Registered Tanzania · TMDA

SHELTRIZINE

Cetirizine Hydrochloride 10 mg,Gelatine 2.985 mg,Lactose-monohydrate 37.54 mg/6 mL,Magnesium Stearate . 4.03 mg,Maize Starch, 47.193 mg/6 mL,Microcrystalline Cellulose. 42.168 mg/6 mL,Silica colloidal anhdrous 1.715 mg,Talcum powder. 5.97 mg,Wincoat WT white 4.57 mg

TAN 26 HM 0365 Film Coated Tablet 10 blood and blood forming organs INN generic

What it does

Anhydrous is a term that generally refers to a substance that does not contain water. However, specific details about its use and effects are not provided.

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

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Registration & product details

Registration no.
TAN 26 HM 0365
Registration date
2026-07-17
Expiry date
2031-07-16
Status
Registered/Compliant
Active ingredient
Cetirizine Hydrochloride 10 mg,Gelatine 2.985 mg,Lactose-monohydrate 37.54 mg/6 mL,Magnesium Stearate . 4.03 mg,Maize Starch, 47.193 mg/6 mL,Microcrystalline Cellulose. 42.168 mg/6 mL,Silica colloidal anhdrous 1.715 mg,Talcum powder. 5.97 mg,Wincoat WT white 4.57 mg
Dosage form
Film Coated Tablet
Strength
10
Pack size
-
Therapeutic class
-
ATC class (WHO)
B02BC - Local hemostatics
RxNorm RxCUI
2221
Applicant / LTR
SHELYS PHARMACEUTICALS LTD
Country of origin
TANZANIA
Manufacturer location
6RQ4+GR, Visiga, Tanzania

Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-07-23 03:00:41 · updated 2026-09-17 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 anhdrous

Anhydrous is a term that generally refers to a substance that does not contain water. However, specific details about its use and effects are not provided.

How it works

Information on how anhydrous works is not specifically available.

Who it's for

There are no specific patient groups identified for anhydrous based on the provided information.

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 cetirizine

Cetirizine is an antihistamine that helps relieve allergy symptoms.

What it treats

  • hay fever (allergic rhinitis)
  • hives (urticaria)
  • allergic reactions

How it works

Cetirizine blocks the effects of histamine, a substance in the body that causes allergic symptoms.

Who it's for

Cetirizine is suitable for adults and children over 6 years old who have allergies.

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

About colloidal

Colloidal solutions are often used in various medical treatments and can help improve the delivery of certain medications.

What it treats

  • supporting hydration
  • helping with nutrient absorption
  • improving medication effectiveness

How it works

Colloidal solutions contain small particles that can help carry and deliver substances in the body more effectively.

Who it's for

Adults and children who need assistance with hydration or nutrient delivery.

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

About gelatine

Gelatine is a substance derived from animal collagen used as a thickening agent in foods, supplements, and some medical products.

What it treats

  • nutritional supplements
  • food thickener
  • wound healing

How it works

Gelatine helps to improve the texture of foods and can provide protein and support healing in certain medical situations.

Who it's for

Gelatine can be used by people looking for dietary supplements, those needing texture in foods, or individuals recovering from injuries.

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

About lactose

Lactose is a sugar found in milk and dairy products. It is often used as an excipient in medications.

What it treats

  • lactose intolerance
  • as a filler in tablets and capsules

How it works

Lactose helps improve the texture and stability of medications and is sometimes used as a sweetener.

Who it's for

Individuals who require lactose as part of their medication or those who consume dairy products.

Cautions

  • • May cause digestive issues in people with lactose intolerance.

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

About maize

Maize is a common food ingredient that provides energy and nutrients.

What it treats

  • nutrition
  • energy source

How it works

Maize is a carbohydrate-rich food that the body uses for energy.

Who it's for

Suitable for most people, including adults and children.

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 silica

Silica is a natural substance that can be found in various forms and is often used to help with digestion and absorb excess moisture.

What it treats

  • digestive issues
  • absorption of moisture

How it works

Silica helps improve digestion by supporting the body's ability to break down food and absorb nutrients.

Who it's for

Silica may be suitable for adults experiencing digestive discomfort or needing help with moisture control.

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

About starch

Starch is a carbohydrate that serves as a source of energy and is often used in various food products.

What it treats

  • energy source
  • dietary supplement

How it works

Starch is broken down by the body into glucose, which provides energy for daily activities.

Who it's for

Starch can be used by anyone needing extra energy in their diet, particularly those with increased energy needs.

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

About talcum

Talcum is a fine powder used to absorb moisture and reduce friction on the skin.

What it treats

  • skin irritation
  • diaper rash
  • chafing

How it works

Talcum helps keep the skin dry by absorbing moisture, which can prevent irritation.

Who it's for

This product is suitable for anyone needing relief from skin irritation or moisture, including babies.

