Registered Tanzania · TMDA

PRASUPAN 10

Gylceryl Behenate (Compritol 888 ATO 1.35 mg/6 mL,Hypromellose (Methocel E3 Premium LV) 3.60 mg/6 mL,Low substituted Hydroxypropyl cellulose (LH-11) 3.60 mg/6 mL,Mannitol (pearlitol 25C) 68.50 mg/6 mL,Microcrystalline Cellulose ( Avicel PH 112 ) 66.76 mg/6 mL,Microcrystalline Cellulose (Avicel PH 112 19.21 mg/6 mL,Opadry II 32K570003 (Beige) 5.40 mg/6 mL,Prasugrel hydrochloride 10 mg/6 mL,Purified Water nil NA,Stearic Acid (50) (Kolliwax S Fine) 2.50 mg/6 mL,Stearic Acid (50) (Kolliwax S Fine) 3.50 mg/6 mL

TAN 24 HM 0162 Film Coated Tablet 10 blood and blood forming organs INN generic

What it does

Behencate is a medication used to treat various skin conditions by helping to improve the skin's barrier function.

Commonly used for: dry skin, eczema, psoriasis

Read more in plain English ↓

Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.

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Sourcing - Kenya only

Registration & product details

Registration no.
TAN 24 HM 0162
Registration date
2024-06-27
Expiry date
2029-06-26
Status
Registered/Compliant
Active ingredient
Gylceryl Behenate (Compritol 888 ATO 1.35 mg/6 mL,Hypromellose (Methocel E3 Premium LV) 3.60 mg/6 mL,Low substituted Hydroxypropyl cellulose (LH-11) 3.60 mg/6 mL,Mannitol (pearlitol 25C) 68.50 mg/6 mL,Microcrystalline Cellulose ( Avicel PH 112 ) 66.76 mg/6 mL,Microcrystalline Cellulose (Avicel PH 112 19.21 mg/6 mL,Opadry II 32K570003 (Beige) 5.40 mg/6 mL,Prasugrel hydrochloride 10 mg/6 mL,Purified Water nil NA,Stearic Acid (50) (Kolliwax S Fine) 2.50 mg/6 mL,Stearic Acid (50) (Kolliwax S Fine) 3.50 mg/6 mL
Dosage form
Film Coated Tablet
Strength
10
Pack size
-
Therapeutic class
-
ATC class (WHO)
B02BC - Local hemostatics
RxNorm RxCUI
2221
Manufacturer / MAH
Panacea Biotec
Country of origin
INDIA
Manufacturer location
Ambala-Chandigarh Highway, Panacea Biotec, Lalru, Chaundheri, Punjab 140501, India

Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:38:14 · updated 2026-09-14 03:00:44

Disclaimer: This information is sourced from Tanzania Medicines and Medical Devices Authority (Tanzania). Always consult a qualified healthcare professional before using any medication.

About behenate

Behencate is a medication used to treat various skin conditions by helping to improve the skin's barrier function.

What it treats

  • dry skin
  • eczema
  • psoriasis

How it works

Behencate works by forming a protective layer on the skin, which helps to lock in moisture and keep the skin hydrated.

Who it's for

Behencate is suitable for people with dry or irritated skin, including those with eczema and psoriasis.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About cellulose

Cellulose is a type of fiber that helps with digestion and promotes bowel health.

What it treats

  • constipation
  • irregular bowel movements

How it works

Cellulose adds bulk to the stool, making it easier to pass through the intestines.

Who it's for

Suitable for people looking to improve their digestive health.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About gylceryl

Glycerol is a substance that helps to relieve constipation by softening stools and making them easier to pass.

What it treats

  • constipation
  • bowel movement difficulties

How it works

Glycerol draws water into the intestines, which helps to soften the stool and stimulate bowel movements.

Who it's for

Glycerol is suitable for adults and children who are experiencing constipation.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About hydroxypropyl

Hydroxypropyl is a compound often used in various formulations for its properties, though specific details about its uses are not provided.

How it works

Hydroxypropyl serves as an ingredient that can help improve the consistency and stability of products, but its specific mechanism is not detailed.

Who it's for

Hydroxypropyl may be included in products for various populations, depending on its application in formulations.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About low

Low is a medication used to manage various health conditions. Please consult a healthcare provider for specific details.

