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(vitamin · DailyMed)
Registered Kenya · PPB

MIXAVIT SYRUP

NICOTINAMIDEVITAMIN ATHAIMINE HYDROCHLORIDE(VIT B1)RIBOFLAVIN(VIT B2)PYRIDOXINE HYDROCHLORIDE(VIT B6)ASCORBIC ACID(VIT C)VITAMIN DCYANOCOBALAMIN(VITAMIN B12)

What it does

Ascorbic acid, commonly known as vitamin C, is important for overall health and supports the immune system.

Commonly used for: boosting the immune system, preventing or treating vitamin C deficiency, supporting skin health

Read more in plain English ↓

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

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Registration & product details

Registration no.
16651
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
NICOTINAMIDEVITAMIN ATHAIMINE HYDROCHLORIDE(VIT B1)RIBOFLAVIN(VIT B2)PYRIDOXINE HYDROCHLORIDE(VIT B6)ASCORBIC ACID(VIT C)VITAMIN DCYANOCOBALAMIN(VITAMIN B12)
Strength
-
Pack size
-
Therapeutic class
-
RxNorm RxCUI
1370460
Manufacturer / MAH
Pharmamed Solution
Applicant / LTR
-
Country of origin
FOREIGN
Manufacturer location
Muchai Dr, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 21:01:35 · updated 2026-07-26 13:43:54

Drug Interactions

7
Check interactions

Severe (2)

Vitamin - increases risk of vitamin a toxicity

TretinoinispredictedtoincreasetheriskofvitaminAtoxicity whengivenwithvitaminA.Avoid.rStudy Ribavirin e

Severe Study

Vitamin - increases risk of vitamin a toxicity

Retinoids(tretinoin)arepredictedtoincreasetheriskof vitaminAtoxicitywhengivenwithvitaminA.Avoid.r Study VitaminDsubstances . . . . . alfacalcidol.calcipotri..ol calcitriol colecalciferol ergocalcifero

Severe Study

Moderate (1)

Vitamin - increases risk of toxicity

Retinoids (bexarotene) are predicted to increase the risk of toxicity when given with vitamin A. Adjust dose.

Moderate Theoretical

Unknown (4)

Vitamin - decreases effects

Carbamazepine is predicted to decrease the effects of vitamin D substances.

Unknown Study

Vitamin - increases exposure

Cobicistat is predicted to increase the exposure to vitamin D substances (paricalcitol).

Unknown Study

Vitamin - increases exposure

Idelalisib is predicted to increase the exposure to vitamin D substances (paricalcitol).

Unknown Study

Vitamin - increases exposure

Clarithromycin is predicted to increase the exposure to vitamin D substances (paricalcitol).

Unknown Study

Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact

Disclaimer: This information is sourced from Pharmacy and Poisons Board (Kenya). Always consult a qualified healthcare professional before using any medication.

About ascorbic

Ascorbic acid, commonly known as vitamin C, is important for overall health and supports the immune system.

What it treats

  • boosting the immune system
  • preventing or treating vitamin C deficiency
  • supporting skin health

How it works

Vitamin C helps the body form collagen and absorb iron, and it also acts as an antioxidant to protect cells from damage.

Who it's for

It is suitable for most people, especially those who may not get enough vitamin C from their diet.

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

About athaimine

Athaimine is a type of medicine that is used for various health conditions.

What it treats

  • Vitamin B1 deficiency
  • Beriberi
  • Wernicke's encephalopathy

How it works

Athaimine helps the body convert food into energy and is important for the proper functioning of nerves and muscles.

Who it's for

Athaimine is suitable for individuals who have low levels of Vitamin B1 or conditions that may lead to its deficiency.

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

About dcyanocobalamin

Dcyanocobalamin is a form of vitamin B12 that helps maintain healthy nerve cells and red blood cells.

What it treats

  • vitamin B12 deficiency
  • pernicious anemia
  • certain types of anemia

How it works

It helps the body produce red blood cells and keeps the nervous system functioning properly.

Who it's for

It is for people who have low levels of vitamin B12, which may be due to diet, certain health conditions, or absorption issues.

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

About nicotinamidevitamin

Nicotinamide is a form of vitamin B3 that helps your body function properly.

