CORFLEX FORTE TABLETS
GLUCOSAMINE SULPHATE POTASSIUM CHLORIDE, CHONDROITIN SULPHATE SODIUM, METHYLSULFONYLMETHANE, VITAMIN C, MANGANESE SULPHATE AND VITAMIN E
What it does
Ascorbic acid, commonly known as Vitamin C, is essential for overall health and helps the body in many ways.
Commonly used for: scurvy, immune system support, wound healing, antioxidant support
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Source: Pharmacy and Poisons Board · fetched 2026-01-28 20:49:42 · updated 2026-07-26 11:40:11
Drug Interactions
4Severe (2)
Coumarins - increases anticoagulant effect
Glucosamine potentially increases the anticoagulant effect of coumarins (warfarin). Avoid. Anecdotal Glycerol phenylbutyrate
Warfarin - increases anticoagulant effect
Glucosamine potentially increases the anticoagulant effect of warfarin. Avoid.
Unknown (2)
Acenocoumarol - decreases anticoagulant effect
Glucosamine potentially decreases the anticoagulant effect of acenocoumarol.
Coumarins - decreases anticoagulant effect
Glucosamine potentially decreases the anticoagulant effect of coumarins (acenocoumarol).
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About ascorbic acid
Ascorbic acid, commonly known as Vitamin C, is essential for overall health and helps the body in many ways.
What it treats
- scurvy
- immune system support
- wound healing
- antioxidant support
How it works
Ascorbic acid helps in the production of collagen, a protein important for skin, blood vessels, and connective tissues, and acts as an antioxidant to protect cells.
Who it's for
It is suitable for people needing vitamin C, such as those with a deficiency or increased requirements due to illness or stress.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About chondroitin
Chondroitin is a natural substance found in cartilage, commonly used as a supplement to support joint health.
What it treats
- joint pain
- osteoarthritis
How it works
Chondroitin helps maintain cartilage structure and may reduce pain and inflammation in the joints.
Who it's for
It is often used by individuals with joint issues, especially older adults or those with osteoarthritis.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About glucosamine
Glucosamine is a supplement often used to support joint health and relieve discomfort.
What it treats
- osteoarthritis
- joint pain
How it works
Glucosamine is thought to help maintain cartilage and support joint function.
Who it's for
It is typically used by people suffering from joint issues, especially older adults or those with osteoarthritis.
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 methylsulfonylmethane
Methylsulfonylmethane (MSM) is a natural compound often used to support joint health and reduce inflammation.
What it treats
- joint pain
- osteoarthritis
- inflammation
How it works
MSM is thought to help reduce pain and swelling in the body, particularly in the joints.
Who it's for
Adults looking for support with joint issues or inflammation.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About tocopherol
Tocopherol is a form of vitamin E, an antioxidant that helps protect cells from damage.
What it treats
- skin health
- antioxidant support
- nutritional supplement
How it works
It helps protect your body from harmful substances by neutralizing free radicals.
Who it's for
It is suitable for people looking to support their overall health and skin condition.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Ascorbicacid
BNF-referencedAscorbic acid, also known as Vitamin C, is a water-soluble vitamin essential for various bodily functions, including the synthesis of collagen, neurotransmitters, and the immune response. It acts as an antioxidant, protecting cells from damage by free radicals.
Indications
- Vitamin C deficiency
- Scurvy
- Adjunct therapy in iron overload conditions
Dosage
Children: Child 1 month–3 years: 125–250 mg daily in 1–2 divided doses; Child 4–11 years: 250–500 mg daily in 1–2 divided doses; Child 12–17 years: 0.5–1 g daily in 1–2 divided doses.
Adults: 500 mg daily, taken in 1-2 divided doses, depending on the clinical condition and dietary needs.
Mechanism of action
Ascorbic acid functions primarily as a reducing agent, facilitating enzymatic reactions in the body, including the hydroxylation of proline and lysine in collagen synthesis. It also plays a role in the absorption of iron from the gastrointestinal tract and enhances the immune response.
Pharmacodynamics
Ascorbic acid is crucial for the maintenance of connective tissue and is involved in the metabolism of several amino acids. Its antioxidant properties help to mitigate oxidative stress and may play a role in reducing the risk of chronic diseases.
Pharmacokinetics
Ascorbic acid is absorbed in the intestines and is widely distributed throughout the body. The renal clearance of ascorbic acid is dose-dependent, with higher doses leading to increased excretion. The half-life varies but is generally around 15 to 30 minutes in healthy individuals, with tissue saturation levels influencing its retention.
