(hydroxy · DailyMed)
IVANOR PLUS
Butylated Hydroxy Toulene 0.2 mg/6 mL,Closantel sodium 100 mg/ml,Glycerol formal 300 mg/6 mL,Ivermectin 10 mg/ml,Propylene Gylcol Up to 1 ml
What it does
Butylated is a chemical used to prevent food and products from spoiling by stopping fats and oils from going bad.
Commonly used for: preservative in food products, stabilizer in cosmetics
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Sourcing - Kenya onlyRegistration & product details
Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:46:08 · updated 2026-09-28 03:00:45
Drug Interactions
2Unknown (2)
Coumarins - increases anticoagulant effect
Ivermectin potentially increases the anticoagulant effect of coumarins.
Ivermectin - increases exposure
Levamisoleincreasestheexposuretoivermectin.o Study Ixazomib
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About butylated
Butylated is a chemical used to prevent food and products from spoiling by stopping fats and oils from going bad.
What it treats
- preservative in food products
- stabilizer in cosmetics
How it works
It works by slowing down the process of oxidation, which can cause spoilage and rancidity in fats and oils.
Who it's for
It is generally used in food manufacturing and cosmetic industries.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About closantel
Closantel is a medication used to treat certain parasitic infections in animals. It helps eliminate specific types of worms.
What it treats
- parasitic infections (helminthiasis)
How it works
Closantel works by damaging the outer layer of parasites, leading to their death and removal from the body.
Who it's for
This medication is typically used in veterinary medicine for livestock and pets suffering from specific worm infections.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About formal
Formal is a medication used to treat various health conditions. It's important to understand how it works and who it is for.
How it works
Formal works by affecting certain processes in the body to help improve health.
Who it's for
Formal is suitable for individuals with specific medical conditions 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 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 gylcol
Glycol is a substance used in various medical products, often to help with certain health conditions.
How it works
Glycol helps to maintain moisture and improve the texture of products.
Who it's for
Glycol can be used by individuals needing skin hydration or for specific medical applications.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About hydroxy
Hydroxy is a medication used to treat various health conditions. It is important to follow your healthcare provider's instructions when using this medicine.
What it treats
- autoimmune diseases (such as rheumatoid arthritis)
- malaria prevention and treatment
- certain skin conditions (like lupus)
How it works
Hydroxy helps to reduce inflammation and the activity of the immune system.
Who it's for
This medicine is for people with specific autoimmune disorders, those at risk of malaria, or those with certain skin issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About ivermectin
Ivermectin is a medicine used to treat certain infections caused by parasites.
What it treats
- river blindness (onchocerciasis)
- lymphatic filariasis
- scabies
- strongyloidiasis
How it works
Ivermectin works by killing parasites in the body, helping to eliminate infections.
Who it's for
Ivermectin is for people diagnosed with specific parasitic infections.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About propylene
Propylene is a compound used in various medical applications, often as a solvent or carrier for medications.
What it treats
- used in some topical treatments
- acts as a solvent in pharmaceuticals
How it works
Propylene helps dissolve other substances, making them easier to apply or absorb in the body.
Who it's for
It is typically for adults and children who need certain medications delivered in a specific form.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About toulene
Toluene is a solvent often used in industrial processes and as a paint thinner. It can also be found in some household products.
What it treats
- solvent for paints and coatings
- thinner for varnishes
- component in adhesives
How it works
Toluene works by dissolving other substances, making it easier to apply or mix them.
Who it's for
Toluene is used by professionals in industries such as painting, construction, and manufacturing.
Cautions
- • Avoid inhaling toluene fumes, as they can be harmful.
- • Use in well-ventilated areas to reduce exposure.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Ivermectin
BNF-referencedIvermectin is an antiparasitic agent that is primarily used in the treatment of various parasitic infections, including onchocerciasis, strongyloidiasis, and scabies. It works by binding to specific chloride channels in the parasite, leading to increased permeability of the cell membrane, paralysis, and death of the parasite. Ivermectin is recognized for its efficacy and safety profile, making it a vital medication in the management of helminthic infections.