How it works

Information about how Low works is not provided.

Who it's for

Low is prescribed for individuals with specific health conditions as determined by a healthcare provider.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About mannitol

Mannitol is a type of sugar alcohol used mainly to help reduce swelling and pressure in the body, especially in the eyes and brain.

What it treats

  • reducing pressure in the brain (intracranial hypertension)
  • treating eye swelling (ocular hypertension)
  • promoting urine production in kidney failure

How it works

Mannitol works by drawing water out of tissues and into the bloodstream, helping to decrease swelling and pressure.

Who it's for

Mannitol is typically used for patients with conditions that cause high pressure in the brain or eyes, and those with certain kidney issues.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About microcrystalline

Microcrystalline is a type of substance often used in medicines to help with various health issues. It is commonly used as a filler or binder in tablets and capsules.

What it treats

  • stomach issues
  • constipation
  • weight management

How it works

It helps to improve the texture of medicines and can assist in the absorption of other ingredients in the body.

Who it's for

Adults and children who need help with specific health conditions, as directed 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 prasugrel

Prasugrel is a medication that helps prevent blood clots by making platelets in the blood less sticky.

What it treats

  • prevention of blood clots (thrombosis)
  • heart attack (myocardial infarction)
  • stroke

How it works

It works by blocking certain signals that make blood cells called platelets stick together, which helps to keep blood flowing smoothly.

Who it's for

It is usually prescribed for people who have had a heart attack or certain types of heart surgery.

Cautions

  • • Use with caution in patients taking other medications that also prevent blood clots.

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 stearic

Stearic acid is a fatty acid used in various formulations, primarily as a thickening agent or emulsifier.

What it treats

  • used in skincare products
  • used in dietary supplements

How it works

Stearic acid helps to stabilize and thicken products, making them easier to apply and enhancing their texture.

Who it's for

It is suitable for individuals looking for thickening agents in lotions, creams, and supplements.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About substituted

Substituted is a medication that may be used for various health conditions.

How it works

The specific mechanism of action for substituted is not detailed, but it is designed to affect certain body processes to help manage health issues.

Who it's for

This medication is prescribed to individuals based on their specific health needs and conditions.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: Mannitol

BNF-referenced

Mannitol is an osmotic diuretic and a sugar alcohol that is used primarily to reduce elevated intracranial pressure and to promote diuresis in various medical conditions, including cerebral edema and acute kidney injury. It is metabolically inert in humans and is eliminated primarily through the kidneys. Mannitol works by elevating blood plasma osmolality, drawing water out of tissues and into the bloodstream, which helps to reduce fluid volume and pressure in the brain and other compartments.

Indications

  • Cerebral edema
  • Elevated intracranial pressure
  • Acute kidney injury
  • Oliguria
  • Glaucoma
  • Renal function diagnostic aid

Dosage

Adults: For cerebral edema, administer 0

Mechanism of action

Mannitol elevates blood plasma osmolality, resulting in enhanced flow of water from tissues, including the brain and cerebrospinal fluid, into interstitial fluid and plasma. This action reduces cerebral edema and intracranial pressure. As a diuretic, it increases the osmolality of glomerular filtrate, leading to increased urinary excretion of water and preventing sodium and chloride reabsorption in the renal tubules. Mannitol also facilitates the urinary excretion of toxic substances and can help in assessing renal function by measuring glomerular filtration rate (GFR).

Pharmacodynamics

Mannitol is classified as an osmotic diuretic. It is chemically similar to other sugar alcohols but has a unique ability to promote diuresis by remaining unabsorbed in the renal tubules. Its use is indicated for conditions associated with increased body fluids, such as cerebral edema and glaucoma. Mannitol may be combined with other diuretics to enhance diuretic efficacy. Inhaled formulations are used in cystic fibrosis, though they may cause bronchospasm and hemoptysis.

Pharmacokinetics

Mannitol is freely filtered by the glomeruli with less than 10% tubular reabsorption, which allows for its urinary excretion rate to serve as a measurement of GFR. It does not undergo significant metabolism and is eliminated primarily through the kidneys. The onset of action occurs within 30 to 60 minutes after intravenous administration, with effects lasting for several hours. Administration may require monitoring of renal function and fluid balance.

