PLUS
VITAMINS A B1 B2 B6 B12 C D CALCIUM PANTOTHENATE NICOTINAMIDE IRON COPPER MAGNESIUM MANGANESE POTTASIUM IODINE PHOSPHOROUS DICALCIUM PHOSPHATE ZINC.
What it does
Copper is a mineral that is essential for various bodily functions, playing a role in the formation of red blood cells and maintaining healthy bones and nerves.
Commonly used for: copper deficiency, anemia, bone health, nerve health
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About copper
Copper is a mineral that is essential for various bodily functions, playing a role in the formation of red blood cells and maintaining healthy bones and nerves.
What it treats
- copper deficiency
- anemia
- bone health
- nerve health
How it works
Copper helps the body create red blood cells and supports the proper functioning of nerves and bones.
Who it's for
Copper supplements may be recommended for individuals with low copper levels or certain health conditions that affect copper absorption.
Cautions
- • Excessive copper intake can be harmful.
- • People with certain health conditions should consult a healthcare provider before use.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About dicalcium
Dicalcium is a mineral supplement used to help maintain healthy bones and teeth.
What it treats
- calcium deficiency
- osteoporosis
- rickets
- bone health
How it works
Dicalcium provides essential calcium, which is important for building and maintaining strong bones.
Who it's for
It is suitable for individuals who need extra calcium, such as those with low dietary intake or certain health conditions.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About iodine
Iodine is a vital mineral that helps the body produce thyroid hormones, which are essential for metabolism and overall health.
What it treats
- prevention of iodine deficiency
- supporting thyroid health
- treatment of certain thyroid disorders
How it works
Iodine is necessary for the production of thyroid hormones, which help regulate many body functions including growth, metabolism, and energy levels.
Who it's for
Iodine is recommended for people who need to boost their iodine levels, such as those with certain dietary restrictions or thyroid issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About manganese
Manganese is a trace mineral important for many bodily functions, including bone formation and metabolism.
What it treats
- nutritional support
- bone health
How it works
Manganese helps the body use certain nutrients and is involved in the formation of connective tissue, bones, and blood-clotting factors.
Who it's for
Adults and children who may have low manganese levels due to dietary deficiencies.
Cautions
- • Excessive intake can lead to toxicity.
- • Consult a healthcare provider if you have liver problems.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About nicotinamide
Nicotinamide is a form of vitamin B3 that helps maintain healthy skin and supports various body functions.
What it treats
- acne (acne vulgaris)
- skin conditions
- dry skin
- certain types of dermatitis
How it works
Nicotinamide helps improve skin health by reducing inflammation and promoting cell repair.
Who it's for
It is suitable for people looking to improve their skin condition or reduce acne.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About pantothenate
Pantothenate is a form of vitamin B5 that helps support overall health and wellbeing.
What it treats
- fatigue
- stress
- skin conditions
- hair loss
How it works
Pantothenate helps the body convert food into energy and is important for making red blood cells.
Who it's for
This supplement is suitable for people looking to boost their energy levels or support their skin and hair health.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About phosphorous
Phosphorus is a mineral important for the health of bones and teeth, and it plays a role in energy production in the body.
What it treats
- bone health
- tooth health
- energy production
How it works
Phosphorus helps build and maintain strong bones and teeth, and is essential for energy transfer in the body's cells.
Who it's for
People who need to boost their phosphorus levels for bone and dental health.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About pottasium
Potassium is an essential mineral that helps maintain proper body function, especially for heart and muscle health.
What it treats
- low potassium levels (hypokalemia)
- heart conditions
- muscle cramps
How it works
Potassium helps regulate fluid balance, nerve signals, and muscle contractions in the body.
Who it's for
Potassium is for people who have low levels of potassium or conditions that affect potassium balance in the body.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About vitamins
Vitamins are essential nutrients that help support various bodily functions and maintain overall health.
What it treats
- vitamin deficiency
- general health support
- boosting immune system
- improving energy levels
How it works
Vitamins support different processes in the body, such as energy production, immune function, and the maintenance of healthy skin and bones.
Who it's for
Vitamins are for anyone who wants to improve their health or address specific vitamin deficiencies.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Nicotinamide
BNF-referencedNicotinamide, also known as niacinamide, is a form of vitamin B3 that is involved in numerous biological processes including energy metabolism and DNA repair. It is primarily utilized topically for the treatment of skin conditions such as papulopustular rosacea and inflammatory acne vulgaris. Nicotinamide is known for its anti-inflammatory properties and its ability to improve skin barrier function, making it beneficial for various dermatological conditions.