Contra-indications
- Hypercalcaemia
- Hyperoxaluria
- Patients with cardiac dysfunction
Adverse effects
- Abdominal pain
- Headache
- Nausea
- Vomiting
- Diarrhoea
- Constipation
- Weight loss
- Polyuria
- Sweating
- Thirst
- Vertigo
Interactions
- Increases risk of cardiovascular adverse effects with iron chelators
- Increases risk of cardiovascular adverse effects with deferiprone
- Increases risk of cardiovascular adverse effects with desferrioxamine
Precautions
- Use with caution in patients with iron overload
- Monitor for symptoms of overdose
Pregnancy
High doses teratogenic in animals but therapeutic doses unlikely to be harmful.
Storage
Store in a cool, dry place away from direct sunlight.
Formulations
- Ascorbic acid 50 mg tablets
- Ascorbic acid 100 mg tablets
- Ascorbic acid 200 mg tablets
- Ascorbic acid 250 mg tablets
- Ascorbic acid 500 mg capsules
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: Glucosamine
BNF-referencedGlucosamine is a naturally occurring substance found in mucopolysaccharides, mucoproteins, and chitin. It serves as a precursor for glycosaminoglycans, which are crucial components of joint cartilage. Glucosamine is primarily used for the symptomatic relief of mild to moderate osteoarthritis of the knee. While it is thought to aid in rebuilding cartilage and reducing joint pain, the clinical evidence supporting its efficacy remains inconclusive.
Indications
- Symptomatic relief of mild to moderate osteoarthritis of the knee
Dosage
Children: Refer to the BNF for Children for
Adults: 200–400 mg daily, maximum 6.5 mg/kg per day, or 1250 mg once daily, or 1500 mg once daily dissolved in at least 250 mL of water; review treatment if no benefit after 2–3 months.
Mechanism of action
The mechanism of action of glucosamine in joint health is not entirely clear, but it is believed to involve several pathways. Glucosamine is a precursor for glycosaminoglycans, which are essential for cartilage integrity. It may also reduce inflammation by inhibiting interferon gamma and Nuclear factor kappa B subunit 65 (NF-κB p65), which could improve symptoms of arthritis and joint pain. Upon uptake by living cells, glucosamine reacts with ATP to form glucosamine-6-phosphate, further contributing to glycosaminoglycan synthesis.
Pharmacodynamics
Glucosamine is theorized to provide essential building blocks for the synthesis of glycosaminoglycans, potentially slowing the progression of osteoarthritis and alleviating joint pain. Although some studies have indicated modest improvements in joint pain and function among users, the overall evidence remains inconclusive. Glycosaminoglycans are critical for maintaining cartilage elasticity, strength, and flexibility, which are vital for joint health.
Pharmacokinetics
After oral administration, glucosamine is absorbed in the gastrointestinal tract and transported into the bloodstream, where it is metabolized into various forms, including glucosamine-6-phosphate. The exact pharmacokinetics, such as absorption rate and half-life, remain largely undefined, and much of the data is derived from animal studies. Further research is required to clarify its pharmacokinetic profiles in humans.
Adverse effects
- Constipation
- Diarrhoea
- Fatigue
- Gastrointestinal discomfort
- Headache
- Nausea
- Flushing
- Skin reactions
Interactions
- Glucosamine + warfarin: Severe (increases anticoagulant effect)
- Glucosamine + coumarins: Severe (increases anticoagulant effect)
- Glucosamine + acenocoumarol: Unknown (decreases anticoagulant effect)
- Glucosamine + coumarins: Unknown (decreases anticoagulant effect)
Precautions
- Asthma
- Impaired glucose tolerance
- Predisposition to cardiovascular disease
Pregnancy
Safety during pregnancy has not been established; consult with a healthcare provider.
Breast-feeding
Safety during breastfeeding has not been established; consult with a healthcare provider.
Storage
Store in a cool, dry place away from direct sunlight.
Formulations
- Alateris®
- Dolenio®
- Glusartel®
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: chondroitin
Chondroitin is a naturally occurring substance found in the connective tissues of animals, commonly used as a dietary supplement for joint health. It is often taken in combination with glucosamine for the management of osteoarthritis symptoms. Chondroitin is purported to help maintain cartilage structure, reduce pain, and improve joint function.
Indications
- Osteoarthritis
- Joint pain
- Cartilage repair
- Joint health maintenance
Dosage
Children: Refer to healthcare professionals for guidance on dosing in children, as specific pediatric dosing information is not well established.
Adults: Refer to specific product labeling and consult healthcare professionals for guidance on dosing, as dosages can vary based on formulations and clinical guidelines.