Contra-indications

  • Anuria
  • Severe dehydration
  • Severe renal impairment
  • Intracranial bleeding

Adverse effects

  • Asthenia
  • Gastrointestinal disturbances
  • Dry mouth
  • Confusion
  • Visual impairment
  • Hypotension
  • Electrolyte imbalances
  • Pulmonary edema
  • Hemoptysis (with inhalation use)
  • Bronchospasm (with inhalation use)

Interactions

  • Potassium-sparing diuretics may increase the risk of hyperkalemia
  • Other diuretics may have additive effects
  • Caution with nephrotoxic agents

Precautions

  • Caution in patients with diabetes mellitus
  • Caution in the elderly
  • Caution in patients with gout
  • Caution in patients with hepatic impairment
  • Monitor renal function and electrolytes regularly
  • May cause blue fluorescence of urine

Pregnancy

Manufacturer advises avoid due to potential toxicity in animal studies.

Breast-feeding

Manufacturer advises avoid due to lack of information available.

Storage

Store in a cool, dry place, away from light. Do not freeze.

Formulations

  • Solution for injection
  • Inhalation powder
  • Oral solution
BNF 85 (British National Formulary) p.269 BNF 85 (British National Formulary) p.343 BNF for Children 2019-2020 p.165 PubChem / pathway

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: Prasugrel

BNF-referenced

Prasugrel is an oral antiplatelet agent belonging to the thienopyridine class. It is primarily used in conjunction with aspirin for the prevention of atherothrombotic events in patients with acute coronary syndromes undergoing percutaneous coronary intervention. As a prodrug, prasugrel is metabolized to its active form which irreversibly inhibits the P2Y12 receptor on platelets, thereby reducing platelet activation and aggregation.

Indications

  • Prevention of atherothrombotic events in patients with acute coronary syndrome undergoing percutaneous coronary intervention

Dosage

Adults: Adults aged 18 to 74 years with a body weight of less than 60 kg should receive an initial dose of 60 mg, followed by 5 mg once daily usually for up to 12 months. For those weighing 60 kg and above, the same initial dose applies, with the continued daily dose also being 5 mg.

Mechanism of action

Prasugrel is a prodrug that inhibits ADP receptors by irreversibly binding to the P2Y12 receptor on platelets. This prevents the binding of adenosine diphosphate (ADP) to its receptor, impairing the ADP-mediated activation of the glycoprotein GPIIb/IIIa complex, which is crucial for platelet aggregation.

Pharmacodynamics

As a thienopyridine ADP receptor inhibitor, prasugrel effectively inhibits platelet aggregation by irreversibly binding to the P2Y12 receptors. This irreversible binding leads to a significant reduction in platelet activation, which is essential for preventing thrombus formation in acute coronary syndromes.

Pharmacokinetics

Prasugrel is rapidly absorbed following oral administration, with peak plasma concentrations occurring within 30 to 60 minutes. The drug undergoes bioactivation in the liver to its active metabolite, which has a longer duration of action. The elimination half-life of prasugrel is approximately 7 hours, and it is primarily excreted via urine and feces. Factors such as liver and renal impairment may affect its pharmacokinetics, necessitating caution in these populations.

Contra-indications

  • Active bleeding
  • History of hypersensitivity to prasugrel or other thienopyridines
  • Severe hepatic impairment

Adverse effects

  • Anaemia
  • Haemorrhage
  • Angioedema
  • Thrombocytopenia
  • Skin rash

Interactions

  • Aspirin (increased risk of bleeding)
  • Other antiplatelet agents (increased risk of bleeding)
  • Non-steroidal anti-inflammatory drugs (NSAIDs) (increased risk of gastrointestinal bleeding)

Precautions

  • Caution in patients with body weight less than 60 kg
  • Increased risk of bleeding in elderly patients or those with recent trauma, surgery, gastrointestinal bleeding, or active peptic ulcer disease
  • Caution in patients with moderate renal or hepatic impairment

Pregnancy

Manufacturer advises use only if potential benefit outweighs risk.

Breast-feeding

Manufacturer advises to avoid due to lack of information on excretion in breast milk.

Storage

Store at room temperature, away from moisture and heat.