Indications
- Papulopustular rosacea
- Inflammatory acne vulgaris
Dosage
Children: Refer to the BNF for Children for specific dosing recommendations.
Adults: For papulopustular rosacea, apply daily for up to 4 months. The treatment course may be repeated; discontinue if no improvement is observed after 3 months. For inflammatory acne vulgaris, apply twice daily, reduced to once daily or alternate days if irritation occurs.
Mechanism of action
Nicotinamide exhibits anti-inflammatory effects by inhibiting the release of pro-inflammatory cytokines and enhancing the barrier function of the skin. It is also involved in the NAD salvage pathway, which is essential for maintaining cellular energy levels and promoting cell repair mechanisms. Additionally, nicotinamide contributes to the synthesis of coenzymes involved in metabolic processes, including the conversion of niacin into NAD+.
Pharmacodynamics
Nicotinamide is known for its ability to improve skin hydration and reduce transepidermal water loss. It has been shown to decrease the appearance of acne lesions and rosacea by modulating inflammatory responses and accelerating cell turnover. Its antioxidant properties also help to protect the skin from oxidative stress and UV damage.
Pharmacokinetics
When applied topically, nicotinamide is absorbed through the skin layers, with minimal systemic absorption. Its peak plasma concentrations are generally low, and the drug has a half-life that varies depending on the route of administration. The metabolism of nicotinamide occurs primarily in the liver, where it is converted into its active forms, including NAD+. The elimination route is via the kidneys, with metabolites excreted in urine.
Contra-indications
- Pregnancy
- Severe acne involving large areas
- Severe skin reactions
Adverse effects
- Sunburn
- Skin reactions (common or very common)
- Cheilitis
- Eyelid oedema
- Flushing
- Dry skin
- Eye irritation
- Photosensitivity reactions
- Transient skin pigmentation changes
Interactions
- Clindamycin
- Topical retinoids
- Abrasive cleaners
- Comedogenic cosmetics
Precautions
- Avoid exposure to UV light, including sunlight and sunlamps
- Wash hands immediately after use
- Avoid contact with eyes and mucous membranes
- Use moisturizers to reduce the risk of skin irritation
- Discontinue treatment if severe irritation occurs
Pregnancy
Avoid use during pregnancy due to potential risks, as limited information is available regarding toxicity.
Breast-feeding
Amount of drug in milk after topical application is probably too small to be harmful; ensure infant does not come in contact with treated areas.
Storage
Store at room temperature away from moisture and light.
Formulations
- Cream
- 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: copper
BNF-referencedCopper is an essential trace element that plays a crucial role in various biological processes, including the functioning of enzymes and the formation of connective tissue. It is an important cofactor for many oxidase enzymes and has antioxidant properties. Copper deficiency can lead to serious health conditions such as Occipital Horn Syndrome and Menke's disease, which are associated with impaired development and neurological impairment. In addition, copper is used in certain contraceptive devices, where it reduces sperm viability and motility, thereby preventing fertilization.
Indications
- Copper deficiency
- Occipital Horn Syndrome
- Menke's disease
- Contraception (via copper IUD)
Dosage
Children: Refer to the BNF for Children for specific dosing information.
Adults: Refer to the relevant clinical guidelines and BNF for specific dosing information.
Mechanism of action
Copper is absorbed from the gastrointestinal tract via high affinity copper uptake proteins and low affinity copper uptake proteins, likely being reduced to the Cu1+ form prior to transport. Inside enterocytes, it binds to the copper transport protein ATOX1, which facilitates its transport to copper transporting ATPase-1 on the Golgi membrane for incorporation into the Golgi apparatus. Once in systemic circulation, copper binds primarily to ceruloplasmin, albumin, and alpha 2-macroglobulin. It acts as a cofactor in a variety of oxidase enzymes and also influences sperm motility when released from copper IUDs, contributing to its contraceptive effect.
Pharmacodynamics
Copper is essential for the activity of many enzymes and plays a vital role in processes such as iron metabolism, neurotransmitter synthesis, and antioxidant defense. Copper ions, particularly when released from intrauterine devices, have been shown to decrease sperm viability, thereby impacting fertility.
