EUGICA IVY SYRUP
Citric Acid 2.7 mg/6 mL,Dried Ivy Leaf Extract 38.47 mg/5 ml,Honey Flavour 10 mg/6 mL,Potassium Sorbate 6.7 mg/6 mL,Purified Water Q.S. TO 5ml ml,Sorbitol 70 % 2750 mg/6 mL,Xantham Gum 10 mg/6 mL
What it does
Citric acid is a natural substance often used to help with digestion and to support urinary health.
Commonly used for: urinary tract infections (UTIs), kidney stones, digestive issues
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 23:42:26 · updated 2026-09-17 03:00:43
About citric
Citric acid is a natural substance often used to help with digestion and to support urinary health.
What it treats
- urinary tract infections (UTIs)
- kidney stones
- digestive issues
How it works
Citric acid helps to increase the acidity of urine, which can help to prevent the formation of certain types of kidney stones and may aid digestion.
Who it's for
Citric acid is suitable for adults and children who may need help with urinary health or digestion.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About dried
Dried is a natural substance that is often used for various health benefits.
What it treats
- general health support
- herbal supplements
How it works
Dried works by providing nutrients and compounds that may support overall health and wellness.
Who it's for
This product is suitable for adults looking for natural health support.
Cautions
- • Ensure you are not allergic to the specific type of dried being used.
- • Consult a healthcare provider if you are pregnant, nursing, or have a medical condition.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About extract
This medicine is an extract that is used for various health conditions.
What it treats
- general health improvement
- nutritional support
How it works
The extract may provide health benefits by supplying essential nutrients or compounds that support bodily functions.
Who it's for
This medicine is suitable for individuals looking to improve their overall health or address specific nutritional needs.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About flavour
Flavour is used to enhance the taste of products and make them more enjoyable.
What it treats
- improving the taste of foods and drinks
- masking unpleasant tastes in medications
How it works
Flavours work by stimulating our taste buds, making foods and drinks taste better.
Who it's for
Flavour can be used by anyone who wants to improve the taste of their food or beverages.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About gum
Gum is a chewable product often used for freshening breath and promoting oral health.
What it treats
- breath freshening
- oral health improvement
How it works
Chewing gum stimulates saliva production, which helps clean the mouth and reduce cavities.
Who it's for
Anyone who wants to improve their breath or maintain oral hygiene.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About honey
Honey is a natural substance made by bees, often used for its sweet taste and potential health benefits.
What it treats
- wound healing
- soothing sore throats
- cough relief
- digestive health
How it works
Honey has antibacterial properties and can help to soothe irritation and promote healing.
Who it's for
Honey can be used by most people, but should be avoided in infants under one year old due to the risk of botulism.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About ivy
Ivy is a natural remedy often used to help relieve coughs and support respiratory health.
What it treats
- coughs
- respiratory conditions
How it works
Ivy may help loosen mucus in the airways, making it easier to breathe and reducing coughing.
Who it's for
Ivy is suitable for adults and children over a certain age who are experiencing coughs and other respiratory issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About leaf
This medication is derived from plant leaves and is used to treat certain health conditions.
What it treats
- various health conditions
How it works
It works by influencing the body's systems to help alleviate symptoms or manage conditions.
Who it's for
This medicine is suitable for individuals needing treatment for specific health issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About purified
Purified ingredients are often used in various medicines to ensure safety and effectiveness by removing impurities.
What it treats
- various medical conditions
How it works
Purified ingredients help in delivering the intended effects of the medicine without the risk of contaminants.
Who it's for
People who need medications with safe and effective ingredients.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About sorbate
Sorbate is a preservative used to prevent spoilage in foods and cosmetics.
What it treats
- food preservation
- cosmetic preservation
How it works
Sorbate stops the growth of mold, yeast, and some bacteria, helping to keep products fresh.
Who it's for
Sorbate is suitable for use in food and cosmetic products for everyone, but should be used as directed.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About sorbitol
Sorbitol is a type of sugar alcohol used to help relieve constipation by softening the stool.
What it treats
- constipation
- bowel preparation
How it works
Sorbitol works by drawing water into the intestines, which helps to soften the stool and make it easier to pass.
Who it's for
Sorbitol 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 xantham
Xantham is a substance often used as a thickening agent in food and other products.
What it treats
- thickening agent in food
- improving texture in various products
How it works
Xantham works by increasing the viscosity of liquids, making them thicker and helping ingredients blend together smoothly.