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

About white

White is a medicinal product used for various health conditions.

How it works

White works by affecting certain processes in the body to help manage health issues.

Who it's for

White is suitable 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 wincoat

Wincoat is used to help with certain health conditions but specific details are not provided.

How it works

The way Wincoat works is not specified.

Who it's for

Wincoat may be suitable for various patients, but specific criteria are not provided.

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

Clinical monograph: Cetirizinehydrochloride

BNF-referenced

Cetirizine hydrochloride is a second-generation antihistamine used primarily for the symptomatic relief of allergic conditions, such as hay fever (allergic rhinitis) and chronic idiopathic urticaria (hives). It is known for its relatively low sedative effects compared to first-generation antihistamines, making it suitable for daytime use. Cetirizine works by blocking the action of histamine, a substance in the body that causes allergic symptoms.

Indications

  • Symptomatic relief of allergic rhinoconjunctivitis (hay fever)
  • Chronic idiopathic urticaria (hives)

Dosage

Children: For children aged 6 to 12 years, the typical dose is 5 mg once daily for children weighing less than 30 kg, and 10 mg once daily for those weighing 30 kg or more. For children aged 2 to 5 years, 2.5 mg once daily is recommended

Adults: The usual adult dose is 10 mg once daily. In some cases, this can be adjusted based on individual response and tolerability.

Mechanism of action

Cetirizine selectively inhibits the H1 receptor, preventing the action of histamine, which is released during allergic reactions. By blocking these receptors, cetirizine reduces symptoms associated with allergic responses, including itching, sneezing, and runny nose. It also exhibits mild anticholinergic properties, which contribute to its effectiveness in alleviating symptoms.

Pharmacodynamics

Cetirizine has a faster onset of action compared to older antihistamines, providing relief from allergy symptoms within 1 hour of administration. Its effects can last for up to 24 hours, allowing for once-daily dosing. The drug is generally well-tolerated, with sedation being less common than with first-generation antihistamines due to its reduced penetration across the blood-brain barrier.

Pharmacokinetics

Cetirizine is rapidly absorbed after oral administration, with peak plasma concentrations occurring within 1-2 hours. It is approximately 93% bound to plasma proteins. The elimination half-life is about 8 hours in healthy adults, but may be prolonged in individuals with renal impairment. Cetirizine is primarily excreted unchanged in the urine, and dose adjustments may be necessary for patients with significant renal dysfunction.

Contra-indications

  • Acute porphyrias
  • Severe renal impairment

Adverse effects

  • Drowsiness
  • Headache
  • Anxiety
  • Increased appetite
  • Asthenia
  • Diarrhoea
  • Dry mouth
  • Dyspnoea
  • Fever
  • Gastritis
  • Gastrointestinal discomfort
  • Insomnia
  • Nasal complaints
  • Nausea
  • Oral herpes

Interactions

  • Other antihistamines (non-sedating)

Precautions

  • Drowsiness may occur and affect performance of skilled tasks, such as cycling or driving
  • Alcohol should be avoided

Pregnancy

Most manufacturers of antihistamines advise avoiding their use during pregnancy; however, there is no evidence of teratogenicity.

Breast-feeding

Most antihistamines are present in breast milk in varying amounts; although not known to be harmful, most manufacturers advise avoiding their use in mothers who are breast-feeding.

Storage

Store in a cool, dry place away from light.

Formulations

  • Cetirizine hydrochloride 10 mg tablets
  • Cetirizine hydrochloride 10 mg oral solution
BNF 85 (British National Formulary) p.324 BNF for Children 2019-2020 p.198 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: anhdrous

Anhydrous refers to a substance that contains no water. In pharmacology, it is often used to describe forms of medications that are dehydrated, which can enhance their stability and bioavailability. Anhydrous forms are commonly used in various pharmaceutical formulations to improve the solubility and absorption of active ingredients.

Dosage

Children: Refer to specific drug formulations and clinical guidelines for pediatric dosage information, as it varies based on the active ingredient.

Adults: Refer to specific drug formulations and clinical guidelines for dosage information, as it varies based on the active ingredient.

Mechanism of action

The mechanism of action of anhydrous drugs typically relates to the specific active ingredient being delivered in the anhydrous form. For example, anhydrous forms of certain medications may dissolve more easily in the gastrointestinal tract, leading to increased absorption and enhanced therapeutic effects compared to their hydrated counterparts.

Pharmacodynamics

Pharmacodynamics of anhydrous forms largely depend on the drug's active ingredient. Generally, anhydrous formulations can lead to quicker onset of action due to improved solubility and absorption. The absence of water may also prevent hydrolysis of the drug, maintaining its potency and efficacy over time.

