HUMODAR C25 100R
Glycerol. 16.0 mg/6 mL,Hydrochloric acid To PH 7.0 – 7.8 mg/6 mL,M- Cresol 1.50 mg/6 mL,Phenol 0.60 mg/6 mL,Protamine Sulphate 0.238 mg/6 mL,Recombinant human insulin 100 IU/ml,Sodium Chloride 0.20 mg/6 mL,Sodium Dihydrogen phosphate dihydrate. 2.80 mg/6 mL,Sodium Hydroxide To PH 7.0 – 7.8 mg/6 mL,Water for injections Up to 1.0 ml,Zinc Chloride 0.021 mg/6 mL
What it does
Cresol is a chemical compound often used as a disinfectant and antiseptic.
Commonly used for: skin infections, wound cleaning, disinfection
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
Ask about this medicine
Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.
Medicine sourcing is available in Kenya only. We don't sell or dispense medicines - licensed pharmacies do.
Sourcing - Kenya onlyRegistration & product details
Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:39:39 · updated 2026-09-17 03:00:43
Drug Interactions
4Pharmacodynamic Warnings
Insulin appears in TABLE 14: Antidiabetic drugs
Moderate (1)
Insulin - increases risk of hypoglycaemia
Metreleptin is predicted to increase the risk of hypoglycaemia when given with insulin. Monitor blood glucose and adjust dose.
Unknown (3)
Insulin - increases risk of hypoglycaemia
Fibrates are predicted to increase the risk of hypoglycaemia when given with insulin.
Insulin - increases risk of severe hypoglycaemia
Macrolides (clarithromycin) might increase the risk of severe hypoglycaemia when given with insulin.
Insulin - increases risk of severe hypoglycaemia
Clarithromycin might increase the risk of severe hypoglycaemia when given with insulin.
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About cresol
Cresol is a chemical compound often used as a disinfectant and antiseptic.
What it treats
- skin infections
- wound cleaning
- disinfection
How it works
Cresol works by killing bacteria and other harmful germs, helping to prevent infections.
Who it's for
Cresol is typically used by people needing to clean wounds or disinfect areas to prevent infection.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About dihydrogen
Dihydrogen is a simple chemical compound that is commonly found in nature. It is essential for many biological processes.
What it treats
- water (a vital component for life)
- involved in chemical reactions
How it works
Dihydrogen plays a key role in chemical reactions, especially in forming water and other compounds.
Who it's for
Everyone, as it is a fundamental part of water and essential for life.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About glycerol
Glycerol is a natural compound often used to relieve constipation by drawing water into the intestines.
What it treats
- constipation
- bowel movement difficulties
How it works
Glycerol helps soften stool and makes it easier to pass by increasing moisture in the intestines.
Who it's for
It is suitable for adults and children who need help with constipation.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About human
Human is a term that generally refers to a member of the species Homo sapiens, and in the context of medicine, it may relate to various human-derived products or treatments. However, there are no specific drug class, interactions, or cautions provided for this entry.
How it works
There is no specific information on how this ingredient works as it may relate to various contexts within human health.
Who it's for
Information regarding specific patients or conditions is not provided.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
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 hydroxide
Hydroxide is a compound used to help neutralize stomach acid and relieve indigestion or heartburn.
What it treats
- indigestion
- heartburn
How it works
Hydroxide works by neutralizing the excess acid in the stomach, which helps to reduce discomfort.
Who it's for
Hydroxide is suitable for adults and children experiencing symptoms of excess stomach acid.
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 insulin
Insulin is a hormone used to control blood sugar levels in people with diabetes.
What it treats
- diabetes (diabetes mellitus)
How it works
Insulin helps lower blood sugar by allowing sugar to enter the body's cells for energy.
Who it's for
This medication is for individuals with diabetes who need help managing their blood sugar levels.
Cautions
- • Use with care if you are taking other diabetes medications.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About phenol
Phenol is a chemical used for its antiseptic properties and can help relieve pain.
What it treats
- pain relief
- antiseptic for minor cuts and burns
- throat pain (sore throat)
How it works
Phenol works by killing bacteria and reducing pain in the area where it is applied.
Who it's for
Phenol is suitable for adults and children who need pain relief or antiseptic treatment.
Cautions
- • Avoid using on large areas of skin or deep wounds.
- • Do not swallow or use in large amounts.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About protamine
Protamine is a medication used primarily to reverse the effects of heparin, a blood thinner.
What it treats
- reversal of heparin effects
- treatment of heparin overdose
How it works
Protamine works by binding to heparin, neutralizing its effects and helping to restore normal blood clotting.
Who it's for
Protamine is used in patients who have received heparin and need to counteract its effects, such as during surgery or after an overdose.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About recombinant
Recombinant medications are created using genetic engineering techniques. They are used to treat various medical conditions by mimicking natural substances in the body.