What it treats

  • skin conditions (like acne)
  • reducing the appearance of fine lines and wrinkles
  • supporting overall skin health

How it works

Nicotinamide helps improve skin barrier function, keeps skin hydrated, and may reduce inflammation.

Who it's for

Suitable for adults and children who need to improve their skin health or treat specific skin issues.

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

About pyridoxine

Pyridoxine, also known as vitamin B6, is important for many bodily functions including the metabolism of proteins and the creation of neurotransmitters.

What it treats

  • pyridoxine deficiency
  • nerve pain (neuropathy)
  • certain types of anemia

How it works

Pyridoxine helps the body use proteins and carbohydrates effectively and is essential for the production of chemicals that transmit signals in the brain.

Who it's for

Pyridoxine is for individuals who need to increase their vitamin B6 levels due to dietary deficiencies 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 riboflavin

Riboflavin, also known as Vitamin B2, is essential for energy production and helps maintain healthy skin, eyes, and nerve functions.

What it treats

  • Vitamin B2 deficiency
  • Mouth sores
  • Migraines

How it works

Riboflavin helps the body convert food into energy and supports various cellular functions.

Who it's for

Riboflavin is suitable for individuals who may not get enough Vitamin B2 from their diet or have specific health conditions.

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

About vitamin

Vitamins are essential nutrients that support various bodily functions and overall health.

What it treats

  • nutritional deficiency
  • general health maintenance

How it works

Vitamins support normal bodily functions, including metabolism, immune function, and cell repair.

Who it's for

Anyone needing to improve their nutrient intake or maintain good health.

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

Clinical monograph: Pyridoxinehydrochloride

BNF-referenced

Pyridoxine hydrochloride, also known as Vitamin B6, is a water-soluble vitamin that plays a crucial role in various bodily functions, including amino acid metabolism, neurotransmitter synthesis, and the regulation of gene expression. It is essential for the proper function of enzymes involved in the metabolism of proteins, carbohydrates, and fats. Pyridoxine is commonly used to treat and prevent vitamin B6 deficiencies and is also indicated in specific neuropathies, including those induced by isoniazid and penicillamine.

Indications

  • Vitamin B6 deficiency
  • Isoniazid-induced neuropathy (prophylaxis and treatment)
  • Idiopathic sideroblastic anaemia
  • Prevention of penicillamine-induced neuropathy in Wilson's disease
  • Metabolic diseases such as cystathioninuria and homocystinuria
  • Premenstrual syndrome

Mechanism of action

Pyridoxine hydrochloride is converted in the body to pyridoxal phosphate, which is the active form of vitamin B6. It serves as a cofactor for more than 100 enzymatic reactions, particularly those involved in the metabolism of amino acids, the synthesis of neurotransmitters (such as serotonin, dopamine, and gamma-aminobutyric acid), and the production of hemoglobin. Its role in neurotransmitter synthesis makes it crucial for normal brain function and mood regulation.

Pharmacodynamics

Pyridoxine hydrochloride exerts its effects by facilitating the conversion of amino acids into neurotransmitters and is involved in the synthesis of heme. It impacts the metabolism of tryptophan to serotonin and is essential for the production of norepinephrine and gamma-aminobutyric acid, which are vital for proper neurological function. Deficiency of vitamin B6 can lead to neurological symptoms, including peripheral neuropathy and cognitive disturbances.

Pharmacokinetics

Pyridoxine hydrochloride is readily absorbed from the gastrointestinal tract. It is primarily metabolized in the liver, where it is converted to its active form, pyridoxal phosphate. The elimination half-life of pyridoxine is approximately 15-20 days, and it is excreted primarily through the urine. Renal impairment may affect the metabolism and excretion of pyridoxine, necessitating dose adjustments.

Contra-indications

  • Hyperkalaemia
  • Severe liver damage

Adverse effects

  • Peripheral neuritis
  • Hepatitis
  • Hypoglycaemia
  • Urine discolouration

Interactions

  • Potassium aminobenzoate
  • Isoniazid

Precautions

  • Caution in renal impairment (increased risk of hyperkalaemia)
  • Interrupt treatment during periods of low food intake (such as fasting, anorexia, and nausea) to reduce risk of hypoglycaemia
  • Monitor liver function tests monthly during high-dose therapy

Pregnancy

Manufacturer advises avoiding use in pregnancy due to potential risk of birth defects; however, no adverse effects have been reported at normal dietary levels.