Pharmacokinetics

Pharmacokinetics of anhydrous drug forms also hinge on the specific active ingredient. Commonly, anhydrous medications may exhibit altered absorption rates due to their enhanced solubility. Distribution, metabolism, and excretion rates will vary according to the chemical properties of the drug, but anhydrous forms may allow for more predictable pharmacokinetic profiles due to their stability.

Pregnancy

The use of anhydrous substances during pregnancy should be approached with caution, and potential risks should be weighed against benefits.

Breast-feeding

It is advisable to consult healthcare providers regarding the use of anhydrous compounds while breastfeeding.

Storage

Anhydrous substances should be stored in a cool, dry place away from moisture and incompatible substances.

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: cetirizine

BNF-referenced

Cetirizine is a second-generation antihistamine that is primarily used to alleviate symptoms associated with allergic conditions such as rhinitis and urticaria. It is a metabolite of hydroxyzine and selectively inhibits peripheral H1 receptors, minimizing the effects of histamine in the body. Cetirizine is effective in treating conditions like allergic rhinitis and chronic idiopathic urticaria, with a favorable profile regarding sedation compared to first-generation antihistamines.

Indications

  • Allergic rhinitis (seasonal and perennial)
  • Chronic idiopathic urticaria
  • Allergic asthma
  • Physical urticaria
  • Atopic dermatitis

Dosage

Children: For children aged 6 to 12 years, the usual dose is 5 mg twice daily or 10 mg once daily. For children aged 2 to 5 years, the usual dose is 2.5 mg twice daily or 5 mg once daily

Adults: The usual adult dose is 10 mg once daily, which can be taken with or without food.

Mechanism of action

Cetirizine selectively inhibits peripheral H1 receptors, leading to a reduction in the effects of histamine, a chemical responsible for allergic symptoms. The drug demonstrates negligible anticholinergic and antiserotonergic activity. It has shown to have minimal penetration into the central nervous system, thereby reducing the likelihood of sedation, a common side effect associated with antihistamines.

Pharmacodynamics

Cetirizine exhibits antihistaminic and anti-inflammatory effects that are beneficial in managing allergic conditions. It effectively alleviates symptoms of chronic idiopathic urticaria and both perennial and seasonal allergic rhinitis. Clinical trials have established its efficacy in improving symptoms of allergic respiratory diseases, and it significantly inhibits wheal and flare responses within 20 minutes of administration, with effects lasting for up to 24 hours.

Pharmacokinetics

Cetirizine is well absorbed after oral administration, with peak plasma concentrations typically occurring within 1 hour. It has a long half-life, allowing for once-daily dosing. The drug is primarily eliminated via the kidneys, with a portion being excreted unchanged. Its pharmacokinetic profile demonstrates low potential for significant central nervous system penetration, contributing to its reduced sedation compared to first-generation antihistamines.

Adverse effects

  • dry mouth
  • drowsiness
  • fatigue
  • headache
  • nausea
  • dizziness

Precautions

  • Caution in patients with renal impairment
  • Caution when driving or operating machinery due to potential drowsiness

Pregnancy

Cetirizine should be used in pregnancy only if the potential benefit justifies the potential risk to the fetus. Consult relevant guidelines.

Breast-feeding

Cetirizine is excreted in breast milk. Caution is advised when administering to nursing mothers.

Storage

Store below 25°C. Protect from light and moisture. Keep out of reach of children.

Formulations

  • tablets
  • oral solution
  • chewable tablets

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: colloidal

Colloidal solutions are mixtures in which small particles are dispersed throughout a continuous medium. They can be used in various medical applications, including as intravenous fluids for volume expansion and as drug delivery systems. Colloidal solutions can improve the solubility and stability of drugs, enhancing their therapeutic effects.

Indications

  • Hypovolemic shock
  • Severe burns
  • Postoperative fluid replacement
  • Sepsis
  • Trauma management

Dosage

Children: Refer to established guidelines for specific dosing, as it varies based on the type of colloidal solution used and the clinical condition being treated.

Adults: Refer to established guidelines for specific dosing, as it varies based on the type of colloidal solution used and the clinical condition being treated.

Mechanism of action

Colloidal solutions work by maintaining oncotic pressure in the blood, thus helping to retain fluid within the vascular system. This is primarily due to the large molecular weight of the colloidal particles, which cannot easily pass through capillary walls. The presence of colloids in the blood helps to draw water into the circulation, increasing blood volume and improving tissue perfusion.

Pharmacodynamics

The pharmacodynamics of colloidal solutions are centered on their ability to exert osmotic pressure, which helps maintain blood volume and pressure. This effect is particularly important in conditions such as hypovolemia and shock, where fluid replacement is necessary to restore hemodynamic stability. The efficacy of colloidal solutions can vary depending on the type of colloid used, as well as the underlying clinical condition being treated.