Indications
- Onchocerciasis (river blindness)
- Strongyloidiasis
- Scabies (especially hyperkeratotic or crusted scabies)
- Lymphatic filariasis
- Other helminth infections
Dosage
Children: Child 6 months–17 years: 100 mg for 1 dose;
Adults: Adult: Initially 1 mg/kg daily on the first day, then increased to 6 mg/kg daily in divided doses, gradually increased over 3 days. Maximum 9 mg/kg per day. For scabies, 100 mg for 1 dose; if reinfection occurs, a second dose may be given after 2 weeks.
Mechanism of action
Ivermectin binds selectively to glutamate-gated chloride channels, leading to increased permeability of the cell membrane to chloride ions. This results in hyperpolarization of the nerve or muscle cells in the parasites, causing paralysis and death. It also interacts with other chloride channels, which may contribute to its antiparasitic effects.
Pharmacodynamics
Ivermectin exhibits broad-spectrum activity against a variety of parasites, including nematodes and arthropods. Its effectiveness is attributed to its ability to paralyze and kill parasites, thus facilitating their expulsion from the host. The drug has a long half-life, allowing for effective dosing regimens, and it is generally well-tolerated in patients.
Pharmacokinetics
Ivermectin is rapidly absorbed following oral administration, with peak plasma concentrations occurring within 4 to 6 hours. It is extensively distributed throughout the body, including the central nervous system. The drug undergoes hepatic metabolism, primarily via cytochrome P450, and is eliminated with a half-life of approximately 18 hours. Excretion occurs mainly in the feces, with a smaller proportion eliminated in urine.
Contra-indications
- Blood disorders
- Epilepsy
- Sjögren’s syndrome
Adverse effects
- Diarrhoea
- Dizziness
- Headache
- Influenza-like illness
- Insomnia
- Myalgia
- Nausea
- Rash
- Seizure
- Taste alteration
- Vomiting
- Skin reactions
- Abnormal sensation in eye
- Anaemia
- Appetite decrease
- Asthenia
- Asthma exacerbated
- Chest discomfort
- Confusion
- Conjunctival haemorrhage
- Constipation
- Gastrointestinal discomfort
- Headache
- Hepatitis
- Hypotension
- Joint disorders
- Leukopenia
- Myalgia
- Nausea
- Oedema
- Pain
- Psychiatric disorder
- Severe cutaneous adverse reactions
- Stupor
- Tachycardia
- Tremor
- Urinary incontinence
- Vertigo
Interactions
- Coumarins: Unknown (increases anticoagulant effect)
- Levamisole: Unknown (increases exposure)
Precautions
- Use with caution in hepatic impairment
- Avoid sun exposure when using topical formulations
Pregnancy
Embryotoxic in animal studies, avoid if possible.
Breast-feeding
Manufacturer advises avoid-limited information available; ensure infant does not come in contact with treated areas.
Storage
Store in a cool, dry place away from direct sunlight.
Formulations
- Tablets
- Topical formulation
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: butylated
Butylated compounds, particularly butylated hydroxyanisole (BHA) and butylated hydroxytoluene (BHT), are synthetic antioxidants widely used in food preservation and cosmetics. They prevent the oxidative degradation of fats and oils, thereby extending the shelf life of products. While they are generally regarded as safe at low concentrations, concerns have been raised regarding their long-term effects and potential carcinogenicity.
Dosage
Children: Refer to specific formulations and usages, as dosing can vary widely depending on the application and regulatory guidelines.
Adults: Refer to specific formulations and usages, as dosing can vary widely depending on the application and regulatory guidelines.
Mechanism of action
Butylated hydroxyanisole (BHA) and butylated hydroxytoluene (BHT) act as antioxidants by inhibiting the oxidation of lipids. They scavenge free radicals and donate hydrogen atoms to reactive species, thus stabilizing and preventing oxidative damage to cellular components. This action helps to protect the integrity of cell membranes and prevent the formation of harmful peroxides.