Breast-feeding

Theoretical risk of toxicity in infants if mothers take large doses.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Pyridoxine hydrochloride 10 mg tablets
  • Pyridoxine hydrochloride 20 mg tablets
  • Pyridoxine hydrochloride 50 mg tablets
  • Pyridoxine hydrochloride oral solution 20 mg per 1 ml
BNF 85 (British National Formulary) p.1216 BNF for Children 2019-2020 p.672 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: Riboflavin

BNF-referenced

Riboflavin, also known as vitamin B2, is a water-soluble vitamin crucial for various biochemical functions in the body. It plays a pivotal role in energy production through the metabolism of fats, carbohydrates, and proteins. Additionally, riboflavin is essential for red blood cell formation, maintaining skin health, and supporting overall growth and reproduction. It has antioxidant properties and is involved in the prevention of certain eye disorders, including cataracts.

Indications

  • Vitamin B2 deficiency
  • Isoniazid-induced neuropathy (prophylaxis and treatment)
  • Metabolic diseases
  • Cystathioninuria
  • Homocystinuria
  • Wilson's disease
  • Prevention of penicillamine-induced neuropathy

Mechanism of action

Riboflavin acts as a precursor to flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD), which are essential coenzymes in various enzymatic reactions. It binds to riboflavin hydrogenase, riboflavin kinase, and riboflavin synthase, facilitating the production of FMN and FAD. These coenzymes are critical for normal tissue respiration and energy metabolism, influencing hydrogen transport in oxidative enzyme systems such as cytochrome C reductase and succinic dehydrogenase. Moreover, riboflavin contributes to the antioxidant activity by aiding in the production of reduced glutathione, a key antioxidant in the body.

Pharmacodynamics

Riboflavin is an easily absorbed, water-soluble micronutrient that supports energy production by assisting in the metabolism of fats, carbohydrates, and proteins. It is vital for red blood cell formation, antibody production, and regulating growth and reproduction. The vitamin plays a significant role in maintaining healthy skin, nails, and hair, as well as supporting thyroid activity. Riboflavin also has therapeutic implications in preventing or treating various eye disorders, including cataracts.

Pharmacokinetics

Riboflavin is rapidly absorbed in the gastrointestinal tract, with its bioavailability influenced by dietary intake. It is primarily excreted through urine, with excess intake leading to bright yellow urine, which is a harmless side effect. The vitamin does not accumulate in the body, necessitating regular dietary intake to maintain adequate levels.

Adverse effects

  • Urine discolouration
  • Peripheral neuritis

Precautions

  • With intravenous use, risk of cardiovascular collapse; resuscitation facilities must be available and monitor closely.

Pregnancy

Crosses the placenta but no adverse effects reported; information at high doses limited.

Breast-feeding

Present in breast milk but no adverse effects reported; information at high doses limited.

Storage

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

Formulations

  • 100 mg modified-release tablets
  • 50 mg capsules
  • 100 mg capsules
  • 100 mg tablets
  • Oral solution
BNF for Children 2019-2020 p.672 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: ascorbic

Ascorbic acid, commonly known as vitamin C, is a water-soluble vitamin essential for various physiological functions in the human body. It acts as a powerful antioxidant, helping to protect cells from oxidative stress and contributing to the maintenance of healthy skin, blood vessels, bones, and cartilage. Additionally, ascorbic acid plays a critical role in the synthesis of collagen, neurotransmitters, and certain hormones. It is commonly found in fruits and vegetables, and supplementation is often used to prevent or treat vitamin C deficiency, such as scurvy.

Indications

  • Vitamin C deficiency
  • Scurvy
  • As an adjunct in the treatment of iron deficiency anemia
  • Support for immune function
  • Antioxidant therapy

Dosage

Adults: Refer to the BNF for specific

Mechanism of action

Ascorbic acid functions primarily as a reducing agent, donating electrons to various biochemical reactions. It is involved in the hydroxylation of proline and lysine residues in collagen synthesis, which is essential for maintaining connective tissue integrity. As an antioxidant, it also helps to regenerate other antioxidants, such as vitamin E, thereby protecting cells from oxidative damage. Furthermore, it enhances the absorption of non-heme iron from the gastrointestinal tract, promoting better iron utilization in the body.