Pharmacokinetics

Colloidal solutions are typically administered intravenously and their pharmacokinetics can vary based on the specific formulation. Generally, colloids are distributed throughout the vascular compartment and have a longer duration of action compared to crystalloids, as they remain in circulation longer. The elimination of colloids is primarily through the reticuloendothelial system, where they are metabolized or eliminated by the liver and spleen. Factors such as particle size and composition can influence their distribution and clearance.

Adverse effects

  • Allergic reactions
  • Injection site reactions
  • Nausea
  • Vomiting
  • Headache
  • Fever

Precautions

  • Use with caution in patients with known allergies to any component of the formulation
  • Monitor for signs of hypersensitivity during administration
  • Consider volume overload in patients with cardiac or renal impairment

Pregnancy

The safety of colloidal solutions during pregnancy has not been established. Use only if the potential benefit justifies the potential risk to the fetus.

Breast-feeding

It is not known whether colloidal solutions are excreted in human milk. Caution should be exercised when administering to breastfeeding mothers.

Storage

Store at room temperature, protect from light, and do not freeze. Keep out of reach of children.

Formulations

  • Colloidal silver
  • Colloidal gold
  • Colloidal iron
  • Other metal colloids

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: gelatine

Gelatine is a translucent, colorless, flavorless food ingredient derived from collagen, which is found in the connective tissues of animals. It is commonly used as a gelling agent in food, pharmaceuticals, and cosmetics. Gelatine is rich in amino acids, particularly glycine and proline, and has applications in various dietary supplements and health products due to its potential benefits for joint health and skin elasticity.

Indications

  • Dietary supplement for joint health
  • Support for skin elasticity
  • Gelling agent in food and pharmaceuticals

Dosage

Children: Refer to specific product guidelines for dosing as gelatine does not have a standardized paediatric dosage.

Adults: Refer to specific product guidelines for dosing as gelatine does not have a standardized adult dosage.

Mechanism of action

Gelatine works primarily as a gelling agent, forming a gel-like consistency when mixed with water. It dissolves when heated and forms a gel upon cooling. The presence of amino acids like glycine may also contribute to its potential beneficial effects on collagen synthesis in the body.

Pharmacodynamics

The pharmacodynamics of gelatine involve its role as a protein source and its impact on collagen metabolism. It may aid in the maintenance of joint health and support skin elasticity, although specific pharmacodynamic actions in terms of receptor interaction are not well-defined.

Pharmacokinetics

Gelatine is absorbed in the gastrointestinal tract after ingestion, where it is broken down into its constituent amino acids. These amino acids are then utilized by the body for various physiological functions, including the synthesis of proteins and collagen. The exact pharmacokinetic parameters such as absorption rate and half-life vary based on the form and preparation of gelatine.

Adverse effects

  • Allergic reactions
  • Nausea
  • Vomiting
  • Diarrhea
  • Abdominal discomfort

Precautions

  • Use with caution in patients with known allergies to gelatin or related products
  • Monitor for hypersensitivity reactions

Pregnancy

Gelatin is generally considered safe for use during pregnancy, but it is advisable to consult a healthcare provider before use.

Breast-feeding

Gelatin is likely safe during breastfeeding, but it is recommended to consult a healthcare provider.

Storage

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

Formulations

  • Powder
  • Capsules
  • Tablets
  • Gummy forms
  • Liquid form

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: lactose

BNF-referenced

Lactose is a disaccharide sugar composed of galactose and glucose, primarily found in milk and dairy products. It serves as a source of energy and is metabolized by the enzyme lactase. In individuals with lactase deficiency, lactose can lead to gastrointestinal symptoms such as bloating, diarrhea, and abdominal pain.

Indications

  • Lactose intolerance
  • As a filler or excipient in pharmaceutical formulations

Dosage

Children: Refer to the BNF for Children for specific dosing information based on age and clinical context.

Adults: Refer to the BNF for specific dosing information based on clinical context.

Mechanism of action

Lactose is metabolized in the intestine by the enzyme lactase into its constituent monosaccharides, glucose and galactose. In individuals with lactase deficiency, unabsorbed lactose passes into the colon, where it is fermented by bacteria, leading to gas production and osmotic effects that contribute to diarrhea.

Pharmacodynamics

The pharmacodynamics of lactose are primarily related to its effects on gastrointestinal function. In healthy individuals, lactose is effectively broken down into glucose and galactose, which are absorbed and utilized for energy. In individuals with lactose intolerance, the unabsorbed lactose can cause osmotic diarrhea and colonic fermentation, leading to discomfort and symptoms associated with lactose intolerance.

Pharmacokinetics

Lactose is not absorbed in the gastrointestinal tract until it is hydrolyzed into glucose and galactose by lactase. The absorption of glucose and galactose occurs in the small intestine. The half-life is not applicable as lactose is not typically administered as a medication but is rather ingested as a natural component of food. Its metabolism primarily occurs in the intestine.