What it treats
- certain types of cancer
- genetic disorders
- hormonal deficiencies
How it works
Recombinant drugs work by introducing or replacing natural substances that the body may not produce enough of, helping to restore normal function.
Who it's for
These medications are typically for patients with specific health conditions requiring treatment with biological agents.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Insulin
BNF-referencedInsulin is a peptide hormone produced by the beta cells of the pancreas that plays a crucial role in glucose metabolism. It facilitates the uptake of glucose into tissues, particularly muscle and adipose tissue, and inhibits hepatic glucose production. Insulin is used primarily in the management of diabetes mellitus, effectively lowering blood glucose levels and preventing hyperglycemia.
Indications
- Diabetes mellitus (type 1 and type 2)
- Diabetic ketoacidosis
- Hyperglycemia due to other conditions
- Management of blood glucose levels during surgery
- Continuous subcutaneous insulin infusion therapy
Dosage
Children: For children aged 1-17 years, insulin is administered immediately before meals or when necessary shortly after meals, according to individual requirements. Specific dosing should be determined based on blood glucose monitoring and should be referred to the BNF for Children for precise guidance.
Adults: The dosage of insulin varies based on individual needs and is typically guided by blood glucose monitoring. It is recommended to consult local protocols for specific dosing instructions.
Mechanism of action
Insulin has a direct inhibitory effect on lipase, which is involved in the mobilization of fatty acids. In the absence of insulin, there is an abnormally high rate of conversion of protein to glucose, primarily in the liver. Insulin stimulates glycogen synthesis and enhances facilitated diffusion of glucose and the active transport of amino acids, although the exact mechanisms for these actions are not fully understood.
Pharmacodynamics
Insulin's primary pharmacodynamic effect is the reduction of blood glucose levels. It promotes the uptake of glucose by cells, increases glycogen synthesis in the liver, and inhibits gluconeogenesis. Insulin also influences lipid metabolism by inhibiting lipolysis and encouraging fat storage. Additionally, insulin enhances protein synthesis by promoting amino acid uptake into cells.
Pharmacokinetics
Insulin is administered by injection and is rapidly absorbed into the bloodstream. Its onset, peak, and duration of action depend on the formulation used (e.g., rapid-acting, short-acting). The half-life of insulin is typically around 5 to 10 minutes, but its effects can last several hours depending on the formulation. It is metabolized primarily in the liver and kidneys.
Contra-indications
- Hypersensitivity to insulin or any of its excipients
- Hypoglycemia
Adverse effects
- Hypoglycemia
- Injection site reactions
- Weight gain
- Allergic reactions
- Edema
- Lipodystrophy
Interactions
- Metreleptin may increase the risk of hypoglycemia when used with insulin
- Fibrates may increase the risk of hypoglycemia when used with insulin
- Macrolides may increase the risk of severe hypoglycemia when used with insulin
- Clarithromycin may increase the risk of severe hypoglycemia when used with insulin
Precautions
- Monitor blood glucose levels regularly, especially when changing insulin preparations
- Use caution in patients with renal impairment, as insulin clearance may be reduced
- Patients should be advised about the risks of hypoglycemia and how to manage it
- Should be used with caution in patients with cardiovascular disease
Pregnancy
Insulin is generally considered safe for use during pregnancy, but dosages may need to be adjusted.
Breast-feeding
Insulin is compatible with breastfeeding; insulin does not pass into breast milk in significant amounts.
Storage
Store unopened vials or pens in a refrigerator (2-8°C). Once opened, insulin can be stored at room temperature (below 25°C) for up to 28 days, depending on the formulation.
Formulations
- Insulin human 500 units/ml solution for injection
- Insulin human 100 units/ml solution for injection
- Insulin porcine 100 units/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: Glycerol
BNF-referencedGlycerol, also known as glycerin, is a colorless, odorless, viscous liquid that is hygroscopic and sweet-tasting. It is primarily used as an osmotic laxative for the relief of constipation, especially in cases where other treatments may not be effective. Glycerol works by drawing water into the intestines and stimulating evacuation. It is also used in various pharmaceutical formulations and has applications in skin care due to its moisturizing properties.
Indications
- Constipation
- Bowel cleansing
Dosage
Children: Child 1–11 months: 1 g as required, Child 1–11 years: 2 g as required, Child 12–17 years: 4 g as required.
Adults: 4 g as required, usually administered rectally.
Mechanism of action
When administered rectally, glycerol exerts a hygroscopic and/or local irritant action, drawing water from the tissues into the feces and reflexively stimulating evacuation. It decreases intraocular pressure by creating an osmotic gradient between the blood and intraocular fluid, causing fluid to move from the aqueous and vitreous humors into the bloodstream. Glycerol is classified as a hyperosmotic laxative and may also have lubricating and fecal softening effects.