Pharmacodynamics

Ascorbic acid is crucial for metabolic processes, including the synthesis of collagen and certain neurotransmitters. Its antioxidant properties help mitigate oxidative stress, which can lead to cellular damage and various diseases. The vitamin's role in iron absorption is particularly significant in preventing iron-deficiency anemia. The therapeutic effects of ascorbic acid are dose-dependent, with higher doses often resulting in more pronounced antioxidant effects.

Pharmacokinetics

Ascorbic acid is readily absorbed in the small intestine, with peak plasma concentrations occurring within 2 to 4 hours after oral administration. The bioavailability of ascorbic acid decreases at higher doses due to saturation of the transport mechanisms. It is distributed throughout bodily fluids and tissues, with highest concentrations found in the adrenal glands, pituitary gland, and leukocytes. The elimination half-life varies, typically ranging from 8 to 40 days, depending on the dose and the individual's renal function. Ascorbic acid is excreted primarily through the kidneys, with renal clearance being influenced by plasma concentration and renal health.

Interactions

  • ascorbic acid + iron chelators: Unknown (increases risk of cardiovascular adverse effects)
  • ascorbic acid + deferiprone: Unknown (increases risk of cardiovascular adverse effects)
  • ascorbic acid + desferrioxamine: Unknown (increases risk of cardiovascular adverse effects)

Pregnancy

Ascorbic acid is generally considered safe during pregnancy but should be used with caution and only when necessary.

Breast-feeding

Ascorbic acid is excreted in breast milk and is generally considered safe during breastfeeding.

Storage

Store at room temperature, away from 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: athaimine

Athiamine is a synthetic derivative of thiamine (vitamin B1) that plays an essential role in carbohydrate metabolism and neuronal function. It is commonly used in the treatment of thiamine deficiency and associated conditions, such as Wernicke's encephalopathy and Beriberi, which can result from chronic alcoholism or malnutrition. Athiamine is often administered in cases where rapid repletion of thiamine is necessary, particularly in patients with impaired absorption or increased requirements.

Indications

  • Thiamine deficiency
  • Wernicke's encephalopathy
  • Beriberi
  • Peripheral neuropathy associated with diabetes
  • Chronic alcoholism

Dosage

Children: Refer to established clinical guidelines and literature for dosing recommendations based on specific conditions and patient needs.

Adults: Refer to established clinical guidelines and literature for dosing recommendations based on specific conditions and patient needs.

Mechanism of action

Athiamine is converted into thiamine pyrophosphate (TPP), an active coenzyme that participates in several key metabolic pathways. TPP is crucial for the decarboxylation of alpha-keto acids and the hexose monophosphate shunt, which are vital for energy production and synthesis of neurotransmitters. By facilitating the conversion of pyruvate to acetyl-CoA and alpha-ketoglutarate to succinyl-CoA, athiamine supports energy metabolism and neuronal function.

Pharmacodynamics

Athiamine acts primarily by replenishing thiamine levels in the body, thereby restoring normal metabolic function. The drug enhances glucose metabolism and supports the synthesis of neurotransmitters and essential lipid components for neuronal cell membranes. Its deficiency leads to significant neurological and cardiovascular issues, emphasizing the importance of maintaining adequate levels of this vitamin.

Pharmacokinetics

Athiamine is rapidly absorbed from the gastrointestinal tract and is widely distributed throughout body tissues. It is primarily metabolized in the liver, with a half-life that varies depending on the individual’s metabolic rate and nutritional status. Athiamine is excreted via the kidneys, and excess amounts are eliminated in the urine. The pharmacokinetics of athiamine can be influenced by factors such as age, health status, and the presence of other medical conditions.

Adverse effects

  • Nausea
  • Vomiting
  • Diarrhea
  • Abdominal cramps
  • Allergic reactions

Precautions

  • Use with caution in patients with a history of hypersensitivity to thiamine.
  • Monitor for allergic reactions during administration.

Pregnancy

Thiamine is generally considered safe during pregnancy and is often recommended to prevent deficiency.

