sulfadiazine reference
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(sulfadiazine · DailyMed)
Registered Tanzania · TMDA

Diseptoprim

Sulfadiazine 1 gm,Trimethoprim 200 mg

TAN 05,156 J03A COS Bolus INN generic

What it does

Sulfadiazine is an antibiotic used to treat infections caused by bacteria.

Commonly used for: bacterial infections, toxoplasmosis

Read more in plain English ↓

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

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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.

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Registration & product details

Registration no.
TAN 05,156 J03A COS
Registration date
2025-06-04
Expiry date
2030-06-03
Status
Registered/Compliant
Active ingredient
Sulfadiazine 1 gm,Trimethoprim 200 mg
Dosage form
Bolus
Strength
-
Pack size
-
Therapeutic class
-
Manufacturer / MAH
Cosmos
Applicant / LTR
Cosmos Limited
Country of origin
KENYA
Manufacturer location
Rangwe Rd, Nairobi, Kenya

Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:51:49 · updated 2026-09-17 03:00:44

Drug Interactions

17
Check interactions

Pharmacodynamic Warnings

Trimethoprim appears in TABLE 2: Drugs that cause nephrotoxicity

Trimethoprim appears in TABLE 16: Drugs that increase serum potassium

Trimethoprim appears in TABLE 18: Drugs that cause hyponatraemia

Moderate (6)

Antiepileptics - increases concentration

Sulfadiazine is predicted to increase the concentration of antiepileptics (fosphenytoin). Monitor and adjust dose.

Moderate Study

Dopamine Receptor Agonists - increases exposure

Trimethoprim is predicted to increase the exposure to dopamine receptor agonists (pramipexole). Adjust dose.

Moderate Study

Fosphenytoin - increases concentration

Sulfadiazine is predicted to increase the concentration of antiepileptics (fosphenytoin). Monitor and adjust dose.

Moderate Study

Phenytoin - increases concentration

Sulfadiazine increases the concentration of antiepileptics (phenytoin). Monitor and adjust dose.

Moderate Study

Pramipexole - increases exposure

Trimethoprim is predicted to increase the exposure to pramipexole. Adjust dose.

Moderate Study

Treprostinil - increases exposure

Trimethoprim is predicted to increase the exposure to treprostinil. Adjust dose. Theoretical Tretinoin → see retinoids Triamcinolone → see corticosteroids Triamterene → see potassium-sparing diuretics

Moderate Theoretical

Unknown (11)

Antiepileptics - increases concentration

Trimethoprim increases the concentration of antiepileptics (fosphenytoin, phenytoin).

Unknown Study

Azathioprine In Renal Transplant Patients - increases risk of haematological toxicity

Trimethoprim might increase the risk of haematological toxicity when given with azathioprine in renal transplant patients. r Anecdotal Azelastine → see antihistamines, non-sedating Azilsartan → see an

Unknown Anecdotal

Digoxin - increases concentration

Trimethoprim increases the concentration of digoxin.

Unknown Study

Fosphenytoin - increases concentration

Trimethoprim increases the concentration of antiepileptics (fosphenytoin, phenytoin).

Unknown Study

Lamivudine - increases exposure

Trimethoprim slightly increases the exposure to lamivudine. NSAIDs → see TABLE 18 p. 1521 (hyponatraemia), TABLE 2 p. 1517 (nephrotoxicity), TABLE 16 p. 1521 (increased serum potassium), TABLE 4 p. 15

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 Tanzania Medicines and Medical Devices Authority (Tanzania). Always consult a qualified healthcare professional before using any medication.

About sulfadiazine

Sulfadiazine is an antibiotic used to treat infections caused by bacteria.

What it treats

  • bacterial infections
  • toxoplasmosis

How it works

It works by stopping the growth of bacteria in the body.

Who it's for

It is for people with bacterial infections, including those with weakened immune systems.

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

About trimethoprim

Trimethoprim is an antibiotic used to treat infections, primarily those of the urinary tract.

What it treats

  • urinary tract infections
  • bladder infections
  • kidney infections

How it works

It works by stopping the growth of bacteria that cause infections.

Who it's for

It is for people suffering from bacterial infections, especially in the urinary system.