Who it's for
Xantham is suitable for people looking to enhance the texture of their food or products.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: citric
BNF-referencedCitric acid, a key intermediate in the citric acid cycle, is a weak organic acid with the molecular formula C10H18O. It is commonly found in citrus fruits and is widely used in the food and pharmaceutical industries for its preservative and flavoring properties. Citric acid is also utilized in various formulations for its ability to enhance solubility and stability of active ingredients.
Indications
- Acidulant in food and beverages
- Preservative in pharmaceutical formulations
- pH adjuster in various chemical preparations
Dosage
Children: Refer to product-specific guidelines for appropriate dosing based on formulation and indication.
Adults: Refer to product-specific guidelines for appropriate dosing based on formulation and indication.
Mechanism of action
Citric acid acts by chelating metal ions, which can enhance the solubility of certain compounds and improve their bioavailability. It also contributes to the acidity of the environment, which can influence enzymatic activity and metabolic pathways, particularly in the degradation of citronellol.
Pharmacodynamics
Citric acid exhibits mild pharmacological effects primarily attributed to its role in metabolic processes. It aids in the regulation of pH levels, which can impact enzymatic reactions and biochemical pathways. The acid's chelating properties may help to reduce the toxicity of certain metal ions in biological systems.
Pharmacokinetics
Citric acid is rapidly absorbed after oral administration and is metabolized in the liver. It undergoes conversion to various metabolites in the citric acid cycle, contributing to energy production. The elimination primarily occurs through urine, with minimal accumulation in the body.
Pregnancy
Citric acid is generally regarded as safe during pregnancy when used in food amounts. However, consult a healthcare provider for advice on medicinal use.
Breast-feeding
Citric acid is considered safe during breastfeeding when consumed in food amounts. For medicinal use, consult a healthcare provider.
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: dried
Dried refers to the process of removing moisture from substances, commonly applied to foods and herbs to preserve them. In the context of pharmacology, dried preparations, such as dried extracts or powders, are often used in herbal medicine as they concentrate the active constituents of the plant material, allowing for more potent effects.
Indications
- Nutritional supplementation
- Herbal therapy for various conditions
- Preservation of medicinal properties of plants
Dosage
Children: Dosage for dried herbal preparations in children should be approached cautiously and is best determined by a healthcare professional. Refer to paediatric guidelines for specific dosing recommendations.
Adults: Dosage for dried herbal preparations varies widely depending on the specific herb and its intended use. Refer to specific guidelines or reputable sources for dosing information.
Mechanism of action
The mechanism of action for dried herbal preparations varies depending on the specific plant material involved. Generally, the active constituents in dried herbs can exert their effects through various pathways, such as modulating neurotransmitter systems, influencing metabolic pathways, and acting on specific receptors in the body. For instance, flavonoids, terpenes, and alkaloids found in certain dried herbs can exhibit anti-inflammatory, antioxidant, or antimicrobial properties.
Pharmacodynamics
The pharmacodynamics of dried drugs depend on their specific chemical constituents. These compounds can affect physiological functions, such as modulating inflammatory responses, enhancing immune function, or affecting neurotransmission. The effects can vary widely based on the type of herb, the method of drying, and the concentration of active ingredients.
Pharmacokinetics
The pharmacokinetics of dried herbal preparations can vary significantly based on the specific herb used. Generally, after ingestion, the active compounds are absorbed in the gastrointestinal tract, metabolized primarily by the liver, and then excreted through urine or feces. The bioavailability of these compounds can be influenced by factors such as the form of the preparation (e.g., powder, extract), the presence of other food substances, and individual patient characteristics.
Pregnancy
Safety during pregnancy has not been established. Consult a healthcare provider before use.
Breast-feeding
Consult a healthcare provider before use during breastfeeding.
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: extract
Extracts are concentrated preparations obtained from plants, herbs, or other natural sources through various extraction methods such as solvent extraction, steam distillation, or cold pressing. They are used for their therapeutic properties in herbal medicine and can contain a variety of bioactive compounds including alkaloids, flavonoids, terpenes, and essential oils. The specific effects and uses of an extract depend on its source material and the compounds it contains.
Indications
- General wellness support
- Anti-inflammatory effects
- Antioxidant activity
- Digestive aid
- Support for immune function
Dosage
Children: Paediatric dosing should be determined based on the specific extract and its intended use. Consultation with a healthcare provider is recommended for accurate dosing.