Formulations

  • Prasugrel 5 mg tablets
  • Prasugrel 10 mg tablets
BNF 85 (British National Formulary) p.255 PubChem / pathway

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: behenate

BNF-referenced

Behenate, with the molecular formula C22H43O2-, is a fatty acid derivative that is used in various pharmaceutical formulations. It is primarily utilized as an excipient or a stabilizing agent in drug formulations, aiding in the solubility and bioavailability of certain active ingredients. Behenate is derived from behenic acid, a long-chain fatty acid found in various natural sources and is notable for its role in improving the delivery of medications.

Indications

  • Used as an excipient in pharmaceutical formulations
  • Improves solubility and bioavailability of active ingredients

Dosage

Children: Refer to specific product formulations for dosing guidance, as behenate is primarily used as an excipient.

Adults: Refer to specific product formulations for dosing guidance, as behenate is primarily used as an excipient.

Mechanism of action

Behenate functions mainly as a surfactant and emulsifying agent. It interacts with lipids and cellular membranes, enhancing the solubility of poorly soluble drugs and facilitating their absorption in the gastrointestinal tract. By modifying the physicochemical properties of drug formulations, behenate improves the pharmacokinetic profiles of certain medications.

Pharmacodynamics

The pharmacodynamics of behenate are primarily linked to its role as an excipient rather than an active pharmaceutical ingredient. Its interaction with cellular membranes can lead to altered absorption rates and enhanced solubility of co-administered drugs. Its effects are dependent on the concentration used within the formulation and the properties of the active ingredients it accompanies.

Pharmacokinetics

As behenate is usually employed in formulations rather than used alone, specific pharmacokinetic data is limited. However, it is known to be absorbed and metabolized similarly to other long-chain fatty acids. The absorption through the gastrointestinal tract is influenced by the presence of bile acids and the overall lipid content of the diet. Metabolism typically involves the conversion to various metabolites through beta-oxidation in the liver.

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: cellulose

Cellulose is a complex carbohydrate and a key structural component of the plant cell wall. It is an indigestible polysaccharide made up of linear chains of glucose molecules linked by β-1,4-glycosidic bonds. As a dietary fiber, cellulose contributes to digestive health by promoting bowel regularity and is commonly used as a laxative and bulking agent in various food products and pharmaceuticals.

Indications

  • Constipation
  • Dietary fiber supplementation
  • Irritable bowel syndrome
  • Diverticular disease
  • Weight management

Dosage

Children: Refer to appropriate guidelines for specific dosage; generally taken with adequate fluid intake.

Adults: Refer to appropriate guidelines for specific dosage; generally taken with adequate fluid intake.

Mechanism of action

Cellulose acts primarily as a bulk-forming laxative. It absorbs water in the intestines, which increases stool bulk and stimulates peristalsis, thus facilitating bowel movements. Additionally, cellulose is not digestible by human enzymes, leading to fermentation by gut bacteria, which may enhance gut health and alter gut microbiota composition.

Pharmacodynamics

Cellulose increases stool weight and frequency of bowel movements. It works by retaining water in the intestines, leading to softer stools and improved passage through the gastrointestinal tract. The bulking effect of cellulose can help alleviate constipation and promote overall digestive health. It may also play a role in cholesterol reduction and glycemic control through its effects on digestion and absorption of nutrients.

Pharmacokinetics

Cellulose is not absorbed into the bloodstream due to its indigestible nature. Instead, it passes through the gastrointestinal tract, where it adds bulk to the stool. Its fermentation by colonic bacteria produces short-chain fatty acids, which may have beneficial effects on colon health. The onset of action for cellulose as a laxative can vary but is generally within 24 to 72 hours after ingestion.

Adverse effects

  • Bloating
  • Flatulence
  • Diarrhea
  • Abdominal discomfort

Precautions

  • Use with caution in patients with a history of gastrointestinal disorders.
  • Monitor for potential allergic reactions in sensitive individuals.

Pregnancy

Cellulose is generally considered safe during pregnancy as it is a non-toxic, indigestible fiber.

Breast-feeding

Cellulose is also considered safe during breastfeeding; it is excreted in breast milk in negligible amounts.

Storage

Store in a cool, dry place away from direct sunlight.

Formulations

  • Powder
  • Capsules
  • Tablets
  • Granules

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: gylceryl

Glycerol, also known as glycerin or glycerin, is a colorless, odorless, viscous liquid that is widely used in pharmaceutical formulations. It is a simple polyol compound, serving as a humectant, solvent, and sweetener in various medicinal products. Glycerol is also recognized for its role in osmotic therapy, particularly for conditions involving fluid regulation.