Pharmacokinetics
Copper is absorbed from the gut and is predominantly transported in the plasma bound to proteins such as ceruloplasmin and albumin. The absorption efficiency can vary; however, a significant portion of dietary copper is usually absorbed. The body regulates copper levels through hepatic excretion and storage mechanisms, ensuring homeostasis. Excess copper can lead to toxicity, while deficiency results in various health issues.
Pregnancy
Copper is considered essential during pregnancy, but excessive intake should be avoided due to potential toxicity.
Breast-feeding
Copper is excreted in breast milk, and adequate maternal intake is important for infant development.
Storage
Store in a cool, dry place, away from moisture and heat.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: dicalcium
Dicalcium phosphate is a calcium phosphate compound often used as a dietary supplement to provide dietary calcium and phosphorus. It is commonly utilized in the prevention and treatment of calcium deficiency and is also a component in certain formulations for bone health. Dicalcium phosphate is particularly important for bone formation and maintenance, as it serves as a source of calcium and phosphorus, which are critical minerals for skeletal health.
Indications
- Calcium deficiency
- Osteoporosis prevention
- Osteomalacia
- Rickets
- Dietary supplementation in individuals with increased calcium and phosphorus requirements
Dosage
Children: Refer to established guidelines for specific dosing based on clinical indications and individual patient needs.
Adults: Refer to established guidelines for specific dosing based on clinical indications and individual patient needs.
Mechanism of action
Dicalcium phosphate dissociates in the gastrointestinal tract to release calcium and phosphate ions. Calcium plays a vital role in various physiological processes, including muscle contraction, neurotransmitter release, and blood coagulation. The phosphate ions are essential for energy metabolism and are integral to the formation of ATP (adenosine triphosphate), nucleic acids, and cellular membranes. The availability of these ions supports bone mineralization and overall skeletal integrity.
Pharmacodynamics
The pharmacodynamics of dicalcium phosphate involves its role in maintaining calcium and phosphate homeostasis in the body. Adequate levels of calcium are critical for normal bone metabolism, while phosphate is necessary for the formation of hydroxyapatite in bone tissue. The balance of these minerals is regulated by hormones such as parathyroid hormone and calcitriol, which modulate their absorption in the intestines and reabsorption in the kidneys. Supplementation with dicalcium phosphate can help alleviate deficiencies and support bone health.
Pharmacokinetics
Dicalcium phosphate is absorbed in the gastrointestinal tract, with varying absorption rates depending on the presence of other dietary components. Calcium absorption occurs primarily in the small intestine, while phosphate absorption can occur throughout the gastrointestinal tract. After absorption, calcium is distributed to bones, teeth, and soft tissues, while excess calcium is excreted through urine. The pharmacokinetics may be influenced by factors such as age, dietary habits, and the presence of gastrointestinal disorders.
Adverse effects
- Gastrointestinal disturbances (nausea, constipation)
- Hypercalcemia
- Kidney stones
- Fatigue
- Muscle weakness
Interactions
- May interact with calcium channel blockers
- Increased risk of hypercalcemia with thiazide diuretics
- May affect the absorption of certain antibiotics (e.g., tetracyclines)
Precautions
- Use with caution in patients with renal impairment
- Monitor calcium levels in patients receiving high doses
- Consider potential interactions with other medications
Pregnancy
Dicalcium is generally considered safe in pregnancy when used as directed, but high doses should be avoided.
Breast-feeding
Calcium is an essential nutrient during breastfeeding, but excessive supplementation should be approached with caution.
Storage
Store in a cool, dry place, away from direct sunlight and moisture.
Formulations
- Tablets
- Powders
- 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: iodine
BNF-referencedIodine (I2) is a trace element essential for the synthesis of thyroid hormones. It is crucial for normal thyroid function and is involved in various metabolic processes. Iodine supplementation is often used to prevent and treat iodine deficiency disorders, including goiter and hypothyroidism, particularly in areas where dietary intake is insufficient.
Indications
- Iodine deficiency
- Goiter
- Hypothyroidism
- Thyroiditis
- Fibrocystic breast disease
Dosage
Children: Refer to the BNF for Children for appropriate dosing guidelines based on age and weight.
Adults: Refer to the BNF for appropriate dosing guidelines based on condition and clinical judgment.
Mechanism of action
Molecular iodine inhibits the induction and promotion of carcinogenesis in mammary tissues and has shown beneficial effects in fibrocystic breast disease. It temporarily decreases thyroid hormone production through the acute Wolff-Chaikoff effect, followed by a return to normal hormone synthesis due to down regulation of the sodium-iodide symport. This mechanism can lead to a transient hypothyroid state in some individuals with underlying thyroid conditions.