Pharmacodynamics
Glycerol is commonly classified as an osmotic laxative, acting through its local irritant effects and possibly having lubricating and fecal softening actions. Glycerol suppositories usually produce effects within 15 to 30 minutes, providing quick relief from constipation.
Pharmacokinetics
Glycerol is rapidly absorbed through the gastrointestinal tract. It is metabolized in the liver and other tissues, with a half-life that varies depending on the route of administration. Following rectal administration, glycerol is primarily excreted in urine. The pharmacokinetics may vary based on dosage forms and individual patient factors.
Contra-indications
- Acute abdominal conditions
- Acute inflammatory bowel disease
- Intestinal obstruction
- Severe dehydration
Adverse effects
- Abdominal cramps
- Asthenia
- Gastrointestinal disorders
- Hypermagnesaemia
- Skin reactions
- Urine discolouration
Precautions
- Avoid prolonged contact with skin, especially in incontinent patients or infants wearing nappies due to the risk of irritation and excoriation.
- Excessive use may cause diarrhea and related effects such as hypokalaemia.
Pregnancy
Manufacturers advise avoidance due to limited information available.
Breast-feeding
Manufacturers advise avoidance as there is no information available.
Storage
Store at room temperature, away from direct sunlight.
Formulations
- Glycerol 1g suppositories
- Glycerol 2g suppositories
- Glycerol 4g suppositories
- Glycerol oral suspension
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: Protaminesulfate
BNF-referencedProtamine sulfate is a medication primarily used as an antidote to reverse the effects of heparin, particularly in cases of overdose or excessive anticoagulation. It is a polypeptide derived from fish sperm, which acts by binding to heparin to form an inactive complex, thereby neutralizing its anticoagulant properties. In addition to treating heparin overdose, protamine sulfate may also be used in the management of certain cases of digoxin toxicity.
Indications
- Overdose of unfractionated heparin
- Management of digoxin toxicity
Dosage
Children: For children, the recommended dosage for reversing heparin overdose is 375–500 micrograms, administered at a rate not exceeding 5 mg/minute, with a maximum per dose of 50 mg.
Adults: For overdose of unfractionated heparin, the typical dose is 1 mg of protamine sulfate for every 100 units of heparin administered, administered intravenously at a rate not exceeding 5 mg/minute.
Mechanism of action
Protamine sulfate binds to heparin, neutralizing its anticoagulant effects by forming a stable protamine-heparin complex. This mechanism effectively reverses the actions of heparin in the body, restoring normal coagulation.
Pharmacodynamics
The pharmacodynamics of protamine sulfate are characterized by its rapid onset of action upon intravenous administration. The binding of protamine to heparin leads to an immediate reversal of heparin-induced anticoagulation, which can be crucial in emergency situations such as surgical bleeding or overdose.
Pharmacokinetics
Protamine sulfate is typically administered intravenously, allowing for quick distribution and action. The elimination half-life varies, but factors such as the extent of heparin overdose and the individual’s metabolic capacity can influence it. The drug is generally well-tolerated, but caution is advised in patients with hepatic impairment due to potential alterations in metabolism.
Contra-indications
- Life-threatening condition (e.g. raised intracranial pressure, status epilepticus) controlled by benzodiazepines
Adverse effects
- Hypotension
- Nausea
- Vomiting
- Palpitations
- Tremor
- Insomnia
- Dizziness
- Hyperventilation
- Abnormal hearing
- Arrhythmias
- Seizures (more common in patients with epilepsy)
- Withdrawal syndrome
Interactions
- Caution with other anticoagulants or antiplatelet agents due to increased bleeding risk
Precautions
- Avoid rapid injection following major surgery
- Caution in patients with hepatic impairment (risk of increased half-life)
- Caution in high-risk or anxious patients
- Benzodiazepine therapy for epilepsy due to risk of convulsions
Pregnancy
Not known to be harmful.
Breast-feeding
Avoid breast-feeding for 24 hours.
Storage
Store below 25°C. Protect from light.
Formulations
- Powder for solution for infusion
- 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: Phenol
BNF-referencedPhenol, also known as carbolic acid, is a colorless, volatile liquid with antiseptic and anesthetic properties. It acts as a potent proteolytic agent, capable of dissolving tissue on contact and inducing local anesthesia. Phenol is used in various medical applications, particularly for its local anesthetic effects and in the treatment of rectal and anal disorders.
Indications
- Rectal and anal disorders
- Haemorrhoids
- Pruritus ani
Dosage
Children: Refer to the BNF for Children for appropriate dosing information.
