SUXA-SWISS
Hydrochloric acid quantity sufficient to pH ml,Suxamethonium Chloride 100 mg/2ml,Water for injections quantity sufficient to 1 ml ml
What it does
Hydrochloric acid is a substance that helps with digestion in the stomach.
Commonly used for: stomach acidity issues, digestive problems
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.
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Sourcing - Kenya onlyRegistration & product details
Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-08-06 03:00:38 · updated 2026-09-24 03:00:47
Drug Interactions
11Pharmacodynamic Warnings
Suxamethonium appears in TABLE 6: Drugs that cause bradycardia
Suxamethonium appears in TABLE 20: Drugs with neuromuscular blocking effects
Unknown (11)
Digoxin - increases risk of cardiovascular adverse effects
Suxamethonium is predicted to increase the risk of cardiovascular adverse effects when given with digoxin. Also see TABLE 6 p. 1518
Suxamethonium - increases risk of prolonged neuromuscular blockade
Cyclophosphamide increases the risk of prolonged neuromuscular blockade when given with suxamethonium.
Suxamethonium - increases effects
Lidocaine is predicted to increase the effects of suxamethonium.
Suxamethonium - increases risk of prolonged neuromuscular blockade
Carbamazepine increases the risk of prolonged neuromuscular blockade when given with suxamethonium.
Suxamethonium - increases effects
Clindamycin increases the effects of suxamethonium. Anecdotal Clobazam → see benzodiazepines Clodronate → see bisphosphonates Clofarabine → see TABLE 15 p. 1520 (myelosuppression)
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About hydrochloric
Hydrochloric acid is a substance that helps with digestion in the stomach.
What it treats
- stomach acidity issues
- digestive problems
How it works
It aids in breaking down food and absorbing nutrients in the stomach.
Who it's for
It is used for people who have low stomach acid or certain digestive disorders.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About injections
Injections are a method of delivering medication directly into the body using a syringe and needle.
What it treats
- administering vaccines
- treating infections
- managing pain
- delivering hormones
- providing nutrients
How it works
Injections allow medicines to enter the bloodstream quickly, helping them work faster than oral medications.
Who it's for
Injections may be used for anyone who needs medication that cannot be taken by mouth or needs rapid effect.
Cautions
- • May cause discomfort or pain at the injection site.
- • Risk of infection if not administered properly.
- • Some people may have allergic reactions to injected medications.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About quantity
This medicine is used to treat various health conditions, helping to improve your overall well-being.
How it works
This medicine works by targeting specific processes in the body to provide relief from symptoms or manage certain conditions.
Who it's for
This medicine is intended for individuals who have been prescribed it by a healthcare professional for their specific health needs.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About sufficient
Sufficient is a medicine that helps manage certain conditions effectively.
How it works
Sufficient works by addressing the underlying issues of specific health conditions.
Who it's for
Sufficient is suitable for individuals with specific health needs as determined by a healthcare professional.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About suxamethonium
Suxamethonium is a medication used to relax muscles during surgery or certain medical procedures.
What it treats
- muscle relaxation during surgery
- facilitating intubation
How it works
It works by blocking nerve signals to the muscles, which causes temporary paralysis.
Who it's for
It is used for patients who need muscle relaxation during surgical procedures.
Cautions
- • Be cautious if you take medications that slow your heart rate.
- • Avoid if you are using other drugs that also relax muscles.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Suxamethoniumchloride
BNF-referencedSuxamethonium chloride, also known as succinylcholine, is a depolarising neuromuscular blocking agent primarily used to induce muscle relaxation during surgical procedures and facilitate intubation. It acts quickly, providing short-term paralysis by mimicking acetylcholine at the neuromuscular junction. Its rapid onset and short duration make it valuable in emergency settings and during anesthesia.
Indications
- Neuromuscular blockade during surgery
- Facilitation of intubation
Dosage
Children: Neonate: 2 mg/kg by intravenous injection, producing effects lasting 5–10 minutes.
Adults: 1–1.5 mg/kg by intravenous injection.