Breast-feeding

Thiamine is excreted in breast milk, but supplementation is usually considered safe for breastfeeding mothers.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Oral tablets
  • Injectable solution

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

Clinical monograph: dcyanocobalamin

Dcyanocobalamin, also known as Vitamin B12, is a water-soluble vitamin that plays a crucial role in the normal functioning of brain and nervous system, as well as in the formation of blood. It is essential for DNA synthesis and cellular metabolism, particularly in the formation of red blood cells and maintenance of the myelin sheath that protects nerve fibers. Deficiency can lead to anemia, neurological disorders, and other health issues.

Indications

  • Vitamin B12 deficiency
  • Pernicious anemia
  • Certain types of macrocytic anemia
  • Neuropathy related to B12 deficiency
  • Malabsorption syndromes affecting B12 absorption

Dosage

Children: Refer to BNF for Children for specific dosing recommendations.

Adults: Refer to established clinical guidelines or BNF for specific dosing recommendations.

Mechanism of action

Dcyanocobalamin functions as a cofactor for enzymes involved in the synthesis of methionine from homocysteine, which is crucial for DNA synthesis and methylation processes. It also plays a role in the conversion of methylmalonyl-CoA to succinyl-CoA, an important step in fatty acid metabolism and energy production. These pathways are vital for maintaining nerve function and producing red blood cells.

Pharmacodynamics

The pharmacodynamics of dcyanocobalamin involve its conversion into active forms, namely methylcobalamin and adenosylcobalamin, which are necessary for various biochemical reactions. It contributes to erythropoiesis, the maintenance of myelin, and neurological function. Dcyanocobalamin is well-absorbed in the gastrointestinal tract, with absorption influenced by intrinsic factor, a glycoprotein secreted by the gastric parietal cells.

Pharmacokinetics

Dcyanocobalamin is absorbed in the ileum of the small intestine, with the presence of intrinsic factor being necessary for optimal absorption. It is transported in the bloodstream bound to transcobalamin II and stored primarily in the liver. The vitamin's biological half-life is variable, with excess amounts being excreted in urine. Metabolism occurs primarily in the liver, where it is converted into active forms.

Contra-indications

  • Hypersensitivity to cyanocobalamin or any of its components
  • Leber's disease (hereditary optic neuropathy)

Adverse effects

  • Injection site reactions (pain, redness, swelling)
  • Headache
  • Dizziness
  • Nausea
  • Diarrhea
  • Anaphylactic reactions (rare)

Interactions

  • Chloramphenicol may inhibit the therapeutic effect of cyanocobalamin
  • Certain antiepileptic drugs (e.g., phenytoin) can lower the levels of vitamin B12
  • Alcohol may impair the absorption of vitamin B12

Precautions

  • Assess for underlying deficiency before initiating treatment
  • Monitor patients with renal impairment or those on hemodialysis
  • Caution in patients with a history of sensitivity to cobalt or cobalamin
  • Use with caution in patients with a history of anemia due to vitamin B12 deficiency

Pregnancy

Cyanocobalamin is generally considered safe for use during pregnancy, as vitamin B12 is essential for fetal development.

Breast-feeding

Cyanocobalamin is excreted in breast milk, but is considered safe for use in breastfeeding mothers.

Storage

Store in a cool, dry place away from light. Protect from moisture.

Formulations

  • Injectable solution (e.g., intramuscular or subcutaneous injections)
  • Oral tablets
  • Sublingual tablets
  • Nasal spray

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: nicotinamidevitamin

Nicotinamide, also known as niacinamide, is an amide form of vitamin B3 that plays a crucial role in cellular metabolism. It is involved in the synthesis of NAD (nicotinamide adenine dinucleotide) and NADP (nicotinamide adenine dinucleotide phosphate), which are essential cofactors in various biochemical reactions. Nicotinamide is commonly used in dermatology for its skin benefits, including the treatment of acne, rosacea, and other inflammatory skin conditions.

Indications

  • Acne vulgaris
  • Rosacea
  • Atopic dermatitis
  • Hyperpigmentation
  • Skin aging
  • Sun damage

Dosage

Children: Refer to specific product guidelines for the appropriate dosage of nicotinamide in children, as it varies based on formulation and indication.

Adults: Refer to specific product guidelines for the appropriate dosage of nicotinamide, as it varies based on formulation and indication.