Indications

  • Management of elevated intraocular pressure in glaucoma
  • Treatment of constipation due to its laxative effect
  • Use as a humectant in dermatological preparations
  • Osmotic therapy in certain cases of renal failure or fluid overload

Dosage

Children: Refer to specific guidelines or product information for dosing.

Adults: Refer to specific guidelines or product information for dosing.

Mechanism of action

Glycerol acts primarily as an osmotic agent. It interacts with cell membranes and encourages the movement of water across them, which can lead to a decrease in cellular swelling. This property is utilized in the treatment of conditions like glaucoma, where it decreases intraocular pressure by pulling fluid from the vitreous humor. Additionally, glycerol may enhance the absorption of certain medications through the gastrointestinal tract.

Pharmacodynamics

Glycerol's osmotic effects result in increased plasma osmolality, which can draw water out from tissues, reducing edema and fluid overload. It also has mild diuretic effects, promoting the excretion of urine. Glycerol's sweet taste makes it useful in formulations intended for oral consumption, enhancing palatability for patients, particularly children.

Pharmacokinetics

Glycerol is readily absorbed from the gastrointestinal tract and distributed throughout the body. It is metabolized primarily in the liver, where it can be converted into glucose or fatty acids. The elimination half-life of glycerol varies based on the route of administration and individual patient factors but is generally short due to its rapid metabolism. It is mostly excreted in the urine as metabolites.

Adverse effects

  • Headache
  • Nausea
  • Dizziness
  • Hypotension
  • Flushing
  • Tachycardia

Interactions

  • Other antihypertensives may potentiate hypotensive effects
  • Alcohol may enhance the hypotensive effects

Precautions

  • Use with caution in patients with a history of hypotension
  • Monitor blood pressure regularly during treatment
  • Caution in patients with heart failure or other cardiovascular diseases

Pregnancy

Use only if the benefits outweigh the risks, as safety in pregnancy has not been well established.

Breast-feeding

Use with caution; consult a healthcare provider.

Storage

Store in a cool, dry place away from light.

Formulations

  • Sublingual tablets
  • Oral tablets
  • Injections
  • Topical preparations

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: hydroxypropyl

BNF-referenced

Hydroxypropyl is a chemical compound derived from propylene glycol, commonly used as an excipient in pharmaceuticals and cosmetics. It serves various roles, including acting as a solvent, stabilizer, and humectant. Hydroxypropyl is notable for its ability to enhance the solubility and stability of active pharmaceutical ingredients, making it a valuable component in formulation science.

Indications

  • Used as an excipient in pharmaceutical formulations
  • Improves solubility and stability of active ingredients
  • Facilitates drug absorption

Dosage

Children: Refer to specific product guidelines as hydroxypropyl is typically used as an excipient and not dosed independently.

Adults: Refer to specific product guidelines as hydroxypropyl is typically used as an excipient and not dosed independently.

Mechanism of action

Hydroxypropyl functions primarily as a solubilizing agent, which aids in the dissolution of poorly soluble drugs. It interacts with water and other solvents to improve the dispersion of pharmaceutical compounds, thereby enhancing their bioavailability. Hydroxypropyl may also facilitate the permeability of drug molecules through biological membranes, contributing to their overall efficacy.

Pharmacodynamics

The pharmacodynamics of hydroxypropyl relate to its role in improving the physicochemical properties of drug formulations. By increasing solubility and stability, hydroxypropyl can enhance the absorption of drugs administered via various routes, including oral and topical. Its non-toxic nature allows for safe incorporation into formulations, making it suitable for a wide range of applications.

Pharmacokinetics

The pharmacokinetics of hydroxypropyl have not been extensively studied as it primarily acts as an excipient rather than an active pharmaceutical ingredient. When used in formulations, it is typically not absorbed into systemic circulation in significant amounts, thereby minimizing potential systemic effects. Hydroxypropyl is generally regarded as safe when used in appropriate amounts in drug formulations.

Pregnancy

Hydroxypropyl is not classified for use during pregnancy, and its safety has not been established. Caution is advised.

Breast-feeding

There is limited information on the excretion of hydroxypropyl in human milk. Caution is advised when administering to breastfeeding women.