Mechanism of action
Chondroitin works primarily by providing the building blocks necessary for the synthesis of glycosaminoglycans, which are critical components of cartilage. It is thought to inhibit the enzymes that break down cartilage, thereby promoting cartilage repair while also exhibiting anti-inflammatory properties. Additionally, chondroitin may enhance the retention of water in the cartilage, improving its elasticity and resilience.
Pharmacodynamics
Chondroitin has been shown to modulate inflammatory responses within the joints and may help to improve joint mobility and reduce pain associated with osteoarthritis. Its effects on cartilage metabolism are believed to contribute to its therapeutic benefits, although the clinical efficacy may vary among individuals. The anti-inflammatory properties may also contribute to a reduction in joint swelling and discomfort.
Pharmacokinetics
Chondroitin is poorly absorbed from the gastrointestinal tract, with bioavailability ranging from 12% to 36%. It is distributed in the extracellular matrix of cartilage and other connective tissues. Metabolism of chondroitin is not well understood, but it is believed to be metabolized in the liver. The elimination half-life in humans is not well defined, and it is primarily excreted via urine as metabolites. The effects of food on its absorption are still under investigation.
Adverse effects
- Nausea
- Diarrhea
- Constipation
- Abdominal pain
- Headache
- Skin reactions
Interactions
- Anticoagulants (e.g., warfarin) - may increase the risk of bleeding
- NSAIDs - may affect the efficacy of these medications
Precautions
- Use with caution in patients with a history of bleeding disorders
- Caution is advised in patients undergoing surgery due to potential bleeding risk
- Patients with shellfish allergies should consult a physician as some chondroitin supplements are derived from marine sources
Pregnancy
There is insufficient reliable information regarding the safety of chondroitin during pregnancy. It is advisable to avoid use unless prescribed by a healthcare professional.
Breast-feeding
It is not known if chondroitin is excreted in human milk. Caution is advised for nursing mothers considering its use.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Capsule
- Tablet
- Powder
- Liquid
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: methylsulfonylmethane
BNF-referencedMethylsulfonylmethane (MSM) is an organosulfur compound that is widely used as a dietary supplement. It is believed to have anti-inflammatory properties and is commonly utilized for joint health, pain relief, and as a potential adjunct in the management of osteoarthritis and other inflammatory conditions. MSM is naturally found in some foods and is also produced in small amounts by the human body.
Indications
- Osteoarthritis
- Joint pain
- Inflammatory conditions
- Musculoskeletal disorders
Dosage
Children: Paediatric dosing information for methylsulfonylmethane is not well established. It is recommended to refer to the BNF for Children for guidance on the use and dosing in children.
Adults: The typical adult dosage of methylsulfonylmethane ranges from 1,500 mg to 6,000 mg daily, divided into two or three doses. It is advisable to refer to specific product guidelines or consult a healthcare professional for appropriate dosing.
Mechanism of action
The exact mechanism of action of methylsulfonylmethane is not fully understood. However, it is thought to exert its effects through the modulation of inflammatory processes and by providing sulfur, which is a vital component in the synthesis of collagen and other important biomolecules. MSM may also affect the permeability of cell membranes and influence the activity of various enzymes involved in inflammatory pathways.
Pharmacodynamics
Methylsulfonylmethane has been shown to have anti-inflammatory and analgesic properties, which may be mediated through its action on cytokines and other mediators of inflammation. It is thought to inhibit the production of pro-inflammatory cytokines, thereby reducing inflammation and pain associated with musculoskeletal conditions. The compound may also enhance antioxidant defenses and promote tissue repair.
Pharmacokinetics
Methylsulfonylmethane is well absorbed after oral administration, with peak plasma concentrations typically occurring within 1 to 2 hours. It is metabolized in the body through various pathways, including dimethyl sulfone degradation. The elimination half-life of MSM is not well established, but it is believed to be excreted primarily through the urine.
Pregnancy
There is insufficient reliable data on the safety of methylsulfonylmethane during pregnancy. Caution is advised.
Breast-feeding
It is not known whether methylsulfonylmethane is excreted in human milk. Caution is advised.
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: tocopherol
BNF-referencedTocopherol, commonly known as vitamin E, is a fat-soluble antioxidant that plays a critical role in protecting cell membranes from oxidative stress. It is primarily found in various dietary sources, including nuts, seeds, and green leafy vegetables. Tocopherol acts by donating hydrogen atoms to free radicals, thereby neutralizing their harmful effects and preventing cellular damage.
Indications
- Prevention of vitamin E deficiency
- Antioxidant therapy
- Support in conditions related to oxidative stress
Dosage
Children: Refer to BNF for Children for specific dosage guidelines.