Mechanism of action

Nicotinamide exerts its effects primarily through its role in the metabolism of carbohydrates, fats, and proteins, as well as in the synthesis of NAD and NADP. It acts as a precursor to these cofactors, which are essential for the function of enzymes involved in redox reactions, energy production, and DNA repair. Additionally, nicotinamide has anti-inflammatory properties that may reduce the production of pro-inflammatory cytokines, contributing to its therapeutic effects in skin conditions.

Pharmacodynamics

Nicotinamide has been shown to improve the barrier function of the skin, enhance hydration, and reduce transepidermal water loss. Its anti-inflammatory properties help to decrease redness and irritation associated with various skin conditions. Furthermore, nicotinamide promotes the synthesis of ceramides, which are vital for maintaining skin hydration and integrity.

Pharmacokinetics

Nicotinamide is well absorbed from the gastrointestinal tract, with peak plasma concentrations typically occurring within 1 to 2 hours after oral administration. It is widely distributed in body tissues and is metabolized primarily in the liver to form NAD and NADP. The elimination half-life of nicotinamide is approximately 30 minutes to 2 hours, and it is excreted in urine primarily as its metabolites.

Adverse effects

  • Nausea
  • Vomiting
  • Abdominal discomfort
  • Diarrhea
  • Skin rash
  • Itching

Precautions

  • Use with caution in patients with liver disease
  • Monitor for gastrointestinal side effects
  • Consider potential allergic reactions

Pregnancy

Nicotinamide is generally considered safe for use during pregnancy, but it should be used under medical supervision.

Breast-feeding

Nicotinamide is excreted in breast milk, and caution is advised when administering to breastfeeding mothers.

Storage

Store in a cool, dry place away from light. Keep out of reach of children.

Formulations

  • Topical cream
  • Oral tablet
  • Oral capsule

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: pyridoxine

BNF-referenced

Pyridoxine, also known as vitamin B6, is a water-soluble vitamin that is essential for various biochemical processes in the body. It comprises a group of three related compounds, including pyridoxine, pyridoxal, and pyridoxamine, along with their phosphorylated derivatives. Pyridoxine primarily serves as a precursor to pyridoxal 5'-phosphate, the active coenzyme form that plays a vital role in amino acid metabolism, glycogen synthesis, and the production of neurotransmitters such as serotonin and dopamine.

Indications

  • Vitamin B6 deficiency
  • Peripheral neuropathy associated with isoniazid therapy
  • Supplementation in specific dietary deficiencies

Dosage

Children: Refer to the BNF for Children for specific paediatric dosing guidance.

Adults: Refer to the BNF for specific dosing details, typically 10-50 mg daily for deficiency.

Mechanism of action

Pyridoxine, mainly in its active form pyridoxal 5'-phosphate, is involved in numerous biochemical reactions, including amino acid metabolism, glycogen breakdown, nucleic acid synthesis, and the production of key neurotransmitters. It aids in the synthesis of hemoglobin and sphingolipids, and its deficiency can impair several physiological processes, including immune response and vascular health.

Pharmacodynamics

Pyridoxine is utilized for the prevention and treatment of vitamin B6 deficiency, particularly in individuals undergoing treatment with isoniazid, which can deplete vitamin B6 levels. It may also have beneficial effects on blood pressure and lipid profiles, as studies have shown it can lower both systolic and diastolic blood pressure, inhibit platelet aggregation, and improve cholesterol levels. Additionally, it plays a role in enhancing immune function and protecting endothelial cells from injury.

Pharmacokinetics

Pyridoxine is rapidly absorbed from the gastrointestinal tract. It is transported to tissues where it is phosphorylated to its active form, pyridoxal 5'-phosphate. The vitamin is primarily excreted in urine as pyridoxine and its metabolites. Its half-life varies depending on the individual’s nutritional status and other factors. Adequate dietary intake is essential for maintaining optimal levels in the body.

Pregnancy

Pyridoxine is generally considered safe during pregnancy. However, high doses should be avoided unless specifically prescribed.

Breast-feeding

Pyridoxine is excreted in breast milk, but at normal dietary levels it is considered safe for breastfeeding mothers.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Tablets
  • Oral solution
  • Injectable 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: vitamin

BNF-referenced

Vitamins are organic compounds that are essential for various metabolic processes in the body. They play crucial roles in maintaining health, supporting the immune system, and promoting growth and development. Different vitamins have specific functions, and they are required in varying amounts depending on age, sex, and physiological conditions.