Adults: For rectal use using aerosol spray: 1 spray up to 3 times a day for no longer than 7 days without medical advice. For ointment: apply several times daily, for short-term use only.
Mechanism of action
Phenol exerts its effects by acting as a potent proteolytic agent. At concentrations of 5% to 7%, it can dissolve tissue through proteolysis. When injected near a nerve, it produces chemical neurolysis, affecting nerve fibers nonselectively. Local anesthetic effects are typically observed within 5 to 10 minutes of application.
Pharmacodynamics
Phenol's pharmacodynamic properties include its ability to cause tissue dissolution and local anesthesia. The local anesthetic effects result from its action on the nerve fibers, leading to a temporary loss of sensation in the affected area. The proteolytic action can assist in the treatment of various skin and mucosal conditions by facilitating tissue breakdown.
Pharmacokinetics
Phenol is absorbed through mucosal surfaces when applied locally. Its metabolism involves biological oxidation and phase I functionalization, primarily through cytochrome P450 enzymes. The elimination of phenol occurs through metabolic pathways, and it can be detected in urine as a result of its metabolism.
Contra-indications
- Infection
- Known hypersensitivity to phenol or its components
Adverse effects
- Local irritation
- Burning sensation
- Paraesthesia
- Vision disorders
- Skin reactions
- Adrenal suppression
Interactions
- Caution with other local anesthetics due to potential additive effects
Precautions
- Use for short periods only-no longer than a few days
- Avoid excessive application, especially on sensitive areas
- Consult product literature for specific guidelines
Pregnancy
Data on the use of phenol during pregnancy is limited; caution is advised.
Breast-feeding
Limited information available; caution is recommended when used in breastfeeding mothers.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Ointment
- Suppository
- Aerosol spray
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: cresol
Cresol, also known as methylphenol, is a colorless to light yellow aromatic compound with a strong odor. It exists in three isomeric forms: ortho-cresol, meta-cresol, and para-cresol, which differ in the position of the hydroxyl group on the benzene ring. Cresol is primarily used as an antiseptic and disinfectant in various industrial and medicinal applications.
Indications
- Antiseptic
- Disinfectant
- Topical analgesic
- Preservative
- Industrial solvent
Dosage
Children: Refer to specific product guidelines for paediatric dosing, as it varies based on formulation and intended use.
Adults: Refer to specific product guidelines for adult dosing, as it varies based on formulation and intended use.
Mechanism of action
Cresol acts by denaturing proteins and disrupting cellular membranes, which leads to the death of microorganisms. It exhibits broad-spectrum antimicrobial activity against bacteria, fungi, and some viruses. The phenolic structure of cresol contributes to its ability to penetrate lipid membranes, enhancing its efficacy as a disinfectant.
Pharmacodynamics
Cresol demonstrates its antimicrobial effects through cytotoxicity, leading to cell lysis and death. It also has local anesthetic properties, which can provide temporary relief from pain when used in topical formulations. Its antiseptic properties make it effective in reducing microbial load in contaminated wounds or surgical sites.
Pharmacokinetics
Cresol is absorbed through the skin and mucous membranes, and it can be metabolized in the liver to various conjugates. The elimination half-life can vary, but it is generally excreted in urine as glucuronides or sulfates. Due to its lipophilic nature, cresol can accumulate in fatty tissues, which may prolong its effects.
Adverse effects
- Skin irritation
- Respiratory distress
- Gastrointestinal irritation
- CNS depression
- Nausea
- Vomiting
- Headache
- Dizziness
Precautions
- Use with caution in patients with pre-existing respiratory conditions
- Avoid contact with skin and mucous membranes
- Ensure adequate ventilation during use
- Use protective equipment when handling
Pregnancy
Cresol is classified as a category C drug. Its safety in pregnancy has not been established, and it should be used only if the potential benefit justifies the risk to the fetus.
Breast-feeding
It is not known whether cresol is excreted in human milk. Caution should be exercised when it is administered to a nursing woman.
Storage
Store in a cool, dry place away from heat and direct sunlight. Keep container tightly closed and out of reach of children.
Formulations
- Liquid solution
- Topical ointment
- Disinfectant formulations
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: dihydrogen
BNF-referencedDihydrogen, commonly known as molecular hydrogen (H2), is a colorless, odorless gas that has garnered attention for its potential therapeutic properties. Its primary benefits are attributed to its antioxidant and anti-inflammatory effects, which may contribute to vascular health and longevity. Research indicates that hydrogen-rich water may serve as an effective anti-aging drink due to its ability to modulate cellular responses and protect against oxidative stress.
Indications
- Vascular health
- Oxidative stress-related conditions
- Anti-aging applications
- Inflammatory disorders
Dosage
Children: Refer to the BNF for Children for pediatric dosing information regarding hydrogen-rich water.