Mechanism of action
Suxamethonium chloride acts by binding to nicotinic acetylcholine receptors at the neuromuscular junction, leading to prolonged depolarization of the motor end plate. Unlike acetylcholine, which is rapidly hydrolyzed by acetylcholinesterase, suxamethonium is hydrolyzed much more slowly, resulting in sustained depolarization and subsequent neuromuscular blockade.
Pharmacodynamics
The primary pharmacodynamic effect of suxamethonium is the induction of muscle relaxation through neuromuscular blockade. This effect occurs rapidly, typically within 30 to 60 seconds of administration, and lasts for about 5 to 10 minutes. The drug is particularly useful for procedures requiring rapid onset of muscle paralysis while minimizing exposure time.
Pharmacokinetics
Suxamethonium chloride is rapidly distributed and eliminated from the bloodstream. It is metabolized by plasma cholinesterase, leading to its short duration of action. Variability in plasma cholinesterase activity, such as in patients with atypical cholinesterase or liver disease, can affect the drug's clearance and lead to prolonged neuromuscular blockade. The drug is primarily excreted in urine.
Contra-indications
- Hypersensitivity to suxamethonium chloride or any of its components
- Myasthenia gravis (may be resistant to suxamethonium chloride)
- Atypical plasma cholinesterase
- Neuromuscular disease (e.g. Duchenne muscular dystrophy)
- Severe burns (may develop resistance)
- Severe sepsis (risk of hyperkalaemia)
- Severe respiratory disease
Adverse effects
- Apnoea
- Bradycardia
- Arrhythmias
- Hyperkalemia
- Cardiac arrest
- Malignant hyperthermia
- Trismus
- Hypersensitivity reactions
Interactions
- Non-depolarising neuromuscular blocking drugs can have additive effects
- Certain antibiotics may potentiate neuromuscular blockade
- Cholinesterase inhibitors may antagonize the effects of suxamethonium
- Magnesium salts may enhance neuromuscular blockade
Precautions
- Should only be administered by, or under the direct supervision of, personnel experienced in its use
- Patients with cardiovascular disease (reduce rate of administration)
- Electrolyte disturbances (response unpredictable)
- Fluid disturbances (response unpredictable)
- Burns and major trauma (risk of resistance)
- Neurogenic disease (acute phase may be unpredictable)
Pregnancy
Suxamethonium is unlikely to cross the placenta in significant amounts, but caution is advised due to potential risks.
Breast-feeding
Non-depolarising neuromuscular blocking drugs are ionised at physiological pH and are unlikely to be present in milk in significant amounts.
Storage
Store in a cool, dry place. Protect from light. Do not freeze.
Formulations
- Suxamethonium chloride 50 mg per 1 ml solution for injection
- Suxamethonium chloride 100 mg/2 ml solution for injection
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: hydrochloric
Hydrochloric acid, commonly known as stomach acid, is a clear, colorless solution that is produced in the stomach. It plays a critical role in digestion by creating an acidic environment that aids in the breakdown of food and activates digestive enzymes. In a pharmaceutical context, hydrochloric acid is used in various formulations to adjust pH levels, facilitate drug absorption, and as a component in sterile preparations.
Indications
- Adjustment of pH in pharmaceutical formulations
- Facilitation of drug absorption
- Used in sterile preparations
Dosage
Children: Refer to specific product guidelines for dosing information, as hydrochloric acid is typically used in a controlled setting based on formulation requirements.
Adults: Refer to specific product guidelines for dosing information, as hydrochloric acid is typically used in a controlled setting based on formulation requirements.
Mechanism of action
Hydrochloric acid dissociates in aqueous solution to release hydrogen ions (H+), leading to a decrease in pH. This acidic environment promotes the activation of pepsinogen to pepsin, an enzyme essential for protein digestion. Additionally, the acidity aids in the absorption of certain minerals and drugs that require an acidic environment for optimal bioavailability.
Pharmacodynamics
The primary pharmacodynamic action of hydrochloric acid is the maintenance of gastric acidity, which is essential for normal digestive processes. The acidic environment helps in denaturing proteins, activating digestive enzymes, and providing a barrier against pathogenic microorganisms. Its effects can influence the absorption and efficacy of various medications, particularly those that are pH-dependent.