Pharmacodynamics
The pharmacodynamic properties of butylated compounds are primarily related to their antioxidant activity. They exhibit a dose-dependent ability to inhibit lipid peroxidation, which is crucial in protecting cells from oxidative stress. Furthermore, they may modulate certain biochemical pathways involved in cell signaling and apoptosis, although these effects are less well-characterized.
Pharmacokinetics
Butylated compounds are absorbed from the gastrointestinal tract following oral ingestion. They undergo metabolic processing primarily in the liver, where they are conjugated and excreted in urine. The half-life of butylated compounds in humans is variable, influenced by factors such as dosage and individual metabolism. Accumulation in tissues is generally low, but prolonged exposure may lead to higher tissue concentrations.
Adverse effects
- Gastrointestinal disturbances
- Allergic reactions
- Potential carcinogenic effects with prolonged exposure
Precautions
- Use with caution in patients with a history of hypersensitivity to butylated compounds
- Avoid prolonged exposure due to potential toxicity
Pregnancy
Limited data available, use only if the benefits outweigh the risks.
Breast-feeding
Unknown, exercise caution and consult a healthcare provider.
Storage
Store in a cool, dry place away from light.
Formulations
- Butylated hydroxytoluene (BHT)
- Butylated hydroxyanisole (BHA)
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: closantel
BNF-referencedClosantel is a veterinary anthelmintic agent primarily used for the treatment of parasitic infections in livestock. It is particularly effective against certain species of nematodes and trematodes, targeting helminths that can cause significant health issues in animals. Closantel functions by disrupting the energy metabolism of these parasites, ultimately leading to their death.
Indications
- Nematode infections
- Trematode infections
- Parasitic infections in livestock
Dosage
Children: Refer to specific product guidelines or BNF for detailed dosing information.
Adults: Refer to specific product guidelines or BNF for detailed dosing information.
Mechanism of action
Closantel acts by inhibiting the oxidative phosphorylation process in the mitochondria of helminths. This disruption in energy production leads to paralysis and death of the parasites, making it effective against infections caused by nematodes and trematodes.
Pharmacodynamics
Closantel exhibits a high affinity for the mitochondrial complexes involved in oxidative phosphorylation. The drug's action on helminths results in reduced ATP production, which is critical for their survival and reproduction. Its selectivity for parasitic cells over host cells minimizes toxicity in treated animals.
Pharmacokinetics
Closantel is well absorbed following oral administration, with a significant volume of distribution indicating extensive tissue binding. The drug undergoes metabolism in the liver, with subsequent excretion primarily via the feces. Its half-life allows for effective dosing intervals, maximizing its anthelmintic efficacy.
Pregnancy
Safety in pregnancy has not been established. Use only if clearly needed.
Breast-feeding
Caution is advised. The effects on the nursing infant are unknown.
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: formal
BNF-referencedFormaldehyde is a simple organic compound with the molecular formula C3H8O2. It is a colorless gas with a pungent odor and is highly soluble in water, forming formalin when dissolved. It is commonly used as a disinfectant, preservative, and in the production of various chemicals. In the medical field, formaldehyde is utilized in some sterilization processes and as a preservative for biological specimens. However, its use is limited due to potential toxicity and carcinogenic properties.
Indications
- Disinfectant
- Preservative
- Sterilization of medical instruments
- Formalin for histology and pathology specimens
Dosage
Children: Refer to local guidelines and recommendations, as doses may vary based on the specific clinical situation and formulation used.
Adults: Refer to local guidelines and recommendations, as doses may vary based on the specific clinical situation and formulation used.
Mechanism of action
Formaldehyde acts primarily as a cross-linking agent, covalently binding to proteins and nucleic acids. This mechanism is responsible for its effectiveness as a preservative and disinfectant, as it disrupts cellular metabolism and integrity in microorganisms, leading to cell death.