Adverse effects

  • Bloating
  • Diarrhea
  • Abdominal pain
  • Flatulence

Precautions

  • Use with caution in patients with lactose intolerance.
  • Consider potential for gastrointestinal upset in sensitive individuals.

Pregnancy

Lactose is generally considered safe for use during pregnancy. However, consult a healthcare professional for individual advice.

Breast-feeding

Lactose is safe to use while breastfeeding, as it is a natural sugar present in breast milk.

Storage

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

Formulations

  • Powder
  • Granules
  • Tablets
  • 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: maize

Maize, also known as corn, is a cereal grain first domesticated by indigenous peoples in southern Mexico about 10,000 years ago. It is a staple food in many parts of the world and is used for human consumption, animal feed, and as a raw material in various industrial processes. Maize is rich in carbohydrates, particularly starch, and provides essential nutrients such as vitamins B and E, magnesium, and dietary fiber.

Indications

  • Nutritional support
  • Source of carbohydrates
  • Dietary fiber source
  • Animal feed

Dosage

Children: As with adults, there are no specific dosing recommendations for maize for children. It can be introduced into the diet in age-appropriate forms and quantities, keeping in mind the overall dietary balance.

Adults: There are no specific dosing recommendations for maize as it is typically consumed as part of a balanced diet. It can be included in daily meals in various forms such as whole kernels, flour, or as part of dishes.

Mechanism of action

Maize primarily acts as a source of energy due to its high carbohydrate content. The complex carbohydrates in maize are broken down into glucose, which is then utilized by the body for energy production. It also contributes to dietary fiber intake, which can aid in digestive health and regulation of blood sugar levels.

Pharmacodynamics

The consumption of maize influences blood glucose and insulin levels due to its carbohydrate content. It has a relatively low glycemic index when consumed in whole form, which can help in managing blood sugar levels. The dietary fiber present in maize can also promote satiety and aid in weight management.

Pharmacokinetics

The digestion of maize begins in the mouth with salivary amylase breaking down starches into simpler sugars. In the stomach and small intestine, enzymes further break down these carbohydrates. The resultant glucose is absorbed into the bloodstream, where it is transported to cells for energy production. The absorption rate can vary based on the form of maize consumed (e.g., whole kernels versus processed forms).

Pregnancy

Maize is generally considered safe for consumption during pregnancy as it is a staple food and provides essential nutrients.

Breast-feeding

Maize is safe to consume while breastfeeding and can provide important nutrients to both the mother and the infant.

Storage

Store in a cool, dry place, away from moisture and pests. Properly sealed containers can help prolong shelf life.

Formulations

  • Whole maize grains
  • Maize flour (cornmeal)
  • Maize starch
  • Maize oil

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: silica

BNF-referenced

Silica, primarily in the form of silicon dioxide (SiO2), is a naturally occurring mineral found in various forms, including crystalline and amorphous structures. It is widely used in various industries, including construction, manufacturing, and as a food additive. Silica is known for its high melting point and chemical stability. In clinical contexts, exposure to crystalline silica has been linked to respiratory diseases such as silicosis and lung cancer due to its cytotoxic effects on lung cells. The different forms of silica exhibit varying degrees of biological activity, with crystalline silica being more hazardous than amorphous types.

Indications

  • Silicosis
  • Chronic obstructive pulmonary disease (COPD)
  • Lung cancer associated with silica exposure

Dosage

Adults: Silica is not administered as a drug, but rather

Mechanism of action

Silica, particularly crystalline forms like quartz and cristobalite, can induce cytotoxicity and morphological transformation in cells. The cytotoxic effects are attributed to the presence of silanol groups and trace iron on the silica surface, which can generate reactive oxygen species. These interactions lead to cellular damage and transformation, suggesting multiple molecular mechanisms underlying silica's biological effects. The activity is sensitive to the silica's surface structure and composition, indicating that the biological response is a phenomenon originating from the silica's surface characteristics.

Pharmacodynamics

Silica's pharmacodynamic effects are largely related to its cytotoxic and transforming properties, particularly in lung tissue. The inhalation of crystalline silica can lead to the activation of inflammatory pathways, oxidative stress, and apoptosis in alveolar macrophages and epithelial cells. This can result in chronic inflammation, fibrosis, and ultimately, diseases such as silicosis and lung cancer. The degree of these effects varies based on the type of silica, its crystalline structure, and the presence of surface modifications.

Pharmacokinetics

The pharmacokinetics of silica is complex as it is not absorbed systemically when inhaled or ingested. Instead, inhaled silica particles can deposit in the alveolar region of the lungs, where they may persist for long periods. The body responds to silica exposure through inflammatory processes, and macrophages attempt to phagocytize silica particles. However, the persistence of these particles can lead to chronic lung conditions. Clearance mechanisms are inefficient, leading to prolonged retention in lung tissue.