Storage

Store in a cool, dry place, away from light. 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: microcrystalline

Microcrystalline cellulose is a refined wood pulp, commonly used as an excipient in pharmaceutical formulations. It serves as a bulking agent and stabilizer in tablets and capsules, improving the physical properties of the drug formulation. It is characterized by its ability to absorb moisture and provide a suitable texture for various dosage forms.

Indications

  • Used as an excipient in tablet formulations
  • Used as a bulking agent in capsule formulations
  • Used in food products as a thickener or stabilizer

Dosage

Children: Refer to specific product guidelines as dosage will depend on the formulation and the active ingredients.

Adults: Refer to specific product guidelines as dosage will depend on the formulation and the active ingredients.

Mechanism of action

Microcrystalline cellulose acts as a non-digestible filler that enhances the flow properties of powders during the manufacturing of tablets and capsules. It does not have a direct pharmacological action on the body but ensures that the active ingredients are effectively delivered to the patient.

Pharmacodynamics

As a non-active ingredient, microcrystalline cellulose does not exert pharmacodynamic effects typical of active pharmaceutical ingredients. Its primary role is to provide a stable and consistent matrix for the drug, facilitating the release of the active compound once ingested.

Pharmacokinetics

Microcrystalline cellulose is not absorbed in the gastrointestinal tract; it passes through the digestive system largely unchanged. It adds bulk to the stool, which may aid in promoting regular bowel movements. The substance is excreted in feces, where it contributes to dietary fiber intake.

Pregnancy

Data regarding the use of microcrystalline cellulose during pregnancy is limited. It is advisable to consult with healthcare professionals before use.

Breast-feeding

Microcrystalline cellulose is considered safe during breastfeeding, as it is not absorbed systemically.

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: 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: stearic

Stearic acid is a saturated fatty acid that is commonly found in various animal and plant fats. It is a long-chain fatty acid with an 18-carbon chain and is often used in the production of soaps, cosmetics, and food products. In the human body, stearic acid can be metabolized to produce energy and is involved in various lipid metabolic processes.

Dosage

Children: Refer to established dietary guidelines for children, as specific dosing for stearic acid is not typically defined.

Adults: Refer to established dietary guidelines and clinical recommendations for fatty acid intake, as specific dosing for stearic acid is not typically defined.

Mechanism of action

Stearic acid is metabolized in the liver and can be converted to oleic acid through a process called desaturation. It does not significantly affect cholesterol levels compared to other saturated fatty acids, as it can be converted into monounsaturated fatty acids. Stearic acid may also modulate signaling pathways involved in inflammation and metabolism.

Pharmacodynamics

Stearic acid exhibits various physiological effects, including modulation of lipid metabolism. It has been shown to influence the composition of cell membranes and can affect the fluidity and function of membranes due to its saturated structure. Stearic acid may also play a role in the regulation of gene expression related to lipid metabolism and inflammation.

Pharmacokinetics

Stearic acid is absorbed from the gastrointestinal tract and is incorporated into chylomicrons for transport in the bloodstream. It is metabolized primarily in the liver, where it undergoes beta-oxidation to produce energy. The elimination half-life and specific metabolic pathways may vary based on dietary intake and individual metabolic differences.

Pregnancy

There are no established guidelines regarding the use of stearic acid during pregnancy. Consultation with a healthcare provider is recommended.

Breast-feeding

There is limited information available on the use of stearic acid during breastfeeding. Caution is advised.

Storage

Store in a cool, dry place away from direct sunlight. Keep container tightly closed.

Formulations

  • Capsules
  • Tablets
  • Powder
  • Topical ointments

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: substituted

Substituted drugs refer to a class of compounds that have been chemically modified to enhance their therapeutic efficacy or reduce side effects. These modifications can involve altering functional groups, changing molecular structures, or introducing new substituents to the parent compound. The therapeutic uses of substituted drugs vary widely depending on their specific structure and mechanism of action.

Dosage

Children: Refer to BNF for Children for appropriate dosing guidelines for paediatric patients.

Adults: Refer to specific guidelines or BNF for the appropriate dosing of substituted drugs as they vary widely based on the specific compound and its clinical use.