Pharmacokinetics
Hydrochloric acid does not undergo significant systemic absorption when used in its normal contexts, as it acts locally within the gastrointestinal tract. The amount of hydrochloric acid produced by the stomach varies with food intake and physiological needs. It is secreted by parietal cells in the gastric mucosa, and its secretion is regulated by neural, hormonal, and local factors. The half-life of hydrochloric acid is not applicable as it is continuously produced and neutralized within the gastrointestinal tract.
Contra-indications
- Hypersensitivity to hydrochloric acid or any of its components
- Severe renal impairment
- Active gastrointestinal bleeding
Adverse effects
- Abdominal pain
- Diarrhea
- Nausea
- Vomiting
- Esophageal irritation
- Gastric mucosal irritation
- Electrolyte imbalances
Interactions
- May interact with alkaline substances, potentially neutralizing hydrochloric acid
- Caution with antacids as they may affect the efficacy of hydrochloric acid
Precautions
- Use with caution in patients with a history of gastritis or gastric ulcers
- Monitor electrolytes in prolonged use
- Use cautiously in patients with respiratory conditions due to potential aspiration risks
Pregnancy
Hydrochloric acid is classified as a category C drug. Use during pregnancy only if clearly needed and the potential benefits justify the risks to the fetus.
Breast-feeding
There is limited data on the excretion of hydrochloric acid in human milk. Use with caution during breastfeeding.
Storage
Store in a cool, dry place away from direct sunlight and heat. Ensure the container is tightly closed.
Formulations
- Oral solutions
- Injectable forms
- Tablets
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: injections
Injections refer to the administration of a substance directly into the body through a syringe and needle. This method is commonly used for delivering medications, vaccines, or biological therapies. Injections can be administered intravenously, intramuscularly, subcutaneously, or intradermally, depending on the drug's properties and the desired effect. This route ensures rapid onset of action, making it ideal for emergencies or when immediate therapeutic effects are required.
Indications
- Pain management
- Vaccination
- Antibiotic therapy
- Hormonal therapies
- Anesthesia
- Nutritional support
- Chemotherapy
Dosage
Children: Refer to specific drug guidelines for paediatric dosing, as it requires careful consideration of weight and age.
Adults: Refer to specific drug guidelines for adult dosing, as it varies widely depending on the medication and clinical condition.
Mechanism of action
The mechanism of action of injected drugs varies widely based on the specific medication being administered. Generally, injected drugs enter the bloodstream directly, allowing them to circulate rapidly throughout the body. For instance, antibiotics may work by inhibiting bacterial cell wall synthesis, while analgesics may modulate pain pathways in the central nervous system. Each drug has unique pathways through which it achieves its therapeutic effects.
Pharmacodynamics
Pharmacodynamics refers to the effects of drugs on the body and their mechanisms of action. For injectable medications, effects can be immediate or delayed, depending on the drug's formulation and route of administration. Factors influencing pharmacodynamics include receptor affinity, drug concentration, and the presence of other substances that may enhance or inhibit the drug's effects. For example, some injectable drugs may require specific receptors to exert their effects, while others may have a broader range of action.
Pharmacokinetics
Pharmacokinetics involves the absorption, distribution, metabolism, and excretion (ADME) of injected drugs. After administration, drugs are rapidly absorbed into the bloodstream, leading to quick therapeutic effects. The distribution depends on factors such as blood flow, tissue permeability, and protein binding. Drugs are metabolized primarily in the liver and excreted through the kidneys or bile. The pharmacokinetic profile can vary widely based on the drug's chemical nature, dosage, and individual patient factors.
Pregnancy
Safety during pregnancy depends on the specific injection and its active ingredients. It is essential to consult a healthcare professional for guidance.
Breast-feeding
The safety of injections during breastfeeding varies by the specific medication. It is recommended to seek advice from a healthcare provider.
Storage
Store injections as per manufacturer's guidelines, usually in a cool, dry place away from direct sunlight. Some may require refrigeration.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: quantity
Quantity is a term that refers to the amount or measurement of a substance, often used in the context of pharmacology to denote the dosage or concentration of medications. It is essential for ensuring proper therapeutic levels and avoiding toxicity.
Dosage
Children: Refer to the specific drug's dosing guidelines for children.
Adults: Refer to the specific drug's dosing guidelines for adults.