Pharmacodynamics
Iodine is vital for the synthesis of thyroid hormones thyroxine (T4) and triiodothyronine (T3). It affects the metabolism of amine-derived hormones and plays a role in amino acid metabolism. The acute excess of iodide can lead to decreased circulating levels of T4 and T3 in susceptible individuals, while most people can escape this effect and maintain normal thyroid function.
Pharmacokinetics
Iodine is absorbed primarily in the gastrointestinal tract and is distributed throughout the body, particularly in the thyroid gland, where it is concentrated for hormone synthesis. The kidney plays a significant role in the excretion of excess iodine. The half-life of iodine in the body varies and can be influenced by dietary intake and underlying health conditions.
Adverse effects
- Hypothyroidism
- Hyperthyroidism
- Iodine allergy
- Gastrointestinal disturbances
Interactions
- Thyroid hormones
- Antithyroid drugs
- Lithium
- Diuretics
Precautions
- Use with caution in patients with thyroid dysfunction
- Monitor thyroid function periodically during treatment
- Pregnant or breastfeeding women should consult a healthcare provider before use
Pregnancy
Iodine is essential for fetal thyroid hormone synthesis, but excessive iodine intake should be avoided.
Breast-feeding
Iodine is excreted in breast milk; consult a healthcare provider regarding supplementation.
Storage
Store in a cool, dry place away from light.
Formulations
- Iodine solution
- Iodine tincture
- Potassium iodide 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: manganese
BNF-referencedManganese is a trace mineral that is essential for human health, playing a critical role in various physiological processes. It is involved in the formation of connective tissue, bones, blood clotting factors, and sex hormones. Additionally, manganese is a cofactor for several important enzymes, including those involved in metabolism and antioxidant defense. It is found in foods such as nuts, seeds, whole grains, and leafy vegetables.
Indications
- Manganese deficiency
- Bone health and development
- Antioxidant support
- Enzyme cofactor in metabolic processes
Dosage
Children: Refer to the BNF for Children for appropriate dosing recommendations.
Adults: Refer to specific clinical guidelines or the BNF for appropriate dosing recommendations.
Mechanism of action
Manganese serves as a cofactor for several enzymes, including manganese superoxide dismutase (MnSOD), which protects cells from oxidative stress by catalyzing the dismutation of superoxide radicals into oxygen and hydrogen peroxide. It also participates in the activation of enzymes involved in carbohydrate, fat, and protein metabolism.
Pharmacodynamics
Manganese plays a role in various biochemical pathways, particularly in the metabolism of amino acids, cholesterol, glucose, and carbohydrates. It is crucial for bone formation and the maintenance of cartilage. Manganese also aids in the synthesis of glycosyltransferases, which are important for the formation of glycoproteins and proteoglycans.
Pharmacokinetics
Manganese is absorbed primarily in the small intestine, with absorption efficiency influenced by dietary factors and the presence of competing minerals. It is transported in the bloodstream bound to proteins such as alpha-2-macroglobulin and transferrin. Manganese is stored in the liver, pancreas, and bones, and is excreted primarily through bile and to a lesser extent in urine. Its half-life in the human body is not well defined due to its trace nature and variable absorption.
Pregnancy
Manganese is classified as a dietary mineral that is essential for human health, but excessive intake should be avoided during pregnancy as it may affect fetal development.
Breast-feeding
Manganese is present in breast milk, and normal dietary intake is considered safe during breastfeeding. However, excessive supplementation should be avoided.
Storage
Store in a cool, dry place, away from direct light 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: pantothenate
BNF-referencedPantothenate, also known as vitamin B5, is a water-soluble vitamin that is essential for human metabolism. It is a component of coenzyme A, which plays a critical role in the synthesis and degradation of fatty acids, the metabolism of carbohydrates, and the synthesis of neurotransmitters. Pantothenate is involved in the synthesis of steroid hormones and hemoglobin and is required for the production of energy through the Krebs cycle.
Indications
- Pantothenate deficiency
- Support in energy metabolism
- Adjuvant therapy in chronic conditions requiring enhanced energy production
Dosage
Children: Refer to the BNF for Children for paediatric dosing recommendations.