Indications

  • Vitamin deficiency syndromes (e.g., scurvy for vitamin C deficiency, rickets for vitamin D deficiency)
  • Support for immune function
  • Antioxidant support
  • Bone health maintenance
  • Vision health
  • Energy metabolism support

Dosage

Children: Refer to the BNF for Children for specific vitamin dosing guidelines, which depend on age and nutritional requirements.

Adults: Refer to specific vitamin guidelines as dosage varies significantly depending on the type of vitamin and individual needs.

Mechanism of action

Vitamins function primarily as coenzymes or precursors for coenzymes in enzymatic reactions. For instance, B vitamins are involved in energy metabolism, while vitamins A, C, D, E, and K support various physiological functions including vision, antioxidant activity, calcium regulation, and blood clotting. Each vitamin has a unique mechanism of action based on its structure and role in the body.

Pharmacodynamics

Vitamins exert their effects at the cellular level, influencing metabolic pathways, gene expression, and immune responses. For example, vitamin D regulates calcium and phosphate homeostasis, while vitamin A is crucial for vision and immune function. Deficiencies in vitamins can lead to a range of disorders, highlighting their importance in maintaining health.

Pharmacokinetics

The pharmacokinetics of vitamins vary widely. Fat-soluble vitamins (A, D, E, and K) are stored in liver and adipose tissues and can be released into circulation as needed. Water-soluble vitamins (B-complex and C) are not stored and must be consumed regularly, with excess amounts excreted in urine. Absorption rates, half-lives, and distribution can also differ based on the specific vitamin and individual metabolic factors.

Interactions

  • tretinoin+vitamin: Severe (increases risk of vitamin toxicity)
  • retinoids+vitamin: Severe (increases risk of vitamin toxicity)
  • retinoids+vitamin: Moderate (increases risk of toxicity)
  • carbamazepine+vitamin: Unknown (decreases effects)
  • cobicistat+vitamin: Unknown (increases exposure)
  • vitamin D substances+digoxin: Unknown (increases risk of toxicity)
  • idelalisib+vitamin: Unknown (increases exposure)
  • clarithromycin+vitamin: Unknown (increases exposure)

Pregnancy

Consult healthcare professional before use. Vitamin supplementation during pregnancy should be carefully managed to avoid hypervitaminosis.

Breast-feeding

Consult healthcare professional before use. Some vitamins can pass into breast milk and may affect the infant.

Storage

Store in a cool, dry place, away from direct sunlight. Ensure it is kept out of reach of children.

Formulations

  • {'name': 'Vitamin A', 'form': 'Capsule', 'strength': '10000 IU'}
  • {'name': 'Vitamin D', 'form': 'Tablet', 'strength': '1000 IU'}
  • {'name': 'Vitamin E', 'form': 'Softgel', 'strength': '400 IU'}

