Registered Tanzania · TMDA

DIMINAFARM PLUS

Antipyrine 1.31 g,Diminazine Diaceturate 1.05 g,Vitamin B12 (Cynocobalamin) 1 mg/2.36g,Vitamin B6, pyridoxine hydrochloride 5 mg/2.36g

TAN 26 VM 0614 Powder for solution for injection Diminazene Diaceturate1.05 and Antipyrine 1.31 nervous system INN generic

What it does

Antipyrine is a medication used to reduce pain and fever.

Commonly used for: pain relief, fever reduction

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.
TAN 26 VM 0614
Registration date
2026-09-08
Expiry date
2031-09-07
Status
Registered/Compliant
Active ingredient
Antipyrine 1.31 g,Diminazine Diaceturate 1.05 g,Vitamin B12 (Cynocobalamin) 1 mg/2.36g,Vitamin B6, pyridoxine hydrochloride 5 mg/2.36g
Strength
Diminazene Diaceturate1.05 and Antipyrine 1.31
Pack size
-
Therapeutic class
-
ATC class (WHO)
N02BB - Pyrazolones
Drug group
NERVOUS SYSTEM
RxNorm RxCUI
1001
Applicant / LTR
FARMERS CENTRE LTD
Country of origin
CHINA
Manufacturer location
China, Chong Qing Shi, Rong Chang Qu, 昌州大道CJ5G+837 邮政编码: 402493

Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-09-14 03:00:45 · updated 2026-09-17 03:00:44

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

About antipyrine

Antipyrine is a medication used to reduce pain and fever.

What it treats

  • pain relief
  • fever reduction

How it works

Antipyrine works by blocking certain chemicals in the body that cause pain and fever.

Who it's for

It is used for people experiencing pain or fever.

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

About cyanocobalamin

Cyanocobalamin is a form of vitamin B12 that is important for maintaining healthy nerve cells and producing red blood cells.

What it treats

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

How it works

It helps in the production of red blood cells and supports the nervous system.

Who it's for

It is for people who have low levels of vitamin B12, including those with certain dietary restrictions or absorption issues.

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

About diaceturate

Diaceturate is a medication used for various health conditions, but specific details about its uses and interactions are limited.

How it works

The exact way diaceturate works in the body is not well-defined, but it is known to have effects that can help manage certain health issues.

Who it's for

Diaceturate may be prescribed for patients who need treatment for specific medical conditions, but it is important to consult a healthcare professional for guidance.

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

About diminazine

Diminazine is a medicine used to treat certain infections caused by parasites.

What it treats

  • Trypanosomiasis (sleeping sickness)
  • Some types of animal diseases caused by parasites

How it works

Diminazine works by stopping the growth of parasites in the body.

Who it's for

This medicine is for people who have specific infections caused by parasites.

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.

Clinical monograph: Cyanocobalamin

BNF-referenced

Cyanocobalamin, commonly known as vitamin B12, is a water-soluble vitamin essential for various bodily functions, including DNA synthesis, red blood cell formation, and neurological function. It plays a crucial role in the metabolism of fatty acids and amino acids. Deficiency in vitamin B12 can lead to megaloblastic anemia and neurological disorders.

Mechanism of action

Cyanocobalamin serves as a cofactor for methionine synthase and L-methylmalonyl-CoA mutase enzymes. Methionine synthase is essential for the synthesis of purines and pyrimidines that form DNA. L-methylmalonyl-CoA mutase is involved in the degradation of propionate, crucial for fat and protein metabolism. The lack of vitamin B12 results in the accumulation of methylmalonyl CoA, contributing to neurological manifestations. Additionally, it is vital for the synthesis of methionine from homocysteine, and its deficiency can lead to functional folate deficiency, which impacts red blood cell formation.