Adults: Dosage varies widely depending on the specific extract and formulation. It is essential to follow the manufacturer's instructions or consult a healthcare professional for appropriate dosing.
Mechanism of action
The mechanism of action of herbal extracts can vary significantly based on their constituents. Commonly, they exert their effects through multiple pathways including modulation of neurotransmitter systems, interference with inflammatory processes, or direct antioxidant activity. Some extracts may activate certain receptors or inhibit enzymes related to disease processes.
Pharmacodynamics
The pharmacodynamics of extracts is complex due to the presence of multiple active compounds which can have synergistic or antagonistic effects. These compounds may influence cellular signaling pathways, alter gene expression, or modulate immune response. The overall pharmacological profile is determined by the specific composition of the extract, its concentration, and the biological target it interacts with.
Pharmacokinetics
The pharmacokinetics of extracts involves absorption, distribution, metabolism, and excretion of the active compounds. Generally, herbal extracts are absorbed in the gastrointestinal tract, with bioavailability influenced by factors such as formulation, the presence of food, and individual metabolic differences. Compounds may undergo hepatic metabolism, and elimination can occur through urine or feces, depending on their chemical nature.
Pregnancy
Consult a healthcare professional before use, as the safety of the extract during pregnancy has not been established.
Breast-feeding
Consult a healthcare professional before use, as the safety of the extract during breastfeeding has not been established.
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: flavour
Flavour agents, often referred to as flavorings, are substances added to food and beverages to impart a specific taste or aroma. They can be natural or artificial and are widely used in the food industry to enhance palatability and consumer acceptance of products. Natural flavors are derived from fruits, vegetables, spices, and other plant materials, while artificial flavors are synthesized to mimic natural tastes.
Indications
- Enhancement of taste in food and beverages
- Improvement of palatability in nutritional products
- Masking undesirable flavors in medications
Dosage
Children: There is no specific pediatric dosage for flavor agents as they are used as needed to improve the taste of food and beverages.
Adults: There is no specific dosage for flavor agents as they are used as needed to achieve the desired taste and aroma in food and beverages.
Mechanism of action
Flavor compounds interact with taste receptors on the tongue, stimulating the sensory neurons responsible for taste perception. This interaction influences the overall flavor profile of food and beverages, enhancing the eating experience. Some flavors may also have a psychological effect, stimulating appetite or evoking pleasant memories associated with certain tastes.
Pharmacodynamics
While flavor agents are primarily used for sensory enhancement in food, their pharmacodynamic effects are minimal as they are not designed to elicit a pharmacological response. However, certain flavors may influence digestion and metabolism indirectly by enhancing saliva production or affecting gut motility. The enjoyment of flavored products can also lead to increased food intake and satisfaction.
Pharmacokinetics
Flavour compounds are typically ingested and metabolized by the body. Their absorption rates can vary depending on their chemical structure and formulation. Once ingested, they may be rapidly metabolized in the liver and other tissues, with excretion primarily via urine. The specific pharmacokinetic profiles of flavor agents can vary significantly based on their source and chemical properties.
Pregnancy
Flavours are generally considered safe for use during pregnancy, but specific assessments should be made based on the type of flavouring agent.
Breast-feeding
Most flavouring agents are deemed safe during breastfeeding, although it's advisable to consult healthcare professionals regarding specific ingredients.
Storage
Store in a cool, dry place away from direct sunlight and heat sources. Ensure that the container is tightly sealed to prevent contamination.
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: honey
Honey is a natural sweet substance produced by bees from the nectar of flowers. It has been used for its nutritional and medicinal properties for centuries. Honey is rich in carbohydrates, primarily fructose and glucose, and contains a variety of vitamins, minerals, and antioxidants. It has been traditionally used for its soothing effects, particularly in treating coughs and wounds.
Indications
- Cough relief
- Sore throat
- Wound healing
- Skin irritation
- Digestive issues
Dosage
Children: For children over 1 year of age, a common dosage is 1 to 2 teaspoons of honey for cough relief. Honey should not be given to children under 1 year due to the risk of botulism.
Adults: For cough relief, a common recommendation is to take 1 to 2 tablespoons of honey, as needed. Honey can be taken directly or mixed with warm water or herbal teas.
Mechanism of action
Honey exhibits various mechanisms of action, including its antibacterial and anti-inflammatory properties. The high sugar concentration creates a hypertonic environment that inhibits the growth of bacteria. Additionally, honey contains hydrogen peroxide, methylglyoxal, and flavonoids that contribute to its antimicrobial effects. The antioxidant properties of honey help in mitigating oxidative stress and promoting wound healing.