Adults: Refer to the BNF for specific dosages and administration guidelines for hydrogen-rich water.
Mechanism of action
Molecular hydrogen exerts its effects primarily through its antioxidant properties, which involve the activation of the Nrf2 pathway. This pathway regulates the expression of various antioxidant enzymes, thereby reducing oxidative stress and inflammation. In endothelial cells, H2 has been shown to prevent TCDD-induced senescence and promote cellular longevity by maintaining cellular homeostasis and modulating redox status.
Pharmacodynamics
The pharmacodynamics of dihydrogen are characterized by its ability to scavenge free radicals and reduce oxidative stress. It also influences cellular signaling pathways related to inflammation and aging. Specifically, H2 aids in maintaining the balance of NAD+/NADH, which is crucial for cellular metabolism and energy production. The modulation of the Nrf2 pathway leads to enhanced production of endogenous antioxidants, contributing to its protective effects on vascular endothelial cells.
Pharmacokinetics
Dihydrogen is rapidly absorbed and distributed in the body. When administered as hydrogen-rich water, it is absorbed through the gastrointestinal tract. Its concentration decreases over time, becoming nearly undetectable after 12 hours in aqueous solutions. The pharmacokinetic profile indicates that the effects of hydrogen may persist even after the gas has been eliminated, likely due to the activation of protective cellular mechanisms.
Pregnancy
There is insufficient data on the use of dihydrogen during pregnancy. Consult a healthcare provider for guidance.
Breast-feeding
Limited information is available regarding the safety of dihydrogen during breastfeeding. Consult a healthcare provider before use.
Storage
Store in a cool, dry place away from direct sunlight. Keep container tightly closed.
Formulations
- Hydrogen-rich water
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: human
Human refers to the species Homo sapiens, which is characterized by advanced cognitive abilities, social structures, and the capability for complex communication. The term may also refer to human-derived biological products, such as blood, tissues, or organs used in medical treatments and research.
Dosage
Children: Dosage for human-derived biological products in pediatrics should be determined based on specific product guidelines and the clinical context.
Adults: Dosage for human-derived biological products varies widely. Refer to specific product information for appropriate dosing.
Mechanism of action
Human physiology is governed by complex biological systems involving various cellular and molecular pathways. The mechanisms of action for human-derived biological products vary widely depending on the specific context, including immune response, hormonal regulation, and metabolic processes.
Pharmacodynamics
Pharmacodynamics in humans involves the interaction of drugs with biological systems, resulting in therapeutic effects. This includes receptor binding, signal transduction, and physiological responses. The effects are influenced by genetic factors, existing health conditions, and concurrent medications.
Pharmacokinetics
Pharmacokinetics in humans involves the absorption, distribution, metabolism, and excretion (ADME) of substances. Factors such as age, sex, body weight, and organ function can significantly influence these processes. Drug absorption may occur via oral, intravenous, or other routes, while distribution depends on blood flow and tissue permeability. Metabolism typically occurs in the liver, and excretion primarily takes place through the kidneys.
Pregnancy
There is no specific information available; consult local guidelines.
Breast-feeding
There is no specific information available; consult local guidelines.
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: 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: hydroxide
BNF-referencedHydroxide, represented by the molecular formula HO-, is an anion commonly found in various chemical and biological systems. It plays a crucial role in acid-base chemistry and is a fundamental component in many biochemical pathways. Hydroxide ions are involved in maintaining pH balance in biological systems and participate in various metabolic processes.
Dosage
Children: Refer to specific guidelines for pediatric dosing; consult the BNF for Children for accurate dosage information.
Adults: Refer to specific guidelines for use; dosage may vary based on the context of use.
Mechanism of action
Hydroxide ions act primarily as bases, neutralizing acids to form water and salts. They participate in various biochemical pathways, including selenium metabolism and the degradation of reactive oxygen species. Hydroxide can influence enzyme activity and stability by altering the pH of the environment, thereby affecting metabolic reactions.
Pharmacodynamics
Hydroxide ions can impact biological processes by changing the local pH, which influences enzyme activity, ion transport, and the solubility of other compounds. Their ability to neutralize acids can help regulate physiological pH, contributing to homeostasis in living organisms.
Pharmacokinetics
As an inorganic ion, hydroxide does not undergo traditional pharmacokinetic processes like absorption, distribution, metabolism, or excretion. Instead, it is rapidly equilibrated in biological fluids and participates in acid-base reactions, having immediate effects on the local environment.
Pregnancy
There is limited information regarding the use of hydroxide during pregnancy. Consult a healthcare professional for advice.
Breast-feeding
Limited data is available on the excretion of hydroxide in breast milk. Consult a healthcare professional before use.