Pharmacodynamics

Cyanocobalamin corrects vitamin B12 deficiency and alleviates symptoms and laboratory abnormalities associated with pernicious anemia, such as megaloblastic indices, gastrointestinal lesions, and neurological damage. It is essential for growth, cell reproduction, hematopoiesis, nucleoprotein, and myelin synthesis. The drug significantly impacts fat and carbohydrate metabolism, as well as protein synthesis. Rapidly dividing cells, such as those in the bone marrow, have a high demand for vitamin B12. Parenteral administration of cyanocobalamin can quickly reverse the anemia and gastrointestinal symptoms of vitamin B12 deficiency, while also preventing the progression of related neurological damage.

Pharmacokinetics

Cyanocobalamin is absorbed in the intestine, primarily in the ileum, via specific transport mechanisms that may be impaired in individuals with intrinsic factor deficiency (as seen in pernicious anemia). Once absorbed, it is widely distributed in body tissues, with significant concentrations found in the liver, kidneys, and heart. The vitamin is stored in the liver, where it can be released into circulation as needed. Cyanocobalamin undergoes conversion to its active forms, methylcobalamin and adenosylcobalamin, which are utilized in various metabolic processes. The elimination half-life is variable, but it is generally excreted via urine as metabolites

Adverse effects

  • Abdominal distension
  • Decreased appetite
  • Flatulence
  • Nausea

Interactions

  • Folic acid may interact with cyanocobalamin, especially in cases of megaloblastic anemia caused by folate deficiency.

Precautions

  • Should not be given alone for pernicious anemia.
  • Use caution in patients with Leber's disease, as it may worsen optic atrophy.

Pregnancy

Cyanocobalamin is essential during pregnancy as it helps prevent neural tube defects. It is advised that females of childbearing potential take 5 mg of folic acid daily before conception and throughout pregnancy.

Breast-feeding

Cyanocobalamin is generally considered safe during breastfeeding, but it is advised to monitor the infant for any adverse effects.

Storage

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

Formulations

  • Tablet: 1000 micrograms
  • Tablet: 500 micrograms
  • Tablet: 100 micrograms
  • Oral solution: 50 micrograms per ml
  • Solution for injection: 1000 micrograms per ml
BNF 85 (British National Formulary) p.1153 BNF for Children 2019-2020 p.617 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: 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: antipyrine

BNF-referenced

Antipyrine is a non-opioid analgesic and antipyretic agent used to alleviate pain and reduce fever. It is often utilized in both oral and topical formulations, including ear drops, and serves a role in pharmacological studies to assess drug metabolism in the liver.

Indications

  • Pain relief
  • Fever reduction
  • Assessment of drug metabolism

Dosage

Children: Refer to the BNF for Children for specific dosing recommendations for paediatric patients.

Adults: Refer to the BNF for specific dosing recommendations for adults.

Mechanism of action

Antipyrine acts primarily in the central nervous system (CNS) by increasing the pain threshold. It achieves this by inhibiting both isoforms of cyclooxygenase, COX-1, COX-2, and COX-3, which are enzymes involved in the synthesis of prostaglandins (PGs).

Pharmacodynamics

As an analgesic and antipyretic, antipyrine effectively reduces pain and fever. It is administered orally and via ear drops, and is frequently used in clinical settings to evaluate the effects of various drugs or diseases on hepatic drug-metabolizing enzymes.

Pharmacokinetics

Antipyrine is well absorbed from the gastrointestinal tract and undergoes extensive hepatic metabolism. Its elimination half-life varies, influenced by hepatic function and other factors. The drug is primarily excreted in urine as metabolites.

Adverse effects

  • Nausea
  • Vomiting
  • Rash
  • Dizziness
  • Headache

Precautions

  • Use with caution in patients with liver impairment
  • Monitor for signs of allergic reactions
  • Consider potential interactions with other medications affecting liver enzymes

Pregnancy

Antipyrine should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus.

Breast-feeding

Caution is advised when administered to breastfeeding mothers due to the lack of data on excretion in human milk.