Pharmacodynamics
The pharmacodynamics of formaldehyde involves its ability to inactivate proteins and DNA through cross-linking, which interferes with cellular functions. This action results in its antimicrobial and preservative effects, although it also contributes to toxicity. The compound can elicit inflammatory responses in tissues and has been associated with respiratory irritations and carcinogenic effects upon prolonged exposure.
Pharmacokinetics
Formaldehyde is rapidly absorbed via inhalation and dermal routes, and it is metabolized mainly by the enzyme formaldehyde dehydrogenase to formic acid, which is then converted to carbon dioxide and water. The elimination half-life in the body is relatively short due to its rapid metabolism. Formaldehyde is distributed widely in body tissues, but due to its reactivity, it does not accumulate significantly.
Pregnancy
Safety in pregnancy has not been established.
Breast-feeding
It is unknown whether this drug is excreted in human milk.
Storage
Store at room temperature, away from moisture and heat.
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: gylcol
Glycol refers to a class of compounds that includes various diols, with ethylene glycol and propylene glycol being the most commonly known. These compounds are primarily used as solvents, antifreeze agents, and in various industrial applications. In a clinical context, propylene glycol is often used as a pharmaceutical excipient and may also be utilized to treat certain medical conditions, although its use in humans should be carefully monitored due to potential toxicity at high doses.
Indications
- Solvent in pharmaceutical formulations
- Moisturizer and humectant in topical applications
- Potential use in the management of drug solubility issues
Dosage
Children: Refer to specific formulations and clinical guidelines, as dosing varies widely based on the application and formulation.
Adults: Refer to specific formulations and clinical guidelines, as dosing varies widely based on the application and formulation.
Mechanism of action
Glycols, particularly propylene glycol, act as humectants, which help to retain moisture in formulations. They can also enhance the solubility of drugs, aiding in their absorption when used as excipients. Propylene glycol is metabolized in the liver to lactate and subsequently to glucose, providing a source of energy when utilized in metabolic pathways.
Pharmacodynamics
The pharmacodynamics of glycols involve their ability to modulate the viscosity of solutions and enhance the solubility of other compounds. Propylene glycol can also facilitate the absorption of other drugs when used in formulations. It exhibits a low toxicity profile when used appropriately, but excessive systemic exposure can lead to metabolic acidosis and other adverse effects.
Pharmacokinetics
Glycols are rapidly absorbed when administered intravenously or orally. Propylene glycol is metabolized primarily in the liver, with a half-life varying based on the dose and individual metabolism. Renal excretion plays a role in the elimination of metabolites. Accumulation can occur in individuals with impaired liver or kidney function, necessitating careful monitoring of dosing in such populations.
Pregnancy
The safety of glycol in pregnancy is not well established. Consult healthcare professionals before use.
Breast-feeding
Glycol's effects during breastfeeding are not well characterized. Caution is advised.
Storage
Store in a cool, dry place away from direct sunlight and moisture.
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: hydroxy
BNF-referencedHydroxyzine is an antihistamine of the first generation, primarily used for its sedative and anxiolytic properties. It is effective in treating anxiety, nausea, and allergic conditions. Hydroxyzine also possesses anticholinergic properties, which contribute to its sedative effects. It is commonly used in both adult and pediatric populations for various indications, including preoperative sedation and management of pruritus.
Indications
- Anxiety disorders
- Nausea and vomiting
- Allergic conditions
- Preoperative sedation
- Pruritus
Dosage
Children: Refer to the BNF for Children for appropriate dosing recommendations based on age and weight.
Adults: Refer to the BNF for specific dosing guidelines based on the indication and patient characteristics.
Mechanism of action
Hydroxyzine works by antagonizing the H1 histamine receptors, leading to a reduction in the effects of histamine in the body. This action helps alleviate symptoms of allergic reactions and promotes sedation. Additionally, it may exert effects on serotonin and adrenergic receptors, which could contribute to its anxiolytic properties. Hydroxyzine is also involved in various metabolic pathways, including selenium metabolism and the degradation of reactive oxygen species.