Cautions

  • • Be cautious if you are taking medications that can harm the kidneys.
  • • Avoid if you are on drugs that raise potassium levels in the blood.
  • • Use with care if you are taking medications that can lower sodium levels.

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

Clinical monograph: Sulfadiazine

BNF-referenced

Sulfadiazine is a short-acting sulfonamide antibiotic with bacteriostatic activity against a wide spectrum of bacteria. It works primarily by inhibiting the bacterial enzyme dihydropteroate synthetase, which is necessary for folic acid synthesis. Its use has declined due to increasing resistance, but it remains relevant in specific indications such as toxoplasmosis in pregnancy.

Indications

  • Bacterial infections
  • Toxoplasmosis in pregnancy (in combination with pyrimethamine and folinic acid)
  • Congenital toxoplasmosis (in combination with pyrimethamine and folinic acid)

Dosage

Children: For children aged 12–17 years, the recommended dose is 1 g three times a day until delivery for toxoplasmosis in pregnancy. For other specific conditions, refer to the BNF for Children for detailed dosing guidelines.

Adults: For adults, the typical dosing for bacterial infections can vary, and it is essential to refer to the BNF for specific recommendations based on the condition being treated. Generally, dosage adjustments may be necessary in renal impairment.

Mechanism of action

Sulfadiazine acts as a competitive inhibitor of the bacterial enzyme dihydropteroate synthetase, blocking the conversion of para-aminobenzoic acid (PABA) to folic acid. This inhibition is crucial for bacterial growth and reproduction, as folic acid is vital for nucleic acid synthesis.

Pharmacodynamics

Sulfadiazine is a synthetic bacteriostatic antibiotic effective against many gram-positive and some gram-negative organisms. It inhibits bacterial multiplication by interfering with folic acid metabolism. Resistance to sulfadiazine usually implies resistance to all sulfonamides, as they share similar mechanisms of action.

Pharmacokinetics

Sulfadiazine is well absorbed when administered orally, with high tissue distribution. It achieves significant concentrations in various bodily fluids, including pleural and synovial fluids. While it is effective, its absorption can be affected by the presence of pus, which can inhibit its antibacterial action. Renal function can influence its clearance, necessitating dose adjustments in cases of impaired renal function.

Contra-indications

  • Acute porphyrias

Adverse effects

  • Agranulocytosis
  • Aplastic anaemia
  • Haemolytic anaemia
  • Decreased appetite
  • Ataxia
  • Back pain
  • Blood disorders
  • Cough
  • Crystaluria
  • Cyanosis
  • Depression
  • Diarrhoea
  • Dizziness
  • Drowsiness
  • Dyspnoea
  • Eosinophilia
  • Erythema nodosum
  • Fatigue
  • Fever
  • Haematuria
  • Hallucination
  • Headache
  • Hepatic disorders
  • Hypoglycaemia
  • Neutropenia
  • Oral disorders
  • Pancreatitis
  • Photosensitivity reaction
  • Skin reactions
  • Thrombocytopenia
  • Tinnitus
  • Vertigo
  • Vomiting

Interactions

  • Sulfadiazine + antiepileptics: Moderate (increases concentration)
  • Sulfadiazine + fosphenytoin: Moderate (increases concentration)
  • Sulfadiazine + phenytoin: Moderate (increases concentration)

Precautions

  • Caution in asthma
  • Caution in blood disorders
  • Caution in elderly patients
  • Monitor blood counts on prolonged treatment
  • Plasma concentration monitoring may be required in moderate to severe renal impairment

Pregnancy

Risk of neonatal haemolysis and methaemoglobinaemia in the third trimester; fear of increased risk of kernicterus in neonates appears to be unfounded.

Breast-feeding

Small risk of kernicterus in jaundiced infants and of haemolysis in G6PD-deficient infants.

Storage

Store in a cool, dry place away from light.

Formulations

  • Solution for infusion
  • Oral suspension
BNF 85 (British National Formulary) p.642 BNF for Children 2019-2020 p.385 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: Trimethoprim

BNF-referenced

Trimethoprim is an antimicrobial agent primarily used in the treatment of bacterial infections. It functions as a bacteriostatic agent by inhibiting the enzyme dihydrofolate reductase, which is crucial for the synthesis of tetrahydrofolic acid, an essential component for bacterial nucleic acid and protein production. It is often prescribed in combination with sulfamethoxazole to enhance its bactericidal effects.