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: Riboflavin

PubChem CID 493570

Molecular formula: C17H20N4O6

Mechanism of action

Binds to riboflavin hydrogenase, riboflavin kinase, and riboflavin synthase. Riboflavin is the precursor of flavin mononucleotide (FMN, riboflavin monophosphate) and flavin adenine dinucleotide (FAD). The antioxidant activity of riboflavin is principally derived from its role as a precursor of FAD and the role of this cofactor in the production of the antioxidant reduced glutathione. Reduced glutathione is the cofactor of the selenium-containing glutathione peroxidases among other things. The glutathione peroxidases are major antioxidant enzymes. Reduced glutathione is generated by the FAD-containing enzyme glutathione reductase. Riboflavin is converted to 2 coenzymes, flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD), which are necessary for normal tissue respiration. Riboflavin is also required for activation of pyridoxine, conversion of tryptophan to niacin, and may be involved in maintaining erythrocyte integrity. Riboflavin functions as the coenzyme for flavin adenine dinucleotide (FAD) and flavin mononucleotide (FMN), which primarily influence hydrogen transport in oxidative enzyme systems (eg, cytochrome C reductase, succinic dehydrogenase, xanthine oxidase). Two active forms of riboflavin exist ... coenzyme flavin mononucleotide (FMN) and coenzyme flavin adenine dinucleotide (FAD). They are formed by reaction of riboflavin with 1 and 2 molecules of ATP as follow: riboflavin + ATP = riboflavin-P (FMN) + ADP; FMN + ATP = riboflavin-ADP (FAD) + PP. Riboflavin is a water-soluble, yellow, fluorescent compound. The primary form of the vitamin is as an integral component of the coenzymes flavin mononucleotide (FMN) and flavin-adenine dinucleotide (FAD). It is in these bound coenzyme forms that riboflavin functions as a catalyst for redox reactions in numerous metabolic pathways and in energy production. ... The redox reactions in which flavocoenzymes participate include flavoprotein-catalyzed dehydrogenations that are both pyridine nucleotide (niacin) dependent and independent, reactions with sulfur-containing compounds, hydroxylations, oxidative decarboxylations (involving thiamin as its pyrophosphate), dioxygenations, and reduction of oxygen to hydrogen peroxide. There are obligatory roles of flavocoenzymes in the formation of some vitamins and their coenzymes. For example, the biosynthesis of two niacin-containing coenzymes from tryptophan occurs via FAD-dependent kynurenine hydroxylase, an FMN-dependent oxidase catalyzes the conversion of the 5'-phosphates of vitamin B6 to coenzymic pyridoxal 5'-phosphate, and an FAD-dependent dehydrogenase reduces 5,10-methylene-tetrahydrofolate to the 5'-methyl product that interfaces with the B12-dependent formation of methionine from homocysteine and thus with sulfur amino acid metabolism. For more Mechanism of Action (Complete) data for Riboflavin (7 total), please visit the HSDB record page.

Pharmacodynamics

Riboflavin or vitamin B2 is an easily absorbed, water-soluble micronutrient with a key role in maintaining human health. Like the other B vitamins, it supports energy production by aiding in the metabolising of fats, carbohydrates, and proteins. Vitamin B2 is also required for red blood cell formation and respiration, antibody production, and for regulating human growth and reproduction. It is essential for healthy skin, nails, hair growth and general good health, including regulating thyroid activity. Riboflavin also helps in the prevention or treatment of many types of eye disorders, including some cases of cataracts.

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

Molecular reference: pyridoxine

PubChem CID 1054

Molecular formula: C8H11NO3

Mechanism of action

Vitamin B6 is the collective term for a group of three related compounds, pyridoxine (PN), pyridoxal (PL) and pyridoxamine (PM), and their phosphorylated derivatives, pyridoxine 5'-phosphate (PNP), pyridoxal 5'-phosphate (PLP) and pyridoxamine 5'-phosphate (PMP). Although all six of these compounds should technically be referred to as vitamin B6, the term vitamin B6 is commonly used interchangeably with just one of them, pyridoxine. Vitamin B6, principally in its biologically active coenzyme form pyridoxal 5'-phosphate, is involved in a wide range of biochemical reactions, including the metabolism of amino acids and glycogen, the synthesis of nucleic acids, hemogloblin, sphingomyelin and other sphingolipids, and the synthesis of the neurotransmitters serotonin, dopamine, norepinephrine and gamma-aminobutyric acid (GABA).

Pharmacodynamics

Vitamin B6 (pyridoxine) is a water-soluble vitamin used in the prophylaxis and treatment of vitamin B6 deficiency and peripheral neuropathy in those receiving isoniazid (isonicotinic acid hydrazide, INH). Vitamin B6 has been found to lower systolic and diastolic blood pressure in a small group of subjects with essential hypertension. Hypertension is another risk factor for atherosclerosis and coronary heart disease. Another study showed pyridoxine hydrochloride to inhibit ADP- or epinephrine-induced platelet aggregation and to lower total cholesterol levels and increase HDL-cholesterol levels, again in a small group of subjects. Vitamin B6, in the form of pyridoxal 5'-phosphate, was found to protect vascular endothelial cells in culture from injury by activated platelets. Endothelial injury and dysfunction are critical initiating events in the pathogenesis of atherosclerosis. Human studies have demonstrated that vitamin B6 deficiency affects cellular and humoral responses of the immune system. Vitamin B6 deficiency results in altered lymphocyte differentiation and maturation, reduced delayed-type hypersensitivity (DTH) responses, impaired antibody production, decreased lymphocyte proliferation and decreased interleukin (IL)-2 production, among other immunologic activities.

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

Molecular reference: vitamin

PubChem CID 266052

Molecular formula: C14H15NO7

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.