Pharmacodynamics
The pharmacodynamic effects of hydroxyzine include sedation, anxiolysis, and reduction of allergic symptoms. Its sedative effects can make it useful in managing anxiety and inducing sleep, while its antihistaminic properties help to relieve symptoms such as itching and rashes associated with allergic reactions. The onset of action is typically within 15 to 30 minutes when taken orally, with peak effects occurring within 1 to 2 hours.
Pharmacokinetics
Hydroxyzine is well absorbed from the gastrointestinal tract, with peak plasma concentrations occurring approximately 2 hours after oral administration. It is extensively metabolized in the liver, with metabolites, including cetirizine, possessing their own therapeutic effects. Hydroxyzine has a half-life of approximately 20 hours, allowing for once or twice daily dosing. It is primarily excreted in the urine, with less than 1% of the unchanged drug found in urine.
Interactions
- hydroxyzine+antiepileptics: Severe (increases risk of overheating and dehydration)
- hydroxyzine+zonisamide: Severe (increases risk of overheating and dehydration)
- hydroxychloroquine+penicillamine: Severe (increases risk of haematological toxicity)
- hydroxychloroquine+agalsidase alfa: Unknown (decreases effects)
- hydroxychloroquine+agalsidase beta: Unknown (decreases exposure)
- hydroxychloroquine+oral cholera vaccine: Unknown (decreases efficacy)
- live vaccines+hydroxy carbamide: Unknown (increases risk of generalised infection (possibly life-threatening))
- lanthanum+hydroxychloroquine: Unknown (decreases absorption)
- macrolides+hydroxychloroquine: Unknown (increases risk of serious cardiovascular adverse effects)
- hydroxychloroquine+remdesivir: Unknown (decreases effects)
Pregnancy
Safety in pregnancy has not been established. Use only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Use with caution. Hydroxychloroquine is excreted in breast milk, and effects on the infant are unknown.
Storage
Store in a cool, dry place, protected from light. Keep out of reach of children.
Formulations
- Tablets
- Oral solution
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: propylene
BNF-referencedPropylene, also known as propene, is a colorless gas with a faint petroleum-like odor. It is primarily used as a chemical feedstock in the production of polypropylene, a widely used plastic. Propylene also has applications in agriculture as a plant growth inhibitor, where it functions by affecting the oxidation processes in plants.
Indications
- Plant growth regulation
- Agricultural applications as a growth inhibitor
Dosage
Children: Not applicable.
Adults: Refer to the relevant agricultural guidelines for specific applications.
Mechanism of action
In an in vitro study, propylene acts as a plant growth inhibitor by inhibiting the oxidation of indole-3-acetic acid by peroxidase in the presence of superoxide anion radicals. This inhibition is linked to the activation of an iron complex (compound III) shuttle, which enhances the reaction rate between superoxide and peroxidase, ultimately affecting plant growth processes. Propylene is a less effective inhibitor compared to ethylene.
Pharmacodynamics
The pharmacodynamic effects of propylene are primarily observed in its role as a growth inhibitor in plants. By modulating the oxidation of phytohormones like indole-3-acetic acid, propylene can influence various growth responses in plants, potentially affecting processes such as cell elongation and division.
Pharmacokinetics
Information on the pharmacokinetics of propylene in humans is not well-documented, as its primary uses are industrial and agricultural. Its metabolism may be influenced by environmental factors, and its effects are primarily studied in the context of plant biology rather than human pharmacology.
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: toulene
Toluene is a colorless, volatile liquid with a sweet smell that is commonly used as an industrial solvent. It is a member of the aromatic hydrocarbon family and is found in products such as paints, paint thinners, adhesives, and nail polish removers. Toluene can be absorbed through inhalation, ingestion, or dermal exposure, leading to various degrees of toxicity. Chronic exposure can result in neurological effects and other health issues.
Dosage
Children: Refer to established guidelines for exposure and toxicity management as there is no standard dosing for therapeutic use.