Indications

  • Bacterial infections
  • Urinary tract infections
  • Respiratory tract infections
  • Prophylaxis of recurrent urinary tract infections

Dosage

Children: For children aged 6 weeks to 5 months: 4 mg/kg twice daily (max. 200 mg). For children 6 months to 5 years: 4 mg/kg twice daily (max. 200 mg). For children 6–11 years: 4 mg/kg twice daily (max. 200 mg). For children

Adults: 200 mg twice daily.

Mechanism of action

Trimethoprim is a reversible inhibitor of dihydrofolate reductase, an enzyme that catalyzes the formation of tetrahydrofolic acid from dihydrofolic acid. By inhibiting this enzyme, trimethoprim disrupts the biosynthesis of nucleic acids and proteins in bacteria, leading to their growth inhibition. The drug has a significantly higher affinity for bacterial dihydrofolate reductase compared to the mammalian enzyme, ensuring selective antibacterial activity.

Pharmacodynamics

Trimethoprim exerts its antimicrobial effects by disrupting bacterial nucleic acid synthesis. It is effective against various gram-negative bacteria and some coagulase-negative Staphylococcus species. Resistance can develop through mechanisms such as alterations to the bacterial cell wall or overproduction of the target enzyme. Monitoring for potential blood disorders is important during therapy, as rare adverse effects can occur.

Pharmacokinetics

Trimethoprim is well absorbed from the gastrointestinal tract and reaches peak plasma concentrations within 1-4 hours post-administration. It has a volume of distribution that suggests extensive tissue penetration, including into the lungs and kidneys, and is primarily excreted unchanged in the urine. The elimination half-life is approximately 8-10 hours, and dosing adjustments may be necessary in cases of renal impairment.

Contra-indications

  • Severe renal impairment
  • Known hypersensitivity to trimethoprim or any component of the formulation

Adverse effects

  • Diarrhoea
  • Nausea
  • Headache
  • Dizziness
  • Fatigue
  • Skin reactions
  • Vomiting
  • Anxiety
  • Agranulocytosis
  • Eosinophilia
  • Photosensitivity reactions
  • Thrombocytopenia
  • Leukopenia
  • Pseudomembranous colitis

Interactions

  • Increases exposure to pramipexole
  • Increases exposure to treprostinil
  • Increases exposure to dopaminergic receptor agonists
  • Increases concentration of antiepileptics
  • Increases concentration of fosphenytoin
  • Increases concentration of phenytoin
  • Increases risk of haematological toxicity with azathioprine in renal transplant patients
  • Increases concentration of digoxin
  • Increases exposure to repaglinide

Precautions

  • Caution in patients with renal impairment
  • Caution in elderly patients (75 years and over)
  • Monitor for signs of blood disorders such as sore throat, fever, and pallor
  • Consider local antimicrobial susceptibility patterns before use

Pregnancy

Manufacturer advises avoidance due to potential fetal developmental toxicity observed in animal studies.

Breast-feeding

Manufacturer advises avoidance as trimethoprim is present in milk in animal studies.

Storage

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

Formulations

  • Tablets
  • Oral suspension
  • Injection solution
BNF 85 (British National Formulary) p.653 BNF for Children 2019-2020 p.395 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.

Molecular reference: Sulfadiazine

PubChem CID 5215

Molecular formula: C10H10N4O2S

Mechanism of action

Sulfadiazine is a competitive inhibitor of the bacterial enzyme dihydropteroate synthetase. This enzyme is needed for the proper processing of para-aminobenzoic acid (PABA) which is essential for folic acid synthesis. The inhibited reaction is necessary in these organisms for the synthesis of folic acid.