Mechanism of action

The mechanism of action for substituted drugs typically involves interaction with specific biological targets such as receptors, enzymes, or ion channels. By binding to these targets, substituted drugs can modulate various physiological processes, leading to desired therapeutic effects, such as analgesia, anti-inflammatory action, or modulation of neurotransmitter activity.

Pharmacodynamics

Pharmacodynamics of substituted drugs depends on their specific structure and target interactions. Generally, they exert effects through receptor activation or inhibition, leading to alterations in signaling pathways. This can result in enhanced or diminished cellular responses, contributing to the overall therapeutic outcome. The potency and efficacy of these drugs can vary widely based on their chemical modifications.

Pharmacokinetics

The pharmacokinetics of substituted drugs involves absorption, distribution, metabolism, and excretion (ADME). Factors such as the lipophilicity, molecular weight, and chemical stability of the substituents can affect how the drug is absorbed in the gastrointestinal tract, distributed throughout the body, metabolized by the liver, and ultimately excreted through the kidneys. Variations in these parameters will influence the drug's bioavailability, half-life, and duration of action.

Pregnancy

Consult healthcare provider before use. Safety during pregnancy has not been established.

Breast-feeding

Consult healthcare provider before use. Limited data available on safety during breastfeeding.

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.

Molecular reference: Mannitol

PubChem CID 6251

Molecular formula: C6H14O6

Mechanism of action

Mannitol is an osmotic diuretic that is metabolically inert in humans and occurs naturally, as a sugar or sugar alcohol, in fruits and vegetables. Mannitol elevates blood plasma osmolality, resulting in enhanced flow of water from tissues, including the brain and cerebrospinal fluid, into interstitial fluid and plasma. As a result, cerebral edema, elevated intracranial pressure, and cerebrospinal fluid volume and pressure may be reduced. As a diurectic mannitol induces diuresis because it is not reabsorbed in the renal tubule, thereby increasing the osmolality of the glomerular filtrate, facilitating excretion of water, and inhibiting the renal tubular reabsorption of sodium, chloride, and other solutes. Mannitol promotes the urinary excretion of toxic materials and protects against nephrotoxicity by preventing the concentration of toxic substances in the tubular fluid. As an Antiglaucoma agent mannitol levates blood plasma osmolarity, resulting in enhanced flow of water from the eye into plasma and a consequent reduction in intraocular pressure. As a renal function diagnostic aid mannitol is freely filtered by the glomeruli with less than 10% tubular reabsorption. Therefore, its urinary excretion rate may serve as a measurement of glomerular filtration rate (GFR). The exact mechanism of action of inhaled mannitol in the symptomatic maintenance treatment of cystic fibrosis remains unclear. It is hypothesized that mannitol produces an osmotic gradient across the airway epithelium that draws fluid into the extracellular space and alters the properties of the airway surface mucus layer, allowing easier mucociliary clearance. MANNITOL IS.../USED/ IN PROPHYLAXIS OF ACUTE RENAL FAILURE. IT IS USED FOR THIS PURPOSE IN CONDITIONS AS DIVERSE AS CARDIOVASCULAR OPERATIONS, SEVERE TRAUMATIC INJURY, OPERATIONS IN THE PRESENCE OF SEVERE JAUNDICE, AND MGMNT OF HEMOLYTIC TRANSFUSION REACTIONS. IN EACH OF THESE CONDITIONS, A PRECIPITOUS FALL IN THE FLOW OF URINE MAY BE ANTICIPATED EITHER AS THE RESULT OF AN ACUTELY REDUCED FILTRATION RATE OR FROM ACUTE CHANGES IN TUBULAR PERMEABILITY. THE LATTER MAY BE CONSEQUENCE OF THE PRESENCE OF NOXIOUS AGENT WITHIN THE TUBULAR FLUID IN EXCESSIVELY HIGH CONCN, IN SOME INSTANCES SUFFICIENT TO RESULT IN ACTUAL PRECIPITATION. IN THESE SITUATIONS, MANNITOL EXERTS OSMOTIC EFFECT WITHIN THE TUBULAR FLUID, INHIBITS WATER REABSORPTION, & MAINTAINS THE RATE OF URINE FLOW. ...CONCN OF TOXIC AGENT WITHIN TUBULAR FLUID DOES NOT REACH EXCESSIVELY HIGH LEVELS THAT OTHERWISE WOULD HAVE BEEN ACHIEVED BY MORE COMPLETE REABSORPTION OF WATER. ...EVEN THOUGH /GLOMERULAR/ FILTRATION RATE IS REDUCED, MANNITOL IS STILL FILTERED @ GLOMERULUS. THE TUBULAR IMPERMEABILITY TO MANNITOL IS NOT ALTERED BY ACUTE RENAL ISCHEMIA OF SHORT DURATION. HENCE, THE MANNITOL THAT IS FILTERED IS ALSO EXCRETED IN THE VOIDED URINE. UNREABSORBED SOLUTE LIMITS BACK DIFFUSION OF WATER. ...URINE VOL CAN BE MAINTAINED EVEN IN PRESENCE OF DECR GLOMERULAR FILTRATION.