Adults: Refer to BNF for specific dosage guidelines.
Mechanism of action
Tocopherol acts as a radical scavenger, primarily functioning as an antioxidant for lipid bilayers. It donates hydrogen atoms to free radicals, trapping them and preventing cellular damage. Its effectiveness is influenced by its location within the membrane and its interaction with cytosolic reductants like ascorbate. Tocopherol can trap multiple radicals, including alkyl and peroxy radicals.
Pharmacodynamics
The antioxidant properties of tocopherol lead to significant pharmacodynamic effects, including the inhibition of cell death through modulation of protein kinase C (PKC). Tocopherol also exhibits anti-inflammatory effects, which can be attributed to its influence on cytokines, prostaglandins, prostanoids, and thromboxanes. These interactions may contribute to its protective effects in various pathological conditions.
Pharmacokinetics
Tocopherol is absorbed in the intestines and its bioavailability can be influenced by dietary fat intake. It is transported in the plasma primarily bound to lipoproteins. Tocopherol is stored in adipose tissue and the liver, and its elimination occurs through bile and urine. The half-life of tocopherol can vary depending on the individual's nutritional status and other factors.
Pregnancy
Tocopherol is generally considered safe during pregnancy, but it is advisable to consult a healthcare provider before use.
Breast-feeding
Tocopherol is excreted in breast milk, and while it is considered safe, a healthcare provider should be consulted for specific recommendations.
Storage
Store in a cool, dry place away from direct sunlight.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: Glucosamine
PubChem CID 439213Molecular formula: C6H13NO5
Mechanism of action
The mechanism of action of glucosamine in joint health is unclear, however there are several possible mechanisms that contribute to its therapeutic effects. Because glucosamine is a precursor for glycosaminoglycans, and glycosaminoglycans are a major component of joint cartilage, glucosamine supplements may help to rebuild cartilage and treat the symptoms of arthritis. Some in vitro studies show evidence that glucosamine reduces inflammation via inhibition of interferon gamma and Nuclear factor kappa B subunit 65 (NF-κB p65), improving the symptoms of arthritis and joint pain. Clinical relevance is unknown at this time. When taken up by living cells, glucosamine reacts with ATP to form glucosamine-6-phosphate, the natural precursor of glycosaminoglycans (GAGs) that contain N-acetylglucosamine (keratan sulfate and Hyaluronan) and those that have N-acetylgalactosamine (heparan sulfate and chondroitin sulfate). These GAGs are polysaccharides composed of hexosamines and monosaccharides (e.g., galactose and glucuronic acid) arranged as a linear chain of repeating disaccharide units (such as the glucuronic acid and N-acetylgalactosamine-6-sulfate of chondroitin sulfate). With the exception of hyaluronan, GAGs do not exist alone in nature but are attached to specific "core" proteins, and the composite structures are called proteoglycans (protein-glycosaminoglycans). Both hyaluronan and many different kinds of proteoglycans (such as aggrecan, versican, and syndecan) are abundant throughout the body where they perform diverse functions.
Pharmacodynamics
The administration of glucosamine, in theory, provides a building block towards the synthesis of glycosaminoglycans, slowing the progression of osteoarthritis and relieving symptoms of joint pain. Studies to this date examining the efficacy of glucosamine sulfate have been inconclusive. Glycosaminoglycans contribute to joint cartilage elasticity, strength, and flexibility. A systematic review of various studies and guidelines determined that modest improvements were reported for joint pain and function in patients taking glucosamine. A consistent joint space narrowing was observed, but with an unclear clinical significance.
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: methylsulfonylmethane
PubChem CID 6213Molecular formula: C2H6O2S
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: tocopherol
PubChem CID 14986Molecular formula: C28H48O2
Mechanism of action
Tocopherol acts as a radical scavenger. It mainly acts as an antioxidant for lipid bilayers. Tocopherol's functions depend on the H-atom donating ability, location, and movement within the membrane, as well as the efficiency in the radical recycling by some cytosolic reductants such as ascorbate. Tocopherol actions are related to the trap of radicals, and it has been shown that even in the absence of substituents in the ortho-positions, tocopherol can trap more than two radicals. The type of radicals available for tocopherol are alkyl and peroxy.
Pharmacodynamics
The antioxidant effects of tocopherol can be translated into different changes at the pharmacodynamic level. In vitro studies have shown that this antioxidant activity can produce modification in protein kinase C (PKC) which will later be translated into an inhibition of cell death. Some other derivate effects are the anti-inflammatory properties of tocopherol which can be related to the modulation of cytokines or prostaglandins, prostanoids and thromboxanes.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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