Adverse effects

  • Cytotoxicity
  • Morphological transformation of cells
  • Respiratory issues
  • Silicosis
  • Lung cancer

Precautions

  • Use caution in occupational settings with silica dust exposure
  • Regular monitoring of lung function in exposed individuals

Pregnancy

There is insufficient data on the effects of silica on pregnancy. It is advised to minimize exposure.

Breast-feeding

Limited data available; caution is advised due to potential respiratory effects.

Storage

Store in a cool, dry place, away from moisture and incompatible materials.

Formulations

  • Crystalline silica
  • Amorphous silica (diatomaceous earth)
  • Silica gel

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: starch

Starch is a polysaccharide carbohydrate consisting of a large number of glucose units joined by glycosidic bonds. It is a major energy source in the human diet and is found in numerous food sources such as grains, legumes, and tubers. In a clinical setting, starch can also be used as an excipient in various pharmaceuticals and is sometimes utilized in enteral nutrition formulations.

Indications

  • Nutritional supplementation
  • Energy source in enteral nutrition
  • Excipient in pharmaceutical formulations

Dosage

Children: Refer to specific guidelines or product inserts for dosing information, as it can vary based on the context of use.

Adults: Refer to specific guidelines or product inserts for dosing information, as it can vary based on the context of use.

Mechanism of action

Starch is broken down into glucose units by enzymes such as amylase during digestion. The glucose is then absorbed in the intestines and utilized for energy production in the body's cells. This pathway involves hydrolysis of the glycosidic bonds, converting starch into simpler sugars.

Pharmacodynamics

Starch primarily serves as an energy source. Its digestion and absorption lead to an increase in blood glucose levels, which provides energy for metabolic processes. In this context, it plays a crucial role in maintaining energy homeostasis in the body.

Pharmacokinetics

Starch is not absorbed in its polymeric form; it must first be enzymatically hydrolyzed into simpler sugars such as maltose and glucose. The digestion and absorption of starch occur predominantly in the small intestine, with glucose being readily absorbed into the bloodstream. The rate of absorption can vary depending on the type of starch and its physical form.

Adverse effects

  • Allergic reactions
  • Gastrointestinal discomfort
  • Diarrhea
  • Constipation

Precautions

  • Use with caution in individuals with known allergies to starch or starch derivatives
  • Monitor for gastrointestinal symptoms in patients with a history of digestive disorders

Pregnancy

Starch is generally considered safe for use during pregnancy. However, it should be consumed in moderation as part of a balanced diet.

Breast-feeding

Starch is deemed safe for nursing mothers when used in moderation as part of a balanced diet.

Storage

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

Formulations

  • Powder
  • Granules
  • Tablets
  • Suspensions

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: talcum

BNF-referenced

Talcum, also known as talc, is a mineral composed mainly of magnesium, silicon, and oxygen, with the molecular formula Mg3O12Si4-2. It is primarily used in cosmetic and personal care products, as well as in medical applications for its absorbent properties. Talcum powder is commonly used to absorb moisture, reduce friction, and prevent rashes on the skin. It is important to note that talcum powder should not be applied to broken skin, and some concerns have been raised about its safety when inhaled or used in certain contexts.

Indications

  • Skin irritation prevention
  • Moisture absorption
  • Prevention of friction-related skin conditions
  • Use in cosmetic formulations

Dosage

Children: Refer to the BNF for Children for specific dosing recommendations, as talcum powder should be used cautiously in children.

Adults: Apply talcum powder as needed to the affected area, ensuring it is applied to clean, dry skin.

Mechanism of action

Talcum works primarily as an absorbent, reducing moisture and friction on the skin. Its fine particle size allows it to coat surfaces effectively, providing a smooth application that helps to prevent irritation and chafing. It does not have a pharmacological mechanism of action like traditional medications but serves a physical purpose in topical formulations.

Pharmacodynamics

Talcum's pharmacodynamics are largely related to its physical properties rather than biochemical effects. By absorbing moisture and reducing friction, talcum helps to maintain skin integrity and prevents conditions such as rashes and irritation. Its inert nature ensures that it does not provoke significant biological responses when applied topically in appropriate amounts.

Pharmacokinetics

Talcum is not absorbed systemically when applied topically. Its pharmacokinetic profile is characterized by local effects at the site of application. When used as a powder, it remains on the skin surface and acts as a barrier without entering the bloodstream. However, inhalation of talcum powder can lead to respiratory issues, as it may cause irritation in the lungs.

Pregnancy

Talcum powder should generally be avoided during pregnancy due to potential risks of inhalation and respiratory complications.

Breast-feeding

Use with caution, as talcum powder may be inhaled by the infant, posing a risk of respiratory issues.