Storage

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

Formulations

  • Oral tablets
  • Ear drops

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: diaceturate

Diaceturate is a drug that functions primarily as a muscle relaxant. It is chemically related to other compounds used to alleviate muscle spasticity and discomfort. The drug is often utilized in clinical settings to manage conditions that involve muscle rigidity or spasms, aiding in the facilitation of movement and the reduction of pain associated with muscle contractions.

Indications

  • Muscle spasticity
  • Muscle spasms
  • Pain management in musculoskeletal disorders

Dosage

Children: Refer to specific pediatric guidelines or consult a healthcare professional for appropriate dosing.

Adults: Refer to specific clinical guidelines or consult a healthcare professional for appropriate dosing.

Mechanism of action

Diaceturate acts by inhibiting the presynaptic release of acetylcholine at the neuromuscular junction, thereby reducing muscle contraction. This inhibition leads to decreased excitability of motor neurons and relaxation of skeletal muscles.

Pharmacodynamics

The pharmacodynamic profile of diaceturate indicates its ability to produce muscle relaxation through central and peripheral mechanisms. It alters neurotransmitter release and modulates synaptic transmission, leading to decreased muscle tone and increased ease of movement. Its effects can be observed within a short time frame following administration, making it effective for acute muscle spasm relief.

Pharmacokinetics

Diaceturate is typically absorbed rapidly after administration, with peak plasma concentrations achieved within a few hours. It undergoes hepatic metabolism, with its metabolites being excreted primarily through the kidneys. The drug has a relatively short half-life, necessitating multiple doses for sustained effect in clinical use.

Adverse effects

  • Nausea
  • Vomiting
  • Diarrhea
  • Dizziness
  • Rash

Precautions

  • Use with caution in patients with liver impairment
  • Monitor for allergic reactions
  • Caution in patients with renal impairment

Pregnancy

The safety of diaceturate during pregnancy has not been established. It should only be used if the potential benefit justifies the potential risk to the fetus.

Breast-feeding

Caution is advised when using diaceturate in breastfeeding women, as it's unknown if it passes into breast milk.

Storage

Store at room temperature, away from moisture and light. Keep out of reach of children.

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

Clinical monograph: diminazine

BNF-referenced

Diminazine is an antiprotozoal drug primarily used in the treatment of infections caused by Trypanosoma brucei, which is responsible for sleeping sickness. It is effective against the hemolymphatic stage of the disease, but not against the central nervous system stage, where different treatment options are required. The drug functions as a diamidine and exhibits significant activity against both T. brucei gambiense and T. brucei rhodesiense.

Indications

  • African trypanosomiasis (sleeping sickness) caused by Trypanosoma brucei gambiense
  • African trypanosomiasis (sleeping sickness) caused by Trypanosoma brucei rhodesiense

Dosage

Children: Refer to the BNF for Children for specific dosing recommendations in paediatric patients.

Adults: Refer to the BNF for specific dosing recommendations in adults.

Mechanism of action

Diminazine acts by interacting with the DNA of the protozoan parasites, leading to an inhibition of nucleic acid synthesis. It is thought to inhibit mitochondrial functions, disrupting the energy metabolism of the parasites and ultimately leading to their death. The exact molecular pathways are not fully elucidated, but it is known to interfere with the parasite's ability to replicate and survive in the host.

Pharmacodynamics

Diminazine exhibits a dose-dependent effect on the parasites, leading to a reduction in parasitemia. The drug's effectiveness is enhanced in the early stages of infection, and resistance may develop with prolonged use. The clinical response is monitored through parasitological assessments and symptom resolution, with treatment typically administered in a controlled healthcare setting.

Pharmacokinetics

Diminazine is administered parenterally and is rapidly distributed in the body. It has a moderate volume of distribution and is metabolized in the liver, with renal excretion of its metabolites. The half-life of diminazine varies, generally ranging from 4 to 10 hours, depending on individual patient factors. Therapeutic drug monitoring may be employed to assess plasma concentrations and ensure efficacy while minimizing toxicity.