Storage
Store in a cool, dry place away from direct sunlight. 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: 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: protamine
Protamine is a polypeptide that is used primarily as an antidote to heparin, a blood thinner. It is derived from the sperm of fish, particularly salmon, and works by binding to heparin, neutralizing its anticoagulant effects. Protamine is administered via intravenous injection and is essential in clinical settings, particularly during surgeries where heparin has been used for anticoagulation.
Indications
- Reversal of heparin anticoagulation during or after surgical procedures
- Management of heparin overdose
Dosage
Children: Refer to clinical guidelines for specific dosing based on the amount of heparin to be reversed in children.
Adults: Refer to clinical guidelines for specific dosing based on the amount of heparin to be reversed.
Mechanism of action
Protamine functions by forming stable complexes with heparin due to its positive charge, effectively neutralizing heparin's anticoagulant properties. This interaction occurs because heparin is negatively charged, leading to the formation of a protamine-heparin complex that is inactive.
Pharmacodynamics
The primary pharmacodynamic effect of protamine is the reversal of the anticoagulant effects of heparin. The onset of action is rapid, typically occurring within minutes of administration. The duration of action varies depending on the dose and the concentration of heparin present in the bloodstream.
Pharmacokinetics
Protamine is administered intravenously and has a rapid onset of action. It is metabolized in the liver and has a short half-life, typically ranging from 7 to 10 minutes. The elimination of protamine occurs through renal pathways, and its effects can be influenced by the presence of heparin in the bloodstream as well as by the dose of protamine administered.
Contra-indications
- Hypersensitivity to protamine
- Severe allergic reactions to fish
- Hypersensitivity to heparin
Adverse effects
- Hypotension
- Bradycardia
- Anaphylaxis
- Nausea
- Vomiting
- Flushing
- Rash
- Itching
Interactions
- Heparin
- Warfarin
- Anticoagulants
- Other blood thinners
Precautions
- Use with caution in patients with a history of allergies
- Monitor blood pressure and heart rate during administration
- Careful in patients with fish allergies
- Consider potential for heparin rebound effect
Pregnancy
Use only if clearly needed. Consult relevant guidelines and risk assessments.
Breast-feeding
Unknown whether excreted in human milk. Use caution and consider benefits vs risks.
Storage
Store at room temperature, protect from light, and do not freeze.
Formulations
- 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: recombinant
Recombinant drugs are biologically engineered medications produced using recombinant DNA technology. These drugs are designed to replace or supplement proteins or hormones that are deficient or absent in patients. They are crucial in the treatment of various conditions, including genetic disorders, certain cancers, and autoimmune diseases. Common examples include recombinant insulin for diabetes management and erythropoietin for anemia associated with chronic kidney disease.
Indications
- Diabetes mellitus
- Chronic kidney disease-related anemia
- Hemophilia
- Cancer (as targeted therapy)
- Autoimmune diseases (e.g., rheumatoid arthritis)
Dosage
Children: Refer to specific product guidelines for dosing information.
Adults: Refer to specific product guidelines for dosing information.
Mechanism of action
Recombinant drugs function by mimicking the action of naturally occurring proteins in the body. For instance, recombinant insulin binds to insulin receptors on target tissues, facilitating glucose uptake and metabolism. Erythropoietin stimulates erythropoiesis by binding to erythropoietin receptors in the bone marrow, promoting the production of red blood cells.
Pharmacodynamics
The pharmacodynamics of recombinant drugs vary depending on the specific protein or hormone being replaced or supplemented. Generally, they exert their effects at the cellular level by interacting with specific receptors, leading to a cascade of biological responses. The therapeutic effects are usually dose-dependent and can vary based on the patient's biological response and the presence of antibodies against the recombinant product.
Pharmacokinetics
Pharmacokinetics of recombinant drugs include absorption, distribution, metabolism, and excretion (ADME) characteristics that can differ significantly based on the specific drug. Many recombinant proteins have a short half-life and require parenteral administration. They are typically distributed throughout the body via the bloodstream, metabolized by the liver and other tissues, and excreted primarily through the kidneys. The pharmacokinetics may be influenced by the patient's age, weight, and overall health.
Pregnancy
Recombinant proteins should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Caution is advised when administering recombinant proteins during breastfeeding, as the effects on the infant are not well established.
Storage
Store in a refrigerator at 2-8 degrees Celsius. Do not freeze, and protect from light.