Pharmacodynamics

Chemically, mannitol is an alcohol and a sugar, or a polyol; it is similar to xylitol or sorbitol. However, mannitol has a tendency to lose a hydrogen ion in aqueous solutions, which causes the solution to become acidic. For this reason, it is not uncommon to add a substance to adjust its pH, such as sodium bicarbonate. Mannitol is commonly used to increase urine production (diuretic). It is also used to treat or prevent medical conditions that are caused by an increase in body fluids/water (e.g., cerebral edema, glaucoma, kidney failure). Mannitol is frequently given along with other diuretics (e.g., furosemide, chlorothiazide) and/or IV fluid replacement. Inhaled mannitol has the possibility to cause bronchospasm and hemoptysis; the occurrence of either should lead to discontinuation of inhaled mannitol.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: Prasugrel

PubChem CID 6918456

Molecular formula: C20H20FNO3S

Mechanism of action

Prasugrel is an thienopyridine and a prodrug which inhibits ADP receptors by irreversibly acting on the P2Y12 receptor on platelets. The active metabolite of prasugrel prevents binding of adenosine diphosphate (ADP) to its platelet receptor, impairing the ADP-mediated activation of the glycoprotein GPIIb/IIIa complex. Prasugrel is proposed to have a similar mechanism of action to clopidogrel. The P2Y(12) receptor plays a crucial role in platelet aggregation and is the target of platelet aggregation inhibitors, including the thienopyridine compound prasugrel. The present study analyzed the effects of R-138727 (2-[1-[2-cyclopropyl-1-(2-fluorophenyl)-2-oxoethyl]-4-mercapto-3-piperidinylidene]acetic acid), the active metabolite of prasugrel, on recombinant wild-type and mutant human P2Y(12) receptors in order to identify the molecular site of action of R-138727. The function of wild-type and mutant P2Y(12) receptors stably expressed in Chinese hamster ovary cells was assessed by measuring the 2-methylthio-ADP-mediated inhibition of forskolin-stimulated cellular cAMP production. RESULTS: In cells expressing wild-type receptors, R-138727 potently inhibited receptor function with a half-maximal concentration below 1 uM. The mode of action was irreversible. The same effect of R-138727 was observed in cells expressing Cys17Ala/Cys270Ala constructs. In contrast, in cells expressing either a Cys97Ala construct or a Cys175Ala construct, R-138727 failed to inhibit the response to the agonist. When cells expressing wild-type receptors were pretreated with the P2 receptor antagonists ATP or suramin, no effect of R-138727 was observed. Similar experiments with N-acetylcysteine 10 uM showed no interference of N-acetylcysteine with R-138727. The experiments demonstrate a potent and irreversible action of R-138727 at the recombinant human P2Y(12) receptor. The data suggest that R-138727 interacts with cysteine 97 (upper portion of the predicted third transmembrane region) and cysteine 175 (second extracellular loop) of the receptor, which are likely to form a disulfide bridge in native receptors. Moreover, the data also suggest that this site of action of R-138727 is close to the ligand-binding site of the receptor. /R-138727/ Prasugrel is an inhibitor of platelet activation and aggregation through the irreversible binding of its active metabolite to the P2Y12 class of ADP receptors on platelets.

Pharmacodynamics

Prasugrel is a thienopyridine ADP receptor inhibitors which inhibits platelet aggregation by irreversibly binding to P2Y12 receptors.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: behenate

PubChem CID 5460660

Molecular formula: C22H43O2-

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: hydroxypropyl

PubChem CID 53627505

Molecular formula: C3H5O

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.