Pharmacodynamics
The pharmacodynamics of honey involve its ability to promote healing and provide symptomatic relief from coughs and sore throats. Honey's viscosity and stickiness can coat the throat, providing a soothing effect and reducing irritation. Its natural sugars also serve as an energy source, while its antioxidants may help in reducing inflammation and promoting overall health.
Pharmacokinetics
Honey is primarily absorbed in the gastrointestinal tract. The sugars in honey are rapidly metabolized, providing quick energy. The absorption rate can vary based on the composition of the honey and individual digestive factors. Honey's components, including vitamins and minerals, may also have varying rates of absorption depending on the specific nutrient and the individual's metabolism.
Adverse effects
- Allergic reactions in sensitive individuals
- Botulism in infants under 1 year
Precautions
- Should not be given to infants under 1 year due to the risk of botulism
- Use with caution in individuals with known allergies to bee products
Pregnancy
Generally considered safe for use in pregnancy, but should be consumed in moderation.
Breast-feeding
Considered safe for breastfeeding mothers and their infants over 1 year of age.
Storage
Store in a cool, dry place away from direct sunlight. Keep tightly sealed.
Formulations
- Raw honey
- Pasteurized honey
- Honey in various food products
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: leaf
BNF-referencedCocaine is a local anesthetic that produces anesthesia by inhibiting the excitation of nerve endings or by blocking conduction in peripheral nerves. It is unique among local anesthetics due to its vasoconstrictive properties, which enhance its efficacy in clinical settings. Cocaine's mechanism involves reversible binding to sodium channels, preventing sodium influx, necessary for nerve depolarization and impulse propagation. Additionally, it affects the reuptake of neurotransmitters such as dopamine, serotonin, and norepinephrine, contributing to its anesthetic and addictive properties.
Indications
- Topical anesthesia of oral mucosa
- Topical anesthesia of laryngeal mucosa
- Topical anesthesia of nasal mucosa
Dosage
Children: Refer to BNF for Children for specific paediatric dosing recommendations, as they are determined by age and weight.
Adults: Refer to BNF for specific adult dosing guidelines as it varies based on the clinical situation.
Mechanism of action
Cocaine produces anesthesia by inhibiting excitation of nerve endings or blocking conduction in peripheral nerves through reversible binding to sodium channels. It prevents sodium influx, essential for depolarization and impulse propagation. Cocaine also has vasoconstrictive properties due to its blockade of norepinephrine reuptake in the autonomic nervous system, and it inhibits the reuptake of dopamine, serotonin, and norepinephrine into presynaptic neurons, which is primarily responsible for its addictive potential.
Pharmacodynamics
Cocaine acts as a local anesthetic, indicated for the introduction of local anesthesia in accessible mucous membranes of the oral, laryngeal, and nasal cavities. Its ability to block sodium channels and inhibit neurotransmitter reuptake enhances its anesthetic effects while also inducing vasoconstriction, which may reduce bleeding during surgical procedures.
Pharmacokinetics
Cocaine is absorbed rapidly when applied topically to mucous membranes. It undergoes extensive metabolism in the liver, primarily through hydrolysis by plasma cholinesterases. The drug's half-life is variable, influenced by factors such as route of administration and individual patient metabolism. Cocaine is primarily excreted as metabolites in urine, with a minor percentage excreted unchanged.
Contra-indications
- Hypersensitivity to cocaine or any component of the formulation
- Severe cardiovascular disorders
- History of substance abuse
- Concurrent use of monoamine oxidase inhibitors
Adverse effects
- Anxiety
- Insomnia
- Restlessness
- Cardiovascular effects (e.g., hypertension, tachycardia)
- CNS effects (e.g., seizures, headache)
- Nausea and vomiting
- Local irritation at the site of application
Interactions
- Increased risk of cardiovascular effects when used with sympathomimetics
- May enhance the effects of other central nervous system stimulants
- Use with caution in patients taking anticoagulants due to potential for increased bleeding
Precautions
- Use with caution in patients with a history of seizures
- Monitor for signs of systemic absorption, especially in infants and elderly patients
- Avoid in patients with significant liver impairment
- Caution in patients with a history of cardiovascular disease
Pregnancy
Cocaine is classified as a Category C drug. Its use during pregnancy is not recommended due to potential risks to the fetus.
Breast-feeding
Cocaine is excreted in breast milk. Mothers should not breastfeed during and after treatment until the drug is cleared from their system.