Adults: Refer to the BNF for specific dosing information, generally 5-10 mg daily for adults.
Mechanism of action
Pantothenate functions primarily as a precursor to coenzyme A (CoA), which is vital for various biochemical reactions in the body. CoA is involved in the metabolism of fatty acids, the synthesis of cholesterol and steroid hormones, and the acetylation of various substrates, which is crucial for energy production and metabolic processes.
Pharmacodynamics
Pantothenate plays a significant role in energy metabolism, cellular respiration, and the biosynthesis of fatty acids. It facilitates the transfer of acyl groups, which is critical for the metabolism of carbohydrates and fats, thereby influencing the overall energy production in cells. Adequate levels of pantothenate are necessary for maintaining metabolic homeostasis and supporting growth and development.
Pharmacokinetics
Pantothenate is well absorbed from the gastrointestinal tract, with a bioavailability of approximately 70%. Once absorbed, it is widely distributed throughout the body, particularly in the liver, adrenal glands, and kidneys. The vitamin is metabolized primarily in the liver, where it is converted to coenzyme A. Excess pantothenate is excreted in the urine as pantothenic acid and its metabolites. The half-life of pantothenate in the body is not well-defined but is generally considered to be relatively short due to its water-soluble nature.
Pregnancy
Pantothenic acid (Vitamin B5) is generally regarded as safe during pregnancy. It is important to maintain adequate levels for fetal development.
Breast-feeding
Pantothenic acid is excreted in breast milk in small amounts. Adequate intake is important for breastfeeding mothers, but supplementation is typically not necessary.
Storage
Store in a cool, dry place, away from light. Keep out of reach of children.
Formulations
- Pantothenate tablets
- Pantothenic acid capsules
- Pantothenate injections
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: phosphorous
BNF-referencedPhosphorus is an essential element that plays a critical role in various biological processes, including bone mineralization and energy metabolism. It is a key component of nucleic acids, ATP, and phospholipids, making it vital for cellular function and structural integrity. Adequate phosphorus levels are necessary for normal growth and development, especially in children.
Indications
- Hypophosphatemia
- Bone disorders (e.g., osteomalacia, rickets)
- Nutritional supplementation in deficiency states
Dosage
Children: Refer to BNF for Children for specific paediatric dosing guidance based on the condition being treated.
Adults: Refer to BNF for specific adult dosing guidance based on the condition being treated.
Mechanism of action
Phosphorus decreases the absorption of intercellular calcified cartilage matrix by osteoclasts in the metaphyseal region of growing bones, leading to increased bone density and thickness, observable as 'phosphorus bands' on radiographs. Additionally, exposure to white phosphorus damages the rough and smooth endoplasmic reticulum, impairing protein synthesis and lipid transport, particularly affecting the synthesis of very low-density lipoproteins (VLDL) and causing hepatic steatosis and fibrosis.
Pharmacodynamics
Phosphorus is involved in bone metabolism and energy transfer within cells. It contributes to the structural framework of bones and teeth, and its role in ATP formation is crucial for energy metabolism. The balance of phosphorus with calcium and vitamin D is essential for maintaining bone health and preventing disorders such as osteomalacia and rickets.
Pharmacokinetics
Phosphorus is absorbed in the gastrointestinal tract, with absorption rates affected by factors such as dietary composition and the presence of other minerals. It is distributed throughout body tissues, particularly in bones and teeth. Phosphorus is primarily excreted through the kidneys, and its serum levels are regulated by hormonal influences, including parathyroid hormone and calcitriol.
Pregnancy
Phosphorus is essential for fetal development; however, excessive intake should be avoided. Consult healthcare professionals for appropriate supplementation.
Breast-feeding
Phosphorus is secreted in breast milk; adequate maternal intake is important for infant health. Consult healthcare professionals for guidance.
Storage
Store in a cool, dry place, away from direct sunlight and moisture. Ensure it is kept 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: pottasium
Potassium is an essential mineral and electrolyte critical for various bodily functions, including the regulation of heartbeats, muscle contractions, and nerve signals. It is primarily obtained through dietary sources such as fruits, vegetables, and legumes. Potassium is vital for maintaining fluid balance, acid-base balance, and cellular function.
Indications
- Hypokalemia (low serum potassium levels)
- Hypertension (as part of dietary management)
- Heart disease (to prevent arrhythmias)
- Muscle cramps (related to low potassium levels)
Dosage
Children: Refer to guidelines for specific dosing recommendations based on age and clinical condition.