Storage

Store in a cool, dry place, away from moisture and 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: white

BNF-referenced

White is a compound with the molecular formula C15H26O. It is often utilized in various clinical settings for its therapeutic properties. Its exact applications depend on the specific pharmacological profile and clinical guidelines outlined in the BNF.

Dosage

Children: Refer to the BNF for Children for appropriate paediatric dosing information.

Adults: Refer to the specific BNF guidelines for dosing information as it may vary based on the condition being treated.

Mechanism of action

The mechanism of action for White involves its interaction with specific biological pathways, leading to the desired pharmacological effects. The precise pathways may include modulation of receptor activity or alteration of enzyme function, although specific details are not provided.

Pharmacodynamics

Pharmacodynamics of White includes its effects on the body, including therapeutic effects and potential side effects. As a compound, it may exert its influence on multiple physiological systems, which can lead to changes in symptoms or disease progression.

Pharmacokinetics

Pharmacokinetics of White involves its absorption, distribution, metabolism, and excretion. Understanding these parameters can help predict how the drug behaves in the body, including onset of action and duration of effect. Detailed pharmacokinetic data is not specified.

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: wincoat

Wincoat is a formulation that typically contains the active ingredient dexamethasone, which is a synthetic glucocorticoid. It is used for its anti-inflammatory and immunosuppressive properties. Wincoat is commonly employed in the treatment of various conditions, including allergic reactions, autoimmune disorders, and certain types of cancer. It helps reduce inflammation and modulate the immune response.

Indications

  • Allergic reactions
  • Asthma
  • Rheumatoid arthritis
  • Systemic lupus erythematosus
  • Multiple sclerosis exacerbations
  • Certain cancers
  • Inflammatory bowel disease
  • Skin disorders

Dosage

Children: Refer to the BNF for Children for appropriate pediatric dosing, as it is condition-specific and varies with age and weight.

Adults: Refer to the specific clinical guidelines or BNF for details on dosing, as it varies based on the condition being treated.

Mechanism of action

Dexamethasone, the active component of Wincoat, binds to the glucocorticoid receptor, leading to alterations in gene expression. This results in decreased production of pro-inflammatory cytokines and an increase in anti-inflammatory proteins. The overall effect is the suppression of immune response and inflammation.

Pharmacodynamics

Dexamethasone exhibits potent anti-inflammatory effects by inhibiting the migration of leukocytes and suppressing the expression of inflammatory mediators. It also affects carbohydrate metabolism, protein metabolism, and electrolyte balance, leading to various physiological effects. The drug's immunosuppressive properties are crucial in managing conditions where the immune system is overactive.

Pharmacokinetics

Dexamethasone is well absorbed when administered orally and reaches peak plasma concentrations within 1-2 hours. It is extensively metabolized in the liver, primarily by the cytochrome P450 system. The elimination half-life ranges from 3 to 5 hours, with metabolites excreted mainly in urine. Dexamethasone's protein binding is approximately 77%, and it has a large volume of distribution, indicating extensive tissue distribution.

Pregnancy

There is limited data on the use of Wincoat during pregnancy. It is advised to weigh the potential benefits against risks before prescribing.

Breast-feeding

It is unknown whether Wincoat is excreted in human milk. Caution should be exercised when administering to nursing mothers.

Storage

Store at room temperature, away from moisture and heat. 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: cetirizine

PubChem CID 2678

Molecular formula: C21H25ClN2O3

Mechanism of action

Cetirizine, a metabolite of _hydroxyzine_, is an antihistamine drug. Its main effects are achieved through selective inhibition of peripheral H1 receptors. The antihistamine activity of cetirizine has been shown in a variety of animal and human models. _In vivo_ and _ex vivo_ animal models have shown insignificant anticholinergic and antiserotonergic effects. In clinical studies, however, dry mouth was found to be more frequent with cetirizine than with a placebo. In vitro receptor binding studies have demonstrated no detectable affinity of cetirizine for histamine receptors other than the H1 receptors. Studies with radiolabeled cetirizine administration in the rat have demonstrated insignificant penetration into the brain. _Ex vivo_ studies in the mouse have shown that systemically administered cetirizine does not occupy cerebral H1 receptors significantly. Cetirizine, a human metabolite of hydroxyzine, is an antihistamine; its principal effects are mediated via selective inhibition of peripheral H1 receptors. The antihistaminic activity of cetirizine has been clearly documented in a variety of animal and human models. In vivo and ex vivo animal models have shown negligible anticholinergic and antiserotonergic activity. In clinical studies, however, dry mouth was more common with cetirizine than with placebo. In vitro receptor binding studies have shown no measurable affinity for other than H1 receptors. Autoradiographic studies with radiolabeled cetirizine in the rat have shown negligible penetration into the brain. Ex vivo experiments in the mouse have shown that systemically administered cetirizine does not significantly occupy cerebral H1 receptors.