Storage
Store in a cool, dry place away from light. Keep out of reach of children.
Formulations
- Topical solution
- Ointment
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: purified
Purified refers to a substance that has been processed to remove impurities, contaminants, or unwanted substances, resulting in a more concentrated and effective form of the original compound. In pharmacology, purified compounds are often used to enhance therapeutic efficacy and reduce adverse effects. The purification process can apply to a variety of substances, including drugs, biological products, and chemical compounds.
Dosage
Children: Refer to specific drug formulations and product labels as purified substances can vary widely in their use and dosing.
Adults: Refer to specific drug formulations and product labels as purified substances can vary widely in their use and dosing.
Mechanism of action
The mechanism of action for purified compounds varies widely depending on the specific substance. Generally, purified drugs exert their effects by interacting with specific biological targets, such as receptors, enzymes, or ion channels, leading to a desired therapeutic effect. This interaction can involve binding to receptors to activate or inhibit signaling pathways, modulating enzymatic activity, or altering physiological processes.
Pharmacodynamics
Pharmacodynamics describes the effects of a drug on the body and the relationship between drug concentration and effect. For purified drugs, this can involve dose-response relationships and the time course of their action. The purified form often enhances potency and reduces variability in response among patients, which can lead to more predictable therapeutic outcomes. The overall effect is determined by the drug's affinity for its target, the efficacy of the drug-receptor interaction, and the downstream signaling pathways activated as a result of this interaction.
Pharmacokinetics
Pharmacokinetics involves the absorption, distribution, metabolism, and excretion (ADME) of a drug. For purified substances, absorption can be more efficient due to the absence of impurities that may affect solubility or stability. Distribution may also be enhanced, leading to higher bioavailability. Metabolism can be influenced by the structure of the purified compound, as it may be metabolized more readily by liver enzymes. Excretion typically occurs through the kidneys or liver, depending on the molecular characteristics of the purified drug.
Pregnancy
Consult with a healthcare professional, as the safety of purified forms of medications during pregnancy may vary depending on the specific substance.
Breast-feeding
Consult with a healthcare professional, as the safety of purified forms of medications during breastfeeding may vary depending on the specific substance.
Storage
Store in a cool, dry place, away from light and moisture, and 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: sorbate
BNF-referencedSorbate, specifically sorbic acid and its salts (such as potassium sorbate), is a compound commonly used as a preservative in food and pharmaceutical products. It is known for its antifungal and antibacterial properties, which help to extend the shelf life of various products by inhibiting the growth of mold, yeast, and some bacteria. Sorbate is often utilized in formulations that require preservation against microbial contamination, making it a widely used additive in the food industry and in the formulation of certain medications.
Indications
- Preservation of food products
- Preservation of pharmaceutical formulations
- Antimicrobial agent in cosmetic products
Dosage
Children: Refer to specific product guidelines for dosage as it varies by formulation and intended use.
Adults: Refer to specific product guidelines for dosage as it varies by formulation and intended use.
Mechanism of action
Sorbate acts primarily by inhibiting the growth of fungi and some bacteria. It interferes with the microbial cell membrane, disrupting its integrity and function, which leads to cell death. The presence of sorbate alters the pH and osmotic balance within the microbial cell, inhibiting key metabolic processes necessary for reproduction and survival.
Pharmacodynamics
Sorbate exhibits its antimicrobial effects at relatively low concentrations. It is most effective in acidic environments, typically at a pH of 4.5 or lower. The compound is more effective against yeasts and molds compared to bacteria. Its mode of action is primarily through the inhibition of fatty acid synthesis and alteration of membrane permeability in target microorganisms.
Pharmacokinetics
Sorbate is generally regarded as having low toxicity and is rapidly metabolized in the human body. It is absorbed in the gastrointestinal tract when ingested and is then distributed throughout the body. The compound undergoes conversion to various metabolites and is primarily excreted via the urine. Its half-life and specific metabolic pathways can vary depending on the form of administration and individual patient factors.
Pregnancy
There is limited data on the safety of sorbate in pregnancy. Use only if clearly needed and potential benefits justify the risks.
Breast-feeding
There is insufficient information regarding the excretion of sorbate in human milk. Caution is advised when administering to nursing mothers.