Adults: Refer to established guidelines for exposure and toxicity management as there is no standard dosing for therapeutic use.
Mechanism of action
Toluene exerts its effects primarily through the central nervous system. It acts as a non-specific CNS depressant, interfering with neurotransmitter systems and causing disruption in synaptic transmission. Toluene is known to enhance the inhibitory effects of GABA (gamma-aminobutyric acid) and may inhibit NMDA (N-methyl-D-aspartate) receptors, contributing to its sedative effects.
Pharmacodynamics
The pharmacodynamic effects of toluene include sedation, euphoria, and decreased cognitive and motor functions. Due to its lipophilic nature, toluene readily crosses the blood-brain barrier, leading to central nervous system effects. Toxicological effects can include headaches, dizziness, ataxia, and, in severe cases, unconsciousness or coma. Chronic exposure can lead to neurotoxicity and cognitive deficits.
Pharmacokinetics
Toluene is rapidly absorbed through inhalation, as well as through the gastrointestinal tract and skin. It is widely distributed in body tissues, particularly in lipid-rich organs like the brain and adipose tissue. Metabolism occurs primarily in the liver via cytochrome P450 enzymes, leading to the formation of various metabolites, including benzyl alcohol and benzoic acid. Excretion occurs mainly through urine, with a half-life that can vary depending on the route of exposure and individual factors.
Adverse effects
- Headache
- Dizziness
- Nausea
- Vomiting
- Central nervous system depression
- Respiratory irritation
- Dermatitis
- Liver damage
- Kidney damage
- Hearing loss
Precautions
- Use with caution in patients with a history of substance abuse
- Avoid exposure in patients with respiratory diseases
- Handle with care in pregnant women due to potential teratogenic effects
- Ensure adequate ventilation when using toluene
Pregnancy
Toluene is classified as a teratogen and can cause developmental issues in the fetus if exposure occurs during pregnancy. Caution is advised.
Breast-feeding
Toluene can be excreted in breast milk. Caution is advised for nursing mothers to avoid exposure.
Storage
Store in a cool, dry place away from direct sunlight and heat sources. Keep container tightly closed.
Formulations
- Solvent
- Aerosol spray
- Adhesives
- Paint thinners
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: closantel
PubChem CID 42574Molecular formula: C22H14Cl2I2N2O2
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: formal
PubChem CID 8020Molecular formula: C3H8O2
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: hydroxy
PubChem CID 961Molecular formula: HO-
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: propylene
PubChem CID 8252Molecular formula: C3H6
Mechanism of action
In an in vitro study of the mechanism of action of ethylene as a plant growth inhibitor, the effects of ethylene and some of its analogs, including propylene, on the oxidation of indole-3-acetic acid were examined. Ethylene and its analogs inhibited the oxidation of indole-3-acetic acid by peroxidase under conditions where the iron complex (compound III, an oxy-ferrous complex of peroxidase) shuttle was activated. Inhibition occurred only in the presence of the superoxide anion radical 02(-). Spectral and kinetic data indicated that ethylene and its analogs enhanced the rate of reaction of 02(-) with peroxidase; ie, the iron complex (compound III) shuttle, resulting in the formation of compound III. Propylene was a less effective inhibitor than ethylene.
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.
- ALFAMEC 1% SOLUTION FOR INJECTION (Each ml contains Ivermectin 10mg) · Alfasan International
- ASHIVER INJECTION (Each ml containns Ivermectin 10mg/ Benzyl Alchohol 1.5% v/v) · Ashish Life Science
- BIOZIVIT SYRUP · Adsila Organics
- BLUKOF BABY COUGH · Prowill Pharmaceuticals
- COVONIA DRY AND TICKLY COUGH LINCTUS SYRUP (Each 5ml contains Glycerol 1.36g) · Thornton And Ross
- DUFAMEC -P HORSEWOMER INJECTOR (Each gram (g) of paste contains: Ivermectin/Praziquantel 4mg/36mg) · Dutch Farm International