restarted until 15 days after surgery.

St. John's Wort

Severe hypotension and delayed emergence from anaesthesia with halogenated inhalational anaesthetics have been reported in patients treated long-term with St. John's Wort.

Barbiturates

Sevoflurane administration is compatible with barbiturates, propofol and other commonly used intravenous anaesthetics. Lower concentrations of sevoflurane may be required following use of an intravenous anaesthetic.

Benzodiazepines and Opioids

Benzodiazepines and opioids are expected to decrease the MAC of sevoflurane in the same manner as with other inhalational anaesthetics. Sevoflurane administration is compatible with benzodiazepines and opioids as commonly used in surgical practice.

Opioids such as alfentanil and sufentanil, when combined with sevoflurane, may lead to a synergistic fall in heart rate, blood pressure and respiratory rate.

Nitrous Oxide

As with other halogenated volatile anaesthetics, the MAC of sevoflurane is decreased when administered in combination with nitrous oxide. The MAC equivalent is reduced approximately 50% in adult and approximately 25% in paediatric patients (see section 4.2 – Maintenance).

Neuromuscular Blocking Agents

As with other inhalational anaesthetic agents, sevoflurane affects both the intensity and duration of neuromuscular blockade by non-depolarising muscle relaxants. When used to supplement alfentanil-N2O anaesthesia, sevoflurane potentiates neuromuscular block induced with pancuronium, vecuronium or atracurium. The dosage adjustments for these muscle relaxants when administered with sevoflurane are similar to those required with isoflurane. The effect of sevoflurane on succinylcholine and the duration of depolarising neuromuscular blockade has not been studied.

Dosage reduction of neuromuscular blocking agents during induction of anaesthesia may result in delayed onset of conditions suitable for endotracheal intubation or inadequate muscle relaxation because potentiation of neuromuscular blocking agents is observed a few minutes after the beginning of sevoflurane administration. The action of non-depolarizing muscle relaxants can be antagonized with neostigmine.

Among non-depolarising agents, vecuronium, pancuronium and atracurium interactions have been studied. In the absence of specific guidelines: (1) for endotracheal intubation, do not reduce the dose of non-depolarising muscle relaxants; and, (2) during maintenance of anaesthesia, the dose of non-depolarising muscle relaxants is likely to be reduced compared to that during N2O/opioid anaesthesia. Administration of supplemental doses of muscle relaxants should be guided by the response to nerve stimulation.

4.6. Fertility, pregnancy and lactation

Pregnancy

Studies in animals have shown reproductive toxicity (see section 5.3). There are no adequate and well-controlled studies in pregnant women; therefore, sevoflurane should be used during pregnancy only if clearly needed.

Labour and Delivery

In a clinical trial, the safety of sevoflurane was demonstrated for mothers and infants when used for anaesthesia during Caesarean section. The safety of sevoflurane in labour and vaginal delivery has not been demonstrated. Caution should be exercised in obstetric anaesthesia due to the relaxant effect of sevoflurane on the uterus and increase in uterine haemorrhage.

Breastfeeding

It is not known whether sevoflurane or its metabolites are excreted in human milk. Caution should be exercised when sevoflurane is administered to nursing mothers

Fertility

Reproduction studies in rats and rabbits at doses up to 1 MAC have revealed no evidence of impaired fertility due to sevoflurane.

Sevoflurane should only be used in pregnancy if clearly indicated.

The increased risk for uterus bleeding due to a relaxation effect of sevoflurane on the uterus.

Use during labour and delivery is limited to one small study in Caesarean section.

Animal studies indicate that sevoflurane is not teratogenic.

Reproduction studies in rats and rabbits (doses up to 1 MAC) showed no effect on male and female reproductive capability. No sign of foetal toxicity was seen in animal studies.

4.7. Effects on ability to drive and use machines

As with other agents, patients should be advised that performance of activities requiring mental alertness, such as operating a motor vehicle or hazardous machinery, may be impaired for some time after general anaesthesia (see section 4.4).

Patients should not be allowed to drive for a suitable period after sevoflurane anaesthesia.

4.8. Undesirable effects

Summary of the safety profile

As with all potent inhaled anaesthetics, sevoflurane may cause dose-dependent cardio-respiratory depression. Most adverse reactions are mild to moderate in severity and are transient in duration. Nausea and vomiting are commonly observed in the post-operative period, at a similar incidence to those found with other inhalation anaesthetics. These effects are common sequelae of surgery and general anaesthesia which may be due to the inhalational anaesthetic, other agents administered intra-operatively or post-operatively and to the patient's response to the surgical procedure. The most commonly reported adverse reactions were as follows:

In adult patients: hypotension, nausea and vomiting;

In elderly patients: bradycardia, hypotension and nausea; and

In paediatric patients: agitation, cough, vomiting and nausea.

Tabulated summary of adverse reactions

Adverse event data are derived from controlled clinical trials conducted in the United States and Europe in over 3,200 patients. The type, severity and frequency of adverse events in sevoflurane patients were comparable to adverse events in patients treated with other inhalation anaesthetics.

The most frequent adverse events associated with sevoflurane overall were nausea (24%) and vomiting (17%). Agitation occurred frequently in children (23%).

All Adverse reactions at least possibly relating to sevoflurane from clinical trials and post-marketing experience are presented in the following table by MedDRA System Organ Class, Preferred Term and frequency. The following frequency categories are used: Very common (>1/10); common (>1/100, <1/10); uncommon (>1/1,000, <1/100); rare (>1/10,000, <1/1,000); very rare (<1/10,000), including isolated reports. Post-marketing adverse reactions are reported voluntarily from a population with an unknown rate of exposure. Therefore it is not possible to estimate the true incidence of adverse events and the frequency is “unknown”. The type, severity and frequency of adverse reactions in sevoflurane patients in clinical trials were comparable to adverse reactions in reference-drug patients.