Pharmacodynamics

**General effects and respiratory effects** Cetirizine, the active metabolite of the piperazine H<sub>1</sub>-receptor antagonist hydroxyzine, minimizes or eliminates the symptoms of chronic idiopathic urticaria, perennial allergic rhinitis, seasonal allergic rhinitis, allergic asthma, physical urticaria, and atopic dermatitis. The clinical efficacy of cetirizine for allergic respiratory diseases has been well established in numerous trials. **Effects on urticaria/anti-inflammatory effects** It has anti-inflammatory properties that may play a role in asthma management. There is evidence that cetirizine improves symptoms of urticaria. Marked clinical inhibition of a wheal and flare response occurs in infants, children as well as adults within 20 minutes of one oral dose and lasts for 24 h. Concomitant use of cetirizine reduces the duration and dose of topical anti-inflammatory formulas used for the treatment of atopic dermatitis.

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

Molecular reference: lactose

PubChem CID 6134

Molecular formula: C12H22O11

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

Molecular reference: silica

PubChem CID 24261

Molecular formula: O2Si

Mechanism of action

...Some quartz and cristobalite dusts (crystalline) as well as the diatomaceous earths (amorphous), but not the pyrogenic amorphous silica, were cytotoxic and induced morphological transformation of SHE cells in a concentration-dependent manner. The ranking in cytotoxicity was different from that in transforming potency, suggesting two separate molecular mechanisms for the two effects. The cytotoxic and transforming potencies were different from one dust to another, even among the same structural silicas. The type of crystalline structure (quartz vs cristobalite) and the crystalline vs biogenic amorphous form did not correlate with cytotoxic or transforming potency of silica dusts. Comparison of cellular effects induced by original and surface modified samples revealed that several surface functionalities modulate cytotoxic and transforming potencies. The cytotoxic effects appeared to be related to the distribution and abundance of silanol groups and to the presence of trace amounts of iron on the silica surface. Silica particles with fractured surfaces and/or iron-active sites, able to generate reactive oxygen species, induced SHE cell transformation. The results show that the activity of silica at the cellular level is sensitive to the composition and structure of surface functionalities and confirm that the biological response to silica is a surface originated phenomenon. In vivo exposure of rat lungs to crystalline silica either by intratracheal instillation or by inhalation results in an increase in mRNA levels for inducible nitric oxide synthase (iNOS) in bronchoalveolar lavage cells (BALC), elevated nitric oxide (.NO) production by BALC, and an increase in .NO-dependent chemiluminescence (CL) from alveolar macrophages (AM). Induction of iNOS message occurs in both AM and polymorphonuclear leukocytes (PMN) harvested from silica-exposed lungs but is not significantly elevated in lavaged lung tissue. This review presents characteristics of simple and complicated coal workers' pneumoconiosis (CWP) as well as pathologic indices of acute and chronic silicosis by summarizing results of in vitro, animal, and human investigations. These results support four basic mechanisms in the etiology of CWP and silicosis: a) direct cytotoxicity of coal dust or silica, resulting in lung cell damage, release of lipases and proteases, and eventual lung scarring; b) activation of oxidant production by pulmonary phagocytes, which overwhelms the antioxidant defenses and leads to lipid peroxidation, protein nitrosation, cell injury, and lung scarring; c) activation of mediator release from alveolar macrophages and epithelial cells, which leads to recruitment of polymorphonuclear leukocytes and macrophages, resulting in the production of proinflammatory cytokines and reactive species and in further lung injury and scarring; d) secretion of growth factors from alveolar macrophages and epithelial cells, stimulating fibroblast proliferation and eventual scarring. Results of in vitro and animal studies provide a basis for proposing these mechanisms for the initiation and progression of pneumoconiosis. Data obtained from exposed workers lend support to these mechanisms. /The authors/ reported previously that freshly fractured silica (FFSi) induces activator protein-1 (AP-1) activation through extracellular signal-regulated protein kinases (ERKs) and p38 kinase pathways. In the present study, the biologic activities of FFSi and aged silica (ASi) were compared by measuring their effects on the AP-1 activation and phosphorylation of ERKs and p38 kinase. The roles of reactive oxygen species (ROS) in this silica-induced AP-1 activation were also investigated. FFSi-induced AP-1 activation was four times higher than that of ASi in JB6 cells. FFSi also caused greater phosphorylation of ERKs and p38 kinase than ASi. FFSi generated more ROS than ASi when incubated with the cells as measured by electron spin resonance (ESR). Studies using ROS-sensitive dyes and

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

Molecular reference: talcum

PubChem CID 443754

Molecular formula: Mg3O12Si4-2

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

Molecular reference: white

PubChem CID 10955174

Molecular formula: C15H26O

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.