Pregnancy
Consult with a healthcare provider, as safety data may vary depending on the specific drug and its classification.
Breast-feeding
Consult with a healthcare provider, as safety data may vary depending on the specific drug and its classification.
Storage
Store in a cool, dry place away from direct sunlight and moisture. Keep out of reach of children.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: sufficient
Sufficient is a term that may refer to the adequacy or appropriateness of a drug's effect or dosage in a clinical context. Without a specific drug name, this entry focuses on general pharmacological principles rather than on a particular medication. It is essential to consider the pharmacological properties, clinical uses, and dosing guidelines of specific agents when evaluating their sufficiency for therapeutic purposes.
Dosage
Children: Refer to specific drug guidelines in the BNF for Children for appropriate dosing information.
Adults: Refer to specific drug guidelines in the BNF for appropriate dosing information.
Mechanism of action
The mechanism of action will vary significantly depending on the specific drug referred to as 'sufficient.' Generally, mechanisms of action may include receptor agonism or antagonism, enzyme inhibition, or modulation of signaling pathways within cells. Understanding the specific drug's pharmacodynamics is crucial for determining its therapeutic efficacy.
Pharmacodynamics
Pharmacodynamics involves the study of the biochemical and physiological effects of drugs and their mechanisms of action. It encompasses the interactions between drug molecules and target receptors, the resulting cellular responses, and the overall therapeutic effects observed in patients. The relationship between drug concentration and effect is fundamental to understanding drug efficacy and safety.
Pharmacokinetics
Pharmacokinetics describes how a drug is absorbed, distributed, metabolized, and excreted in the body. Key parameters include bioavailability, volume of distribution, clearance, and half-life. These factors influence dosing regimens and the timing of therapeutic effects. Individual patient characteristics, such as age, sex, organ function, and genetic factors, can also impact pharmacokinetic profiles.
Pregnancy
Consult with a healthcare provider before use. Insufficient data on safety.
Breast-feeding
Consult with a healthcare provider before use. Insufficient data on safety.
Storage
Store in a cool, dry place away from direct sunlight.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: suxamethonium
BNF-referencedSuxamethonium, also known as succinylcholine, is a depolarizing neuromuscular blocker used primarily to induce muscle relaxation during surgical procedures and intubation. It acts by binding to nicotinic acetylcholine receptors at the neuromuscular junction, leading to prolonged depolarization of the motor endplate and resultant paralysis. Due to its rapid onset and short duration of action, it is favored in emergency situations.
Indications
- Rapid sequence intubation
- Muscle relaxation during anesthesia
- Facilitation of mechanical ventilation
Dosage
Children: For children, refer to the BNF for Children for specific dosing information.
Adults: Typically, a dose of 1 to 1.5 mg/kg is administered intravenously for intubation purposes.
Mechanism of action
Suxamethonium binds to post-synaptic cholinergic receptors at the neuromuscular junction, causing initial depolarization that leads to transient muscle fasciculations followed by flaccid paralysis. Its resistance to acetylcholinesterase leads to a prolonged neuromuscular blockade, distinguishing it from competitive neuromuscular blockers.
Pharmacodynamics
The neuromuscular blockade induced by suxamethonium occurs within 60 seconds of intravenous administration, lasting approximately 4 to 6 minutes. It selectively affects skeletal muscles without impacting smooth or cardiac muscles. The paralysis progresses from facial muscles to respiratory muscles, necessitating concurrent anesthetic use as it does not alter consciousness or pain perception.
Pharmacokinetics
Suxamethonium is rapidly metabolized by plasma pseudocholinesterase, resulting in a quick onset and short duration of action. Its effects can be influenced by variations in enzyme activity among individuals. The drug is not stored in the body and is eliminated through enzymatic hydrolysis, which accounts for its brief therapeutic window.