Pharmacodynamics

Sulfadiazine is a sulfonamide antibiotic. The sulfonamides are synthetic bacteriostatic antibiotics with a wide spectrum against most gram-positive and many gram-negative organisms. However, many strains of an individual species may be resistant. Sulfonamides inhibit multiplication of bacteria by acting as competitive inhibitors of <i>p</i>-aminobenzoic acid in the folic acid metabolism cycle. Bacterial sensitivity is the same for the various sulfonamides, and resistance to one sulfonamide indicates resistance to all. Most sulfonamides are readily absorbed orally. However, parenteral administration is difficult, since the soluble sulfonamide salts are highly alkaline and irritating to the tissues. The sulfonamides are widely distributed throughout all tissues. High levels are achieved in pleural, peritoneal, synovial, and ocular fluids. Although these drugs are no longer used to treat meningitis, CSF levels are high in meningeal infections. Their antibacterial action is inhibited by pus.

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

Molecular reference: Trimethoprim

PubChem CID 5578

Molecular formula: C14H18N4O3

Mechanism of action

Trimethoprim is a reversible inhibitor of dihydrofolate reductase, one of the principal enzymes catalyzing the formation of tetrahydrofolic acid (THF) from dihydrofolic acid (DHF). Tetrahydrofolic acid is necessary for the biosynthesis of bacterial nucleic acids and proteins and ultimately for continued bacterial survival - inhibiting its synthesis, then, results in bactericidal activity. Trimethoprim binds with a much stronger affinity to bacterial dihydrofolate reductase as compared to its mammalian counterpart, allowing trimethoprim to selectively interfere with bacterial biosynthetic processes. Trimethoprim is often given in combination with sulfamethoxazole, which inhibits the preceding step in bacterial protein synthesis - given together, sulfamethoxazole and trimethoprim inhibit two consecutive steps in the biosynthesis of bacterial nucleic acids and proteins. As a monotherapy trimethoprim is considered bacteriostatic, but in combination with sulfamethoxazole is thought to exert bactericidal activity. Trimethoprim is a bacteriostatic lipophilic weak base structurally related to pyrimethamine. It binds to and reversibly inhibits the bacterial enzyme dihydrofolate reductase, selectively blocking conversion of dihydrofolic acid to its functional form, tetrahydrofolic acid. This depletes folate, an essential cofactor in the biosynthesis of nucleic acids, resulting in interference with bacterial nucleic acid and protein production. Bacterial dihydrofolate reductase is approximately 50,000 to 60,000 times more tightly bound by trimethoprim than is the corresponding mammalian enzyme. To determine the incidence & severity of hyperkalemia during trimethoprim therapy, 30 consecutive patients with acquired immunodeficiency syndrome receiving high-dose (20 mg/kg/day) trimethoprim were studied; in addition, the mechanism of trimethoprim-induced hyperkalemia was investigated in rats. Trimethoprim increased serum potassium concn by 0.6 mmol/l despite normal adrenocortical function & glomerular filtration rate. Serum potassium levels >5 mmol/l were observed during trimethoprim treatment in 15 of 30 patients. In rats, iv trimethoprim inhibited renal potassium excretion by 40% & increased sodium excretion by 46%. It was concluded that trimethoprim blocks apical membrane sodium channels in the mammalian distal nephron. As a consequence, the transepithelial voltage is reduced & potassium secretion is inhibited. Decreased renal potassium excretion secondary to these direct effects on kidney tubules leads to hyperkalemia in a substantial number of patients being treated with trimethoprim-containing drugs.

Pharmacodynamics

Trimethoprim exerts its antimicrobial effects by inhibiting an essential step in the synthesis of bacterial nucleic acids and proteins. It has shown activity against several species of gram-negative bacteria, as well as coagulase-negative _Staphylococcus_ species. Resistance to trimethoprim may arise via a variety of mechanisms, including alterations to the bacterial cell wall, overproduction of dihydrofolate reductase, or production of resistant dihydrofolate reductase. Rarely, trimethoprim can precipitate the development of blood disorders (e.g. thrombocytopenia, leukopenia, etc.) which may be preceded by symptoms such as sore throat, fever, pallor, and or purpura - patients should be monitored closely for the development of these symptoms throught the course of therapy. As antimicrobial susceptibility patterns are geographically distinct, local antibiograms should be consulted to ensure adequate coverage of relevant pathogens prior to use.

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

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