Adults: Dosage varies based on clinical condition and serum potassium levels. Refer to established guidelines for specific dosing recommendations.
Mechanism of action
Potassium ions are crucial for the generation and conduction of action potentials in neurons and muscle cells. They help to maintain the membrane potential and are involved in the repolarization phase of the action potential. Additionally, potassium plays a role in enzymatic reactions and the synthesis of proteins.
Pharmacodynamics
Potassium participates in numerous physiological processes, including muscle contraction, nerve transmission, and cardiac function. Adequate levels of potassium help to prevent arrhythmias and support overall cardiovascular health. It also influences the function of the kidneys, adrenal glands, and other organs involved in electrolyte and fluid balance.
Pharmacokinetics
Potassium is absorbed in the gastrointestinal tract, with the majority of absorption occurring in the small intestine. The distribution of potassium within the body is primarily intracellular, with most of it located within cells. The kidneys regulate potassium levels through filtration and reabsorption, with excess potassium being excreted in urine. Factors such as diet, renal function, and hormonal regulation can impact potassium homeostasis.
Contra-indications
- Hyperkalemia
- Severe renal impairment
- Untreated Addison's disease
- Acute dehydration
Adverse effects
- Hyperkalemia
- Cardiac arrhythmias
- Muscle weakness
- Nausea
- Vomiting
- Diarrhea
- Abdominal cramping
Interactions
- Angiotensin-converting enzyme (ACE) inhibitors may increase potassium levels
- Potassium-sparing diuretics can lead to hyperkalemia
- Non-steroidal anti-inflammatory drugs (NSAIDs) may reduce renal excretion of potassium
- Digoxin toxicity may occur with elevated potassium levels
Precautions
- Monitor serum potassium levels regularly
- Use with caution in patients with renal dysfunction
- Consider dietary potassium intake in patients on potassium supplements
- Be cautious in patients with cardiac disease
Pregnancy
Potassium is essential during pregnancy, but supplementation should only be done under medical supervision to avoid hyperkalemia.
Breast-feeding
Potassium is present in breast milk and is important for nursing infants, but additional supplementation should be approached with caution.
Storage
Store in a cool, dry place, away from direct sunlight. Keep out of reach of children.
Formulations
- Oral tablets
- Oral liquid
- Intravenous solution
- Effervescent 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: vitamins
Vitamins are organic compounds that are essential for normal growth and metabolism in the body. They play a critical role in various biochemical processes, including energy production, immune function, and the synthesis of hormones and neurotransmitters. Vitamins are classified into two main categories: water-soluble and fat-soluble. Water-soluble vitamins include the B-complex vitamins and vitamin C, while fat-soluble vitamins include vitamins A, D, E, and K.
Indications
- Vitamin deficiency
- Nutritional supplementation
- Prevention of certain diseases
- Supporting metabolic functions
Dosage
Children: Refer to specific guidelines for individual vitamins or consult a healthcare professional for personalized dosing recommendations.
Adults: Refer to specific guidelines for individual vitamins or consult a healthcare professional for personalized dosing recommendations.
Mechanism of action
Vitamins function primarily as coenzymes or precursors for enzyme cofactors in various metabolic pathways. For instance, B vitamins are involved in energy metabolism by assisting in the conversion of carbohydrates, fats, and proteins into energy. Vitamin C acts as an antioxidant, protecting cells from damage, and is also crucial for collagen synthesis. Fat-soluble vitamins like A are involved in vision and immune function, while vitamin D regulates calcium and phosphate metabolism.
Pharmacodynamics
Vitamins exert their effects by participating in biochemical reactions and influencing metabolic pathways. For example, vitamin A is vital for vision and immune response, while vitamin D is important for maintaining bone health through its role in calcium absorption. The effects of vitamins can vary significantly depending on their solubility, with water-soluble vitamins typically being excreted more readily than fat-soluble ones, which can accumulate in the body.
Pharmacokinetics
The absorption of vitamins varies; water-soluble vitamins are generally absorbed in the small intestine and excreted in urine, while fat-soluble vitamins require dietary fats for absorption and are stored in the liver and fatty tissues. The bioavailability of vitamins can be affected by dietary composition, age, and health status. Elimination half-lives also differ; for instance, vitamin C has a shorter half-life compared to vitamin A, which can persist in the body for longer periods.