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: Glycerol
PubChem CID 753Molecular formula: C3H8O3
Mechanism of action
When administered rectally, glycerin exerts a hygroscopic and/or local irritant action, drawing water from the tissues into the feces and reflexively stimulating evacuation. Glycerin decreases intraocular pressure by creating an osmotic gradient between the blood and intraocular fluid, causing fluid to move out of the aqueous and vitreous humors into the bloodstream. Glycerin (glycerol) and sorbitol are hyperosmotic laxatives. When administered rectally, glycerin and sorbitol exert a hygroscopic and/or local irritant action, drawing water from the tissues into the feces and reflexly stimulating evacuation. The extent to which the simple physical distention of the rectum and the hygroscopic and/or local irritant actions are responsible for the laxative effects of some of these drugs is not known. Only extremely high oral doses of sorbitol (25 g daily) or glycerin exert laxative action. /Glycerin/ decreases intraocular pressure by creating an osmotic gradient between the blood and intraocular fluid, causing fluid to move out of the aqueous and vitreous humors into the bloodstream. The physicochemical effects of a series of alkanols, alkanediols and glycerol on erythrocyte shape and hemolysis at 4 and 20 degrees C were examined. We calculated the dielectric constant of the incubation medium, Ds, and the dielectric constant of the erythrocyte membrane Dm in the presence of organic solutes. The ratio Ds/Dm = -38.48 at 20 degrees C defines the normal biconcave shape in a medium without hemolytic agents. A decrease in Ds/Dm favors externalization or internalization with consequent hemolysis. Alkanols and alkanediols convert biconcave erythrocytes into echinocytes, which is accompanied by an increase in the projected surface area. Glycerol converts biconcave erythrocytes into stomatocytes, which was accompanied by a marginal decrease in the projected surface area. Progressive externalization in alkanols and alkanediols or internalization in glycerol resulted in a decrease in the projected surface area and the formation of smooth spheres. The degree of shape change induced was related to the degree of hemolysis and the ratio Ds/Dm. A decrease in temperature reduced both the degree of shape change and hemolysis. .../Thus/ physicochemical toxicity may be a result of a temperature dependent hydrophobic interaction between the organic solutes and the membrane and is best interpreted by the ability of the solutes to change Ds and Dm.
Pharmacodynamics
Glycerin is commonly classified as an osmotic laxative but may act additionally or alternatively through its local irritant effects; it may also have lubricating and fecal softening actions. Glycerin suppositories usually work within 15 to 30 minutes.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Insulin
PubChem CID 70678557Molecular formula: C256H381N65O77S6
Mechanism of action
INSULIN HAS DIRECT INHIBITORY EFFECT ON LIPASE CONCERNED WITH MOBILIZATION OF FATTY ACIDS, WHILE GROWTH HORMONE, GLUCOCORTICOIDS, THYROID HORMONES & CATECHOLAMINES ENHANCE LIPOLYSIS. IN ABSENCE OF INSULIN THERE IS ABNORMALLY HIGH RATE OF CONVERSION OF PROTEIN TO GLUCOSE. ... PROTEINS & AMINO ACIDS ARE CONVERTED TO GLUCOSE @ ABNORMALLY HIGH RATE IN INSULIN DEFICIENCY. THE LIVER IS SITE OF CONVERSION. PROTEIN & AMINO ACIDS ARE MOBILIZED FROM PERIPHERAL TISSUES. INSULIN ACTS TO.../STIMULATE/ GLYCOGEN SYNTHESIS. MECHANISM OF IMPORTANT ACTIONS OF INSULIN TO ENHANCE FACILITATED DIFFUSION OF GLUCOSE & ACTIVE TRANSPORT OF AMINO ACIDS ARE NOT KNOWN.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Phenol
PubChem CID 996Molecular formula: C6H6O
Mechanism of action
Phenol is a potent proteolytic agent. Concentrations in the 5% to 7% range dissolve tissue on contact via proteolysis. In high concentrations when injected next to a nerve, phenol produces a chemical neurolysis which is nonselective across nerve fiber size and most prominent on its outer aspect. Local anesthetic effects occur within 5-10 minutes. The effects of monoamine depletors and monoamine denervators on phenol induced tremor were studied in mice. The tremor induced by phenol was enhanced by pretreatment with reserpine or tetrabenazine, but not with syrosingopine. However, alpha-methyl-p-tyrosine, p-chlorophenylalanine or 6-hydroxydopamine did not affect the tremor. These results suggest that the depletion of central monoamines as a whole contribute to the enhancement of the tremor induced by phenol.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: dihydrogen
PubChem CID 783Molecular formula: H2
Mechanism of action