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: sorbitol
BNF-referencedSorbitol is a sugar alcohol used primarily as a laxative due to its ability to draw water into the intestines, promoting bowel movements. It is also utilized in various food and pharmaceutical applications as a sweetener and humectant. Sorbitol is naturally found in certain fruits and can be synthesized from glucose. In addition to its laxative properties, sorbitol has been studied for its role in apoptosis in cancer cells and its involvement in metabolic pathways related to glucose.
Indications
- Constipation
- Diagnostic aid in colonoscopy preparation
- Management of hyperosmolality in various conditions
Dosage
Children: For children, the dosage should be determined based on age and condition, and it is advised to refer to the BNF for Children for specific dosing guidelines.
Adults: The typical dose for adults is 30 to 150 mL of sorbitol solution (70%) taken orally, as needed, usually before bedtime.
Mechanism of action
Sorbitol exerts its laxative effect by drawing water into the large intestine, thereby stimulating bowel movements. It acts as a hygroscopic agent, pulling water from tissues into the feces, which reflexively stimulates evacuation. In metabolic pathways, sorbitol is produced from glucose via aldose reductase and is converted to fructose by sorbitol dehydrogenase, with implications in diabetic complications such as retinopathy.
Pharmacodynamics
Sorbitol's laxative effect results from its osmotic properties, which increase the water content of the stool and soften it, facilitating easier passage. Additionally, sorbitol can induce apoptosis in certain cancer cell lines, indicating potential therapeutic implications beyond its laxative use. The modulation of intracellular signaling pathways through the regulation of proteins such as Bax and Bcl-2 suggests a complex role in cellular health and disease.
Pharmacokinetics
Sorbitol is poorly absorbed in the gastrointestinal tract, which contributes to its efficacy as a laxative. It is metabolized in the liver, primarily through the polyol pathway. The absorption and distribution of sorbitol are affected by its osmotic properties, leading to increased intestinal water retention. Its elimination is primarily via renal excretion, with minimal systemic absorption, thus reducing the risk of systemic side effects.
Adverse effects
- Diarrhea
- Abdominal cramps
- Nausea
- Vomiting
- Electrolyte imbalances
Precautions
- Use with caution in patients with renal impairment
- May exacerbate gastrointestinal conditions
Pregnancy
Sorbitol is generally considered safe during pregnancy, but should be used under medical supervision.
Breast-feeding
Sorbitol is excreted in breast milk in small amounts; consult a healthcare provider before use.
Storage
Store in a cool, dry place, away from direct sunlight.
Formulations
- Oral solution
- Syrup
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: xantham
Xantham, commonly known as xanthan gum, is a polysaccharide that is produced by the fermentation of glucose or sucrose by the bacterium Xanthomonas campestris. It is widely used as a thickening agent and stabilizer in various food products, pharmaceuticals, and cosmetics. In the pharmaceutical industry, xanthan gum serves as an excipient in formulations, enhancing the viscosity and stability of liquid preparations.
Indications
- Thickening agent in food products
- Stabilizer in pharmaceutical formulations
- Emulsifier in cosmetic products
- Dietary fiber supplement
Dosage
Children: Dosage should be determined based on specific formulations and medical advice. Refer to the BNF for Children for detailed guidance.
Adults: Dosage depends on the specific formulation and purpose. Refer to product-specific guidelines or consult the BNF.
Mechanism of action
Xanthan gum works by forming a viscous gel in the presence of water. This gelling property is due to its unique molecular structure, which consists of a repeating unit of glucose, mannose, and glucuronic acid. When hydrated, xanthan gum can create a three-dimensional network that traps water, thus increasing the viscosity of the solution. This ability to enhance the texture and stability of various formulations is what makes xanthan gum a valuable ingredient in many products.
Pharmacodynamics
The pharmacodynamic properties of xanthan gum are primarily related to its thickening and stabilizing effects. It does not possess any pharmacological activity in the traditional sense, as it is not absorbed into the systemic circulation. Instead, its primary function is to modify the rheological properties of the formulations it is included in, affecting how they flow and interact with other ingredients.
Pharmacokinetics
Xanthan gum is not metabolized by the body and is considered safe for consumption. It is largely excreted unchanged in the feces. The gastrointestinal absorption of xanthan gum is minimal, which means it does not exert systemic effects. Upon ingestion, it may contribute to dietary fiber intake, promoting digestive health. Its viscosity can also influence gastrointestinal transit time, potentially providing a feeling of fullness.