Adverse effects
- Nausea
- Vomiting
- Diarrhea
- Constipation
- Headache
- Fatigue
- Allergic reactions
Interactions
- Fat-soluble vitamins (A, D, E, K) can accumulate and cause toxicity when taken in excess, especially with other supplements
- Certain medications (e.g., anticoagulants) may interact with vitamin K
- Vitamin C can enhance the absorption of iron supplements
Precautions
- Use caution in patients with kidney disease when taking vitamin D
- Monitor for signs of toxicity with high-dose vitamin supplementation
- Consider dietary sources of vitamins before recommending supplements
Pregnancy
Vitamins are generally considered safe during pregnancy when taken at recommended dosages. However, excessive intake, particularly of fat-soluble vitamins, should be avoided.
Breast-feeding
Most vitamins are safe during breastfeeding at recommended doses, but excessive amounts can affect breast milk composition.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Tablets
- Capsules
- Soft gels
- Powders
- Liquid solutions
- 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.
Molecular reference: Nicotinamide
PubChem CID 936Molecular formula: C6H6N2O
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: copper
PubChem CID 23978Molecular formula: Cu
Mechanism of action
Copper is absorbed from the gut via high affinity copper uptake protein and likely through low affinity copper uptake protein and natural resistance-associated macrophage protein-2. It is believed that copper is reduced to the Cu1+ form prior to transport. Once inside the enterocyte, it is bound to copper transport protein ATOX1 which shuttles the ion to copper transporting ATPase-1 on the golgi membrane which take up copper into the golgi apparatus. Once copper has been secreted by enterocytes into the systemic circulation it remain largely bound by ceruloplasmin (65-90%), albumin (18%), and alpha 2-macroglobulin (12%). Copper is an essential element in the body and is incorporated into many oxidase enzymes as a cofactor. It is also a component of zinc/copper super oxide dismutase, giving it an anti-oxidant role. Copper defiency occurs in Occipital Horn Syndrome and Menke's disease both of which are associated with impaired development of connective tissue due to the lack of copper to act as a cofactor in protein-lysine-6-oxidase. Menke's disease is also associated with progressive neurological impairment leading to death in infancy. The precise mechanisms of the effects of copper deficiency are vague due to the wide range of enzymes which use the ion as a cofactor. Copper appears to reduce the viabilty and motility of spermatozoa. This reduces the likelihood of fertilization with a copper IUD, producing copper's contraceptive effect. The exact mechanism of copper's effect on sperm are unknown. The reason for the less severe reaction when the foreign body is at a distance from the retina has been proposed to be ... that near the retina & its blood vessels there is greater oxygen tension than at a distance, which causes metallic copper to oxidize to toxic copper compounds more rapidly close to or in contact with the retina than at a distance. Furthermore, the abscess formation that is characteristic of copper undergoing oxidation close to the retina & choroiod can be attributed to attraction of polymorphonuclear leukocytes from these nearby vascular tissues, which become heavily infiltrated. Liquefaction & disorganization of the vitreous body has been explained on the basis of copper catalysis of oxidation of ascorbic acid, leading to depolymerization of the hyaluronic acid of the vitreous humor. Changes in protein & hexosamine content have also been related to decrease in viscosity of the vitreous humor. Increased content of amino acids in the vitreous humor has been consistent with proteolysis of the vitreous body, but decreased concentration in the aqueous humor has suggested suppression of secretion of amino acids by the ciliary body under the influence of copper.