Substantial evidence indicates that molecular hydrogen (H2) has beneficial vascular effects because of its antioxidant and/or anti-inflammatory effects. Thus, hydrogen-rich water may prove to be an effective anti-aging drink. This study examined the effects of H2 on endothelial senescence and clarified the mechanisms involved. Hydrogen-rich medium was produced by a high-purity hydrogen gas generator. Human umbilical vein endothelial cells (HUVECs) were incubated with 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) for various time periods in normal or hydrogen-rich medium. The baseline H2concentration in hydrogen-rich medium was 0.55 +/- 0.07 mmol/L. This concentration gradually decreased, and H2 was almost undetectable in medium after 12 hr. At 24 hr after TCDD exposure, HUVECs treated with TCDD exhibited increased 8OHdG and acetyl-p53 expression, decreased nicotinamide adenine dinucleotide (NAD(+))/NADH ratio, impaired Sirt1 activity, and enhanced senescence-associated beta-galactosidase. However, HUVECs incubated in hydrogen-rich medium did not exhibit these TCDD-induced changes accompanying Nrf2 activation, which was observed even after H2 was undetectable in the medium. Chrysin, an inhibitor of Nrf2, abolished the protective effects of H2 on HUVECs. H2 has long-lasting antioxidant and anti-aging effects on vascular endothelial cells through the Nrf2 pathway, even after transient exposure to H2. Hydrogen-rich water may thus be a functional drink that increases longevity. /Hydrogen-rich water/ Amyloid beta (Abeta) peptides are identified /as a/ cause of neurodegenerative diseases such as Alzheimer's disease (AD). Previous evidence suggests Abeta-induced neurotoxicity is linked to the stimulation of reactive oxygen species (ROS) production. The accumulation of Abeta-induced ROS leads to increased mitochondrial dysfunction and triggers apoptotic cell death. This suggests antioxidant therapies may be beneficial for preventing ROS-related diseases such as AD. Recently, hydrogen-rich water (HRW) has been proven effective in treating oxidative stress-induced disorders because of its ROS-scavenging abilities. However, the precise molecular mechanisms whereby HRW prevents neuronal death are still unclear. In the present study, we evaluated the putative pathways by which HRW protects against Abeta-induced cytotoxicity /in SK-N-MC cells/. Our results indicated that HRW directly counteracts oxidative damage by neutralizing excessive ROS, leading to the alleviation of Abeta-induced cell death. In addition, HRW also stimulated AMP-activated protein kinase (AMPK) in a sirtuin 1 (Sirt1)-dependent pathway, which upregulates forkhead box protein O3a (FoxO3a) downstream antioxidant response and diminishes Abeta-induced mitochondrial potential loss and oxidative stress. Taken together, our findings suggest that HRW may have potential therapeutic value to inhibit Abeta-induced neurotoxicity. /Hydrogen-rich water/ The NLRP3 inflammasome, an intracellular multi-protein complex controlling the maturation of cytokine interleukin-1beta, plays an important role in lipopolysaccharide (LPS)-induced inflammatory cascades. Recently, the production of mitochondrial reactive oxygen species (mtROS) in macrophages stimulated with LPS has been suggested to act as a trigger during the process of NLRP3 inflammasome activation that can be blocked by some mitochondria-targeted antioxidants. Known as a ROS scavenger, molecular hydrogen (H2) has been shown to possess therapeutic benefit on LPS-induced inflammatory damage in many animal experiments. Due to the unique molecular structure, H2 can easily target the mitochondria, suggesting that H2 is a potential antagonist of mtROS-dependent NLRP3 inflammasome activation. Here we have showed that, in mouse macrophages, H2 exhibited substantial inhibitory activity against LPS-initiated NLRP3 inflammasome activation by scavenging mtROS. Moreover, the elimination of mtROS by H2 resultantly inhibited mtROS-mediated NLRP3 deubi
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: hydroxide
PubChem CID 961Molecular formula: HO-
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.
- ADCO MAYOGEL SUSPENSION · Adcock Ingram
- ALPHAGAN P · Allergan
- APIDRA 100IU/ML · Sanofi
- B-PROST 1 · Indoco Remedies
- BIOSULIN N · M. J. Biopharm Pvt. Ltd
- BIOSULIN R · Mj Biopharm
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- ACIQUARD O SUSPENSION (Each 5ml contains Dried Aluminium Hydroxide / Magnesium Hydroxide / Simethicone / Oxethazaine 250mg/250mg/50mg/10mg) · Pharmanova
- ACTRAPID 100IU/ML SOLUTION FOR INJECTION IN VIAL (HUMAN INSULIN) · Novo Nordisk
- ACTRAPID FLEXPEN (RECOMBINANT HUMAN INSULIN) 100IU/ML SUSPENSION FOR INJECTION IN PRE-FILLED PEN · Novo Nordisk
- ALBIOMIN 20% SOLUTION FOR INTRAVENOUS INJECTION (HUMAN ALBUMIN 200G/L) · Biotest
- ALBIOMIN 5% SOLUTION FOR INTRAVENOUS INJECTION (HUMAN ALBUMIN 50G/L) · Biotest