Adverse effects
- Gastrointestinal discomfort
- Flatulence
- Diarrhea
- Bloating
- Allergic reactions (rare)
Precautions
- Use with caution in individuals with gastrointestinal disorders
- Monitor for allergic reactions in sensitive individuals
Pregnancy
Xanthan gum is generally considered safe for use during pregnancy as it is a food additive and not absorbed in significant amounts.
Breast-feeding
Xanthan gum is considered safe during breastfeeding as it is not absorbed systemically.
Storage
Store in a cool, dry place, away from direct sunlight.
Formulations
- Powder
- Gel
- Liquid
- Capsules
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: citric
PubChem CID 7794Molecular formula: C10H18O
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: leaf
PubChem CID 446220Molecular formula: C17H21NO4
Mechanism of action
Cocaine produces anesthesia by inhibiting excitation of nerve endings or by blocking conduction in peripheral nerves. This is achieved by reversibly binding to and inactivating sodium channels. Sodium influx through these channels is necessary for the depolarization of nerve cell membranes and subsequent propagation of impulses along the course of the nerve. Cocaine is the only local anesthetic with vasoconstrictive properties. This is a result of its blockade of norepinephrine reuptake in the autonomic nervous system. Cocaine binds differentially to the dopamine, serotonin, and norepinephrine transport proteins and directly prevents the re-uptake of dopamine, serotonin, and norepinephrine into pre-synaptic neurons. Its effect on dopamine levels is most responsible for the addictive property of cocaine. The presence and function of cannabinoid CB(2) receptors in the brain have been the subjects of much debate. /The investigators/ found that systemic, intranasal or intra-accumbens local administration of JWH133, a selective CB(2) receptor agonist, dose-dependently inhibited intravenous cocaine self-administration, cocaine-enhanced locomotion, and cocaine-enhanced accumbens extracellular dopamine in wild-type and CB(1) receptor knockout (CB(1)(-/-), also known as Cnr1(-/-)) mice, but not in CB(2)(-/-) (Cnr2(-/-)) mice. This inhibition was mimicked by GW405833, another CB(2) receptor agonist with a different chemical structure, and was blocked by AM630, a selective CB(2) receptor antagonist. Intra-accumbens administration of JWH133 alone dose-dependently decreased, whereas intra-accumbens administration of AM630 elevated, extracellular dopamine and locomotion in wild-type and CB(1)(-/-) mice, but not in CB(2)(-/-) mice. Intra-accumbens administration of AM630 also blocked the reduction in cocaine self-administration and extracellular dopamine produced by systemic administration of JWH133. These findings suggest that brain CB(2) receptors modulate cocaine's rewarding and locomotor-stimulating effects, likely by a dopamine-dependent mechanism. Cocaine hydrochloride is a local anesthetic which blocks initiation or conduction of nerve impulses following local application; when applied topically to mucous membranes, the drug also produces intense vasoconstriction. When applied topically to the mucous membranes of the nose or mouth, cocaine reduces the acuity of smell or taste, respectively. Cocaine exerts an indirect adrenergic effect by interfering with the uptake of norepinephrine by adrenergic nerve terminals, and therefore potentiates the effects of catecholamines. The indirect adrenergic effect is apparently the mechanism by which the drug produces vasoconstriction and mydriasis. Cocaine has CNS stimulating effects. The drug is also markedly pyrogenic, augmenting heat production by stimulating muscular activity and decreasing heat loss through vasoconstriction. Cocaine has multiple central and peripheral pharmacological actions. The action responsible for the rewarding property, and hence the abuse liability, of cocaine is an action in the dopaminergic synapse; in the rat the major set of critical dopaminergic synapses appears to be in the nucleus accumbens. Cocaine prolongs the activity of dopamine in the synapse by blocking the dopamine reuptake mechanism (which usually inactivates the transmitter by removing it from the proximity of its synaptic targets). This is an action shared with amphetamine; in addition to blocking the dopamine reuptake mechanism, amphetamine also augments dopaminergic function by augmenting dopamine release directly into the synapse. While amphetamine and cocaine have discriminable subjective effects, perhaps due to differences in rate of onset and metabolism or perhaps due to different side effects, cocaine shares its rewarding impact and abuse liability very closely with amphetamine. When drug access is unlimited, cocaine and amphetamine have the same ability to dominate behavior, reducing other beha