Pregnancy

Diminazine should only be used during pregnancy if the potential benefit justifies the potential risk to the fetus.

Breast-feeding

It is not known whether diminazine is excreted in human milk. Caution should be exercised when administering to a nursing mother.

Storage

Store in a cool, dry place, protected from light.

Formulations

  • {'name': 'Diminazine Aceturate', 'type': 'Injection', 'strength': '100 mg/mL'}

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.

Molecular reference: Cyanocobalamin

PubChem CID 166596686

Molecular formula: C63H88CoN14O14P

Mechanism of action

Vitamin B12 serves as a cofactor for _methionine synthase_ and _L-methylmalonyl-CoA mutase_ enzymes. Methionine synthase is essential for the synthesis of purines and pyrimidines that form DNA. L-methylmalonyl-CoA mutase converts L-methylmalonyl-CoA to _succinyl-CoA_ in the degradation of propionate, an important reaction required for both fat and protein metabolism. It is a lack of vitamin B12 cofactor in the above reaction and the resulting accumulation of methylmalonyl CoA that is believed to be responsible for the neurological manifestations of B12 deficiency. Succinyl-CoA is also necessary for the synthesis of hemoglobin. In tissues, vitamin B12 is required for the synthesis of _methionine_ from homocysteine. Methionine is required for the formation of S-adenosylmethionine, a methyl donor for nearly 100 substrates, comprised of DNA, RNA, hormones, proteins, as well as lipids. Without vitamin B12, tetrahydrofolate cannot be regenerated from 5-methyltetrahydrofolate, and this can lead to functional folate deficiency,. This reaction is dependent on methylcobalamin (vitamin B12) as a co-factor and is also dependent on folate, in which the methyl group of methyltetrahydrofolate is transferred to homocysteine to form _methionine_ and _tetrahydrofolate_. Vitamin B12 incorporates into circulating folic acid into growing red blood cells; retaining the folate in these cells. A deficiency of vitamin B12 and the interruption of this reaction leads to the development of megaloblastic anemia.

Pharmacodynamics

**General effects** Cyanocobalamin corrects vitamin B12 deficiency and improves the symptoms and laboratory abnormalities associated with pernicious anemia (megaloblastic indices, gastrointestinal lesions, and neurologic damage). This drug aids in growth, cell reproduction, hematopoiesis, nucleoprotein, and myelin synthesis. It also plays an important role in fat metabolism, carbohydrate metabolism, as well as protein synthesis. Cells that undergo rapid division (for example, epithelial cells, bone marrow, and myeloid cells) have a high demand for vitamin B12. **Parenteral cyanocobalamin effects** The parenteral administration of vitamin B12 rapidly and completely reverses the megaloblastic anemia and gastrointestinal symptoms of vitamin B12 deficiency. Rapid parenteral administration of vitamin B12 in deficiency related neurological damage prevents the progression of this condition. **Nasal spray effects** In 24 vitamin B12 deficient patients who were already stabilized on intramuscular (IM) vitamin B12 therapy, single daily doses of intranasal cyanocobalamin for 8 weeks lead to serum vitamin B12 concentrations that were within the target therapeutic range (>200 ng/L).

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

Molecular reference: antipyrine

PubChem CID 2206

Molecular formula: C11H12N2O

Mechanism of action

Antipyrine is thought to act primarily in the CNS, increasing the pain threshold by inhibiting both isoforms of cyclooxygenase, COX-1, COX-2, and COX-3 enzymes involved in prostaglandin (PG) synthesis.

Pharmacodynamics

Antipyrine is an analgesic and antipyretic that has been given by mouth and as ear drops. Antipyrine is often used in testing the effects of other drugs or diseases on drug-metabolizing enzymes in the liver. (From Martindale, The Extra Pharmacopoeia, 30th ed, p29)

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

Molecular reference: diminazine

PubChem CID 2354

Molecular formula: C14H15N7

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.

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The same active ingredient registered across other registries we cover - including different brands.