Adverse Reaction Data Derived From Clinical Trials and Post-marketing Experience

Summary of Most Frequent Adverse Drug Reactions in sevoflurane Clinical Trials and Post-marketing Experience

System Organ Class

Frequency

Adverse Reactions

Immune system disorders

Unknown

Anaphylactic reaction 1

Anaphylactoid reaction

Hypersensitivity 1

Blood and lymphatic system disorders

Uncommon

Leukopenia

Leukocytosis

Psychiatric disorders

Very Common

Agitation

Uncommon

Confusional state

Nervous system disorders

Common

Somnolence

Dizziness

Headache

Convulsion 2, 3

Unknown

Dystonia

Increased intracranial pressure

Cardiac disorders

Very Common

Bradycardia

Common

Tachycardia

Uncommon

Atrioventricular block complete

Cardiac arrhythmias (including ventricular arrhythmias)

Atrial fibrillation

Arrhythmia

Ventricular extrasystoles

Unknown

Supraventricular extrasystoles

Extrasystoles (ventricular, supra-ventricular, bigeminy-linked)

Cardiac arrest 4

Ventricular fibrillation

Torsades de Pointes

Ventricular tachycardia

Electrocardiogram QT prolonged

Vascular disorders

Very Common

Hypotension

Common

Hypertension

Respiratory, thoracic and mediastinal disorders

Very Common

Cough

Common

Respiratory disorder

Respiratory depression

Laryngospasm

Airway obstruction

Uncommon

Pulmonary oedema

Unknown

Apnoea

Hypoxia

Asthma

Bronchospasm

Dyspnoea 1

Wheezing 1

Breath holding

Gastrointestinal disorders

Very Common

Vomiting

Nausea

Common

Salivary hypersecretion

Unknown

Pancreatitis

Metabolism And Nutrition Disorders

Unknown

Hyperkalaemia

Renal and urinary disorders

Uncommon

Urinary retention

Glycosuria

Unknown

Tubulointerstitial nephritis

Hepato-biliary disorders

Unknown

Hepatitis 1, 2

Hepatic failure 1, 2

Hepatic necrosis 1, 2

Jaundice

Skin and subcutaneous tissue disorders

Unknown

Dermatitis contact 1

Pruritus

Rash 1

Swelling face 1

Urticaria

Musculoskeletal and connective tissue disorders

Unknown

Muscle rigidity

General disorders and administration site conditions

Common

Chills

Pyrexia

Unknown

Chest discomfort 1

Hyperthermia malignant 1, 2

Oedema

Investigations

Common

Blood glucose abnormal

Liver function test abnormal 5

White blood cell count abnormal

Blood fluoride increased 1

Aspartate aminotransferase increased

Uncommon

Serum Creatinine increased

Alanine aminotransferase increased

Blood lactate dehydrogenase increased

Injury, poisoning and procedural complications

Common

Hypothermia

1 See section 4.8 – Description of selected adverse reactions.

2 See section 4.4.

3 See section 4.8 – Paediatric population.

4 There have been very rare post-marketing reports of cardiac arrest in the setting of sevoflurane use.

5 Occasional cases of transient changes in hepatic function tests were reported with sevoflurane and reference agents.

Description of selected adverse reactions

Transient increases in serum inorganic fluoride levels may occur during and after sevoflurane anaesthesia. Concentrations of inorganic fluoride generally peak within two hours of the end of sevoflurane anaesthesia and return within 48 hours to pre-operative levels. In clinical trials, elevated fluoride concentrations were not associated with impairment of renal function.

Rare reports of post-operative hepatitis exist. In addition, there have been rare post-marketing reports of hepatic failure and hepatic necrosis associated with the use of potent volatile anaesthetic agents, including sevoflurane. However, the actual incidence and relationship of sevoflurane to these events cannot be established with certainty (see section 4.4).

Rare reports of hypersensitivity (including contact dermatitis, rash, dyspnoea, wheezing, chest discomfort, swelling face, eyelid oedema, erythema, urticaria, pruritus bronchospasm, anaphylactic or anaphylactoid reactions) have been received, particularly in association with long-term occupational exposure to inhaled anaesthetic agents, including sevoflurane.

In susceptible individuals, potent inhalation anaesthetic agents may trigger a skeletal muscle hypermetabolic state leading to high oxygen demand and the clinical syndrome known as malignant hyperthermia (see section 4.4).

Paediatric population

The use of sevoflurane has been associated with seizures. Many of these have occurred in children and young adults starting from 2 months of age, most of whom had no predisposing risk factors. Several cases reported no concomitant medications, and at least one case was confirmed by electroencephalography (EEG). Although many cases were single seizures that resolved spontaneously or after treatment, cases of multiple seizures have also been reported. Seizures have occurred during, or soon after sevoflurane induction, during emergence, and during post-operative recovery up to a day following anaesthesia. Clinical judgment should be exercised when using sevoflurane in patients who may be at risk for seizures (see section 4.4).

Reporting of suspected adverse reactions

Reporting suspected adverse reactions after authorisation of the medicinal product is important. It allows continued monitoring of the benefit/risk balance of the medicinal product. Healthcare professionals are asked to report any suspected adverse reactions via Yellow Card Scheme at: www.mhra.gov.uk/yellowcard

4.9. Overdose

Symptoms of overdose include respiratory depression and circulatory insufficiency.

In the event of overdosage, the following action should be taken: Stop drug administration, establish a clear airway and initiate assisted or controlled ventilation with pure oxygen and maintain adequate cardiovascular function.

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