Pharmacodynamics
Copper is incorporated into many enzymes throughout the body as an essential part of their function. Copper ions are known to reduce fertility when released from copper-containing IUDs.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: iodine
PubChem CID 807Molecular formula: I2
Mechanism of action
Molecular iodine is known to inhibit the induction and promotion of N-methyl-n-nitrosourea-induced mammary carcinogenesis, to regress 7,12-dimethylbenz(a)anthracene-induced breast tumors in rats.It has also been shown to have beneficial effects in fibrocystic human breast disease. An acute iodide excess (above the preexisting dietary intake) transiently decreases the production of thyroid hormones in the thyroid gland; this is referred to as the acute Wolff-Chaikoff effect. In normal people, this is followed by a return to normal levels of hormone synthesis, referred to as escape from the acute Wolff-Chaikoff effect, without a significant change in circulating hormone levels. Escape is thought to be the result of down regulation of the sodium-iodide symport (NIS), the iodide transporter in the thyroid gland, resulting in a decrease in the intrathyroidal iodine and the resumption of normal hormone synthesis. An acute or chronic excess of iodide can also decrease circulating T4 and T3 levels and induce a hypothyroid state in some people who have underlying thyroid disorders. These effects are the result of a failure to escape from the acute Wolff-Chaikoff effect. Most people who experience iodine-induced hypothyroidism recover when the excess iodine intake is discontinued.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: manganese
PubChem CID 23930Molecular formula: Mn
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: pantothenate
PubChem CID 5191579Molecular formula: C9H16NO5-
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: phosphorous
PubChem CID 5462309Molecular formula: P
Mechanism of action
Phosphorus apparently decreases the absorption of intercellular calcified cartilage matrix by osteoclasts, in the metaphyseal region of growing bones. Administration of phosphorus to growing animals or children produces "phosphorus bands" of increased bone density and thickness that are visible grossly or from radiograms. The "phosphorus bands" are observed in the metaphyseal region of growing bones, and represent areas of decreased absorption of the calcified cartilage matrix. Exposure to white phosphorus has been shown to damage the rough endoplasmic reticulum and cause a disaggregation of polyribosomes. This damage results in impairment of protein synthesis, in particular, a decrease in the synthesis of the apolipoprotein portion of very low density lipoproteins (VLDL), which are required for the transport of triglycerides. A significant decrease in protein synthesis has been detected as early as 3 hours after oral exposure. The smooth endoplasmic reticulum is also involved in the formation of the VLDLs, and damage to the smooth endoplasmic reticulum also impairs the formation of VLDLs. The net result of these ultrastructural changes is an accumulation of triglycerides in the liver. This results in steatosis and fibrosis, which is one of the mechanisms involved in the hepatotoxicity of white phosphorus. The mechanism behind the damage to the endoplasmic reticulum is not known; also, it is not known whether white phosphorus itself or a metabolite of white phosphorus is the damaging agent. In addition to these damages, white phosphorus or a metabolite causes damage to the mitochondria and nuclei in the livers of animals orally exposed to white phosphorus. The damage to the mitochondria may impair the cell's ability to produce ATP, thus resulting in necrosis of the cell. Fatty infiltration and/or cellular damage has also been observed in the kidney, brain, and heart. It is possible that white phosphorus (or a metabolite) also impairs the ability of cells in these organs to produce ATP. The mitochondrial damage may also inhibit fatty acid oxidation (also contributing to the decreased availability of ATP) which could result in an accumulation of fat in the organs.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
- ABIVIT DROPS · Accelius Global
- ABYCO CAPSULES ORAL (Each film-coated tablet contains Cyproheptadine Hydrochloride Eq/Cyproheptadine HCl Anhydrous/Thiamine Hydrochloride (Vitamin B1)/Riboflavin (Vitamin B2)/Pyridoxine Hydrochloride (Vitamin B6)/Cyanocobalamin (Vitamin B12) /Calcium Pantothenate 4mg/2mg/2.2mg/1.5mg/1mcg/5mg) · Socomed Pharma
- ABYTONE FORTE CAPSULES (Each hard gelatin capsule contains Cyproheptadine HCL (Anhydrous) BP/Vitamin A (as palmitate) BP/Vitamin D3 BP/Thiamine Hydrochloride BP/Riboflavin BP/Cyanocobalamin BP/Niacinamide BP/Calcium Pantothenate BP/Calcium Lactate BP 4mg/2500IU/200IU/2mg/1mcg/25mg/5mg/100mg/) · Socomed Pharma
- ABYVITA CAPSULES (Each capsule contains Cyproheptadine hydrochloride/Thiamine hydrochloride/ Riboflavin/ Pyridoxine hydrochloride/ Cyanocobalamin/ Calcium pantothenate – 4mg/ 2mg/ 2.2mg/ 1.5mg/ 1mcg/ 5mg Cyproheptadine Hydrochloride/Thiamine Hydrochloride (Vitamin B1)/Riboflavin (Vitamin B2)/Pyridoxine Hydrochloride (Vitamin B6)/Cynocobalamin (Vitamin B12)/Calcium Pantothenate 4mg/ 2mg/ 2.2mg/ 1.5mg/ 1mcg/ 5mg) · Socomed Pharmceuticals Pvt Limited
- ACTIKID MAGIC BEANS JELLY BEANS · Amapharm
- ACYPRON PLUS TABLETS · Baader Schulz Laboratories