Pharmacodynamics
Cocaine is a local anesthetic indicated for the introduction of local (topical) anesthesia of accessible mucous membranes of the oral, laryngeal and nasal cavities.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: sorbate
PubChem CID 4413246Molecular formula: C6H7O2-
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: sorbitol
PubChem CID 5780Molecular formula: C6H14O6
Mechanism of action
Sorbitol exerts its laxative effect by drawing water into the large intestine, thereby stimulating bowel movements. ... Sorbitol exerts hygroscopic and/or local irritant action, drawing water from tissues into feces and reflexly stimulating evacuation. The polyol pathway consists of two enzymes aldose reductase (AR) and sorbitol dehydrogenase (SDH); the former is the first enzyme in the polyol pathway, that catalyzes the reduction of glucose to sorbitol, the latter is the second one, that converts sorbitol to fructose using by NAD(+) as a cofactor. ... SDH activity, the second step in the polyol pathway, might make a greater contribution to the etiology of diabetic retinopathy than does the first step involving AR. /This paper proposes/ a novel hypothesis that polymorphisms of SDH gene may be correlated with SDH gene expression levels in diabetic retinas, thus being a valuable genetic marker for diabetic retinopathy. It has been reported that sorbitol induces apoptosis in several cancer cell lines. ... In /this/ study, the intracellular signaling pathways of sorbitol-induced apoptosis in human K562 cells were investigated using both morphological analysis and DNA fragmentation technique. In this study, we demonstrated that sorbitol-induced apoptosis in human K562 cells is a concentration- and time-dependent manner. This sorbitol-induced apoptosis in human K562 cells was also accompanied by the up-regulation of Bax, and down-regulation of p-Bcl-2, but no effect on the levels of Bcl-X(L). Moreover, the sorbitol treatment resulted in a significant reduction of mitochondria membrane potential, increase in the release of mitochondrial cytochrome c (cyt c), and activation of caspase 3. Furthermore, treatment with caspase 3 inhibitor (z-DEVD-fmk) was capable of preventing the sorbitol-induced caspase 3 activity and cell death. These results clearly demonstrate that the induction of apoptosis by sorbitol involves multiple cellular/molecular pathways and strongly suggest that pro- and anti-apoptotic Bcl-2 family proteins, mitochondrial membrane potential, mitochondrial cyt c, and caspase 3, they all participate in sorbitol-induced apoptotic process in human K562 cells. Chronic diabetic complications, in particular, nephropathy, peripheral and autonomic neuropathy, "diabetic foot," retinopathy, and cardiovascular disease, remain the major cause of morbidity and mortality in patients with diabetes mellitus. Growing evidence indicates that both increased activity of the sorbitol pathway of glucose metabolism and enhanced oxidative stress are the leading factors in the pathogenesis of diabetic complications. The relation between the two mechanisms remains the area of controversy. One group has reported that increased sorbitol pathway activity has a protective rather than detrimental role in complication-prone tissues because the pathway detoxifies toxic lipid peroxidation products. Others put forward a so-called "unifying hypothesis" suggesting that activation of several major pathways implicated in diabetic complications (eg, sorbitol pathway) occurs due to increased production of superoxide anion radicals in mitochondria and resulting poly(ADP-ribose) polymerase activation. This review (a) presents findings supporting a key role for the sorbitol pathway in oxidative stress and oxidative stress-initiated downstream mechanisms of diabetic complications, and (b) summarizes experimental evidence against a detoxifying role of the sorbitol pathway, as well as the "unifying concept."
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.
- ABIVIT DROPS · Accelius Global
- ABYCID SUSPENSION (Each 5ml contains Magnesium Hydroxide BP/ Dried Aluminium Hydroxide BP Magnesium Trisilicate BP Activated Dimethicone (Simethicone) B 225mg/200mg/25mg) · Socomed Pharmceuticals Pvt Limited
- ACIQUARD O SUSPENSION (Each 5ml contains Dried Aluminium Hydroxide / Magnesium Hydroxide / Simethicone / Oxethazaine 250mg/250mg/50mg/10mg) · Pharmanova
- AJ WELLNESS IPACE CAPSULES · Renown Pharmaceuticals
- AJ WELLNESS IPACE CAPSULES · Renown Pharmaceuticals
- AJ WELLNESS IPACE CAPSULES · Renown Pharmaceuticals
- ADCO MAYOGEL SUSPENSION · Adcock Ingram
- BEVAC® · Biological E. Limited
- COTRIMOL 400/80 · Ipca Labotratories Ltd
- EMPIGET TABLET 10MG · Getz Pharma Private Limited
- EMPIGET TABLET 25MG · Getz Pharma Private Limited
- LOW CALCIUM ACID DIASOL ADCO · Adcock Ingram