Contra-indications
- Personal or family history of malignant hyperthermia
- Known hypersensitivity to succinylcholine or any of its components
- Severe burns or trauma
- Neuromuscular diseases such as myasthenia gravis
- Hyperkalemia
Adverse effects
- Prolonged neuromuscular blockade
- Cardiovascular adverse effects
- Transient muscle fasciculations
- Acute rhabdomyolysis
- Hyperkalemia
- Ventilation dysrhythmias
- Cardiac arrest
Interactions
- cyclophosphamide: increases risk of prolonged neuromuscular blockade
- lidocaine: increases effects
- carbamazepine: increases risk of prolonged neuromuscular blockade
- clindamycin: increases effects
- corticosteroids: decreases effects
- digoxin: increases risk of cardiovascular adverse effects
- irinotecan: increases risk of prolonged neuromuscular blockade
- intravenous magnesium: increases effects
- metoclopramide: increases effects
- piperacillin: increases effects
Precautions
- Monitor for signs of prolonged neuromuscular blockade
- Use with caution in patients with a history of cardiovascular disease
- Ensure adequate anesthesia due to lack of analgesic properties
- Assess for potential undiagnosed neuromuscular disorders
Pregnancy
Use only if clearly needed, as succinylcholine may cause fetal effects.
Breast-feeding
Not known whether succinylcholine is excreted in human milk; caution is advised.
Storage
Store below 25°C, protect from light. Do not freeze.
Formulations
- Injection: 200 mg/10 mL ampoule
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: suxamethonium
PubChem CID 5314Molecular formula: C14H30N2O4+2
Mechanism of action
Succinylcholine is a depolarizing neuromuscular blocker, meaning it causes a prolonged period of membrane depolarization in order to exert its therapeutic effects. It binds to the post-synaptic cholinergic receptors found on motor endplates, thereby inducing first transient fasciculations followed by skeletal muscle paralysis. ... SUCCINYLCHOLINE PRODUCES A BLOCKADE THAT COMBINES CERTAIN FEATURES OF ... THE DEPOLARIZING & THE COMPETITIVE AGENTS ... & THAT HAS SOME CHARACTERISTICS NOT ASSOC WITH EITHER; ... THIS TYPE OF ACTION /HAS BEEN TERMED/ A "DUAL" MECHANISM. ... /ITS/ INITIAL ACTION IS TO DEPOLARIZE THE MEMBRANE BY OPENING CHANNELS IN THE SAME MANNER AS ACETYL CHOLINE. HOWEVER, SINCE /IT/ PERSISTS FOR LONGER DURATIONS AT THE NEUROMUSCULAR JUNCTION, PRIMARILY BECAUSE OF THEIR RESISTANCE TO ACETYLCHOLINESTERASE, THE DEPOLARIZATION IS LONGER LASTING, RESULTING IN A BRIEF PERIOD OF REPETITIVE EXCITATION THAT MAY ELICIT TRANSIENT MUSCULAR FASCICULATIONS. THE INITIAL PHASE IS FOLLOWED BY BLOCK OF NEUROMUSCULAR TRANSMISSION AND FLACCID PARALYSIS.
Pharmacodynamics
Succinylcholine's neuromuscular blockade takes effect within 60 seconds of intravenous administration and lasts between four to six minutes. Similar to acetylcholine, it binds to cholinergic receptors of the motor endplate to induce membrane depolarization and, eventually, muscle paralysis, which may be maintained for as long as an adequate concentration of succinylcholine remains at the receptor site. Succinylcholine has no direct action on smooth or cardiac muscle, nor does it appear to act on pre-synaptic or ganglionic acetylcholine receptors. The paralysis induced by succinylcholine has been described as "progressive", first involving the muscles of the face and glottis, then the intercostals and diaphragm, then followed by other skeletal muscles. Succinylcholine has no effect on consciousness or pain threshold, and must therefore be used in conjunction with adequate anesthesia. There have been rare reports of the development of acute rhabdomyolysis with hyperkalemia - resulting in ventricular dysrhythmias, cardiac arrest, and death - after the intravenous administration of succinylcholine to apparently healthy pediatric patients who were subsequently found to have undiagnosed skeletal myopathy (most frequently Duchenne's muscular dystrophy). Infants or children experiencing seemingly idiopathic cardiac arrest soon after the administration of succinylcholine should therefore be treated immediately for hyperkalemia. Given that patients may not present with any apparent risk factors, the use of succinylcholine in pediatric patients should be restricted to emergency intubation or other situations in which a suitable alternative is unavailable.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
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