cefixime reference
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(cefixime · DailyMed)
Registered Kenya · PPB

FIXEM-O TABLETS

CEFIXIME USP & OFLOXACIN USP

CTD 3560 EACH TABLET CONTAINS: CEFIXIME USP 200 MG AND OFLOXACIN USP 200 MG GENERIC/BIOSIMILARS antiinfectives for systemic use INN generic

What it does

Cefixime is an antibiotic used to treat various bacterial infections.

Commonly used for: bacterial infections, urinary tract infections, gonorrhea

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.
CTD 3560
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
CEFIXIME USP & OFLOXACIN USP
Strength
-
Pack size
10 TABLETS PACKED IN A ALU-ALU BLISTER
Therapeutic class
GENERIC/BIOSIMILARS
ATC class (WHO)
J01DD - Third-generation cephalosporins
RxNorm RxCUI
25033
Manufacturer / MAH
Europa Healthcare
Applicant / LTR
BHARAT PARENTERALS LIMITED
Country of origin
FOREIGN

Source: Pharmacy and Poisons Board · fetched 2026-01-28 20:36:57 · updated 2026-07-26 11:27:35

Drug Interactions

9
Check interactions

Pharmacodynamic Warnings

Cefixime appears in TABLE 2: Drugs that cause nephrotoxicity

Severe (1)

Quinolones - decreases absorption

Strontiumispredictedtodecreasetheabsorptionof quinolones.Avoid.oTheoretical

Severe Theoretical

Unknown (8)

Cephalosporins - increases exposure

Leflunomideispredictedtoincreasetheexposureto cephalosporins(cefaclor).oTheoretical

Unknown Theoretical

Cephalosporins - increases exposure

Nitisinone is predicted to increase the exposure to cephalosporins (cefaclor).

Unknown Study

Cephalosporins - increases exposure

Teriflunomide is predicted to increase the exposure to cephalosporins (cefaclor).

Unknown Study

Quinolones - decreases exposure

Lanthanum moderately decreases the exposure to quinolones. Quinolones should be taken 2 hours before or 4 hours after lanthanum.

Unknown Study

Quinolones - increases exposure

Leflunomideispredictedtoincreasetheexposuretoquinolones (ciprofloxacin).oTheoretical

Unknown Theoretical

Quinolones - decreases exposure

Sucralfate decreases the exposure to quinolones. Separate administration by 2 hours.

Unknown Study

Quinolones - decreases exposure

Zinc is predicted to decrease the exposure to quinolones. Separate administration by 2 hours. Rabeprazole → see proton pump inhibitors Rabies immunoglobulin → see immunoglobulins Rabies vaccine

Unknown Study

Quinolones - increases exposure

Teriflunomideispredictedtoincreasetheexposureto quinolones(ciprofloxacin).oTheoretical https://www.facebook.c (Books-Courses-Medic

Unknown Theoretical

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

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

About cefixime

Cefixime is an antibiotic used to treat various bacterial infections.

What it treats

  • bacterial infections
  • urinary tract infections
  • gonorrhea

How it works

Cefixime works by stopping the growth of bacteria, helping the body to fight off the infection.

Who it's for

Cefixime is for people with bacterial infections that can be treated with this type of antibiotic.

Drug class

Cephalosporins

Cautions

  • • Be cautious if taking other medications that can harm the kidneys.

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

About ofloxacin

Ofloxacin is an antibiotic that helps to treat infections caused by bacteria.

What it treats

  • bacterial infections
  • urinary tract infections
  • respiratory infections
  • skin infections

How it works

Ofloxacin works by stopping the growth of bacteria, helping your body to fight off the infection.

Who it's for

Ofloxacin is for adults and children who have bacterial infections that can be treated with this antibiotic.

Drug class

Quinolones

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

Clinical monograph: Cefixime

BNF-referenced

Cefixime is a third-generation cephalosporin antibiotic, effective against a range of Gram-positive and Gram-negative bacterial infections. It works by inhibiting bacterial cell wall synthesis, leading to cell lysis. As a broad-spectrum antibiotic, cefixime is particularly useful in treating infections caused by bacteria that produce beta-lactamase enzymes, which typically confer resistance to other penicillins and cephalosporins.

Indications

  • Bacterial infections due to sensitive Gram-positive and Gram-negative bacteria
  • Surgical prophylaxis
  • Haemophilus influenzae epiglottitis
  • Acute infections
  • Meningitis (emergency treatment)
  • Uncomplicated gonorrhoea
  • Disseminated gonococcal infection

Dosage

Children: In children aged 1 month to 11 years

Adults: For adults, the typical dosage is 1 g every 12 hours for severe infections, or 400 mg for a single dose in cases of uncomplicated gonorrhoea.

Mechanism of action

Cefixime binds to penicillin-binding proteins (PBPs) located in the bacterial cell wall. This binding inhibits the transpeptidase activity essential for peptidoglycan cross-linking, thereby disrupting cell wall synthesis and integrity, which ultimately leads to bacterial cell lysis, especially in rapidly growing bacteria.

Pharmacodynamics

Cefixime exhibits bactericidal activity by preventing the final stages of bacterial cell wall synthesis. It is stable against certain beta-lactamases, making it effective against some resistant bacterial strains. The drug can cause hypersensitivity reactions and is associated with a risk of Clostridium difficile-associated diarrhea. It may also lead to a decrease in prothrombin activity, necessitating caution in susceptible populations.

Pharmacokinetics

Cefixime is well-absorbed after oral administration, with a bioavailability of approximately 40-50%. Peak plasma concentrations occur within 2-6 hours post-dose. It is widely distributed in body tissues and fluids, including urine. The drug is primarily eliminated via the kidneys, with dose adjustments required in patients with renal impairment. Cefixime has a half-life of about 3-4 hours, necessitating multiple doses for sustained therapeutic effect.

Contra-indications

  • Hypersensitivity to cefixime or other cephalosporins
  • Severe renal impairment

Adverse effects

  • Acute kidney injury
  • Arthralgia
  • Drug fever
  • Dyspepsia
  • Dyspnoea
  • Edema
  • Flatulence
  • Genital pruritus
  • Hypereosinophilia
  • Jaundice
  • Serum sickness-like reaction
  • Thrombocytosis

Interactions

  • Probenecid may increase cefixime levels
  • Cephalosporins may interact with anticoagulants and increase bleeding risk
  • Certain antibiotics may have additive effects

Precautions

  • Caution in patients with a history of gastrointestinal disease, particularly colitis
  • Monitor renal function in patients with renal impairment
  • Use with caution in patients on dialysis

Pregnancy

Not known to be harmful.

Breast-feeding

Present in milk in low concentrations; use with caution.

Storage

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

Formulations

  • Oral tablets
  • Injection (intravenous and intramuscular)
BNF 85 (British National Formulary) p.599 BNF for Children 2019-2020 p.352 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: Ofloxacin

BNF-referenced

Ofloxacin is a broad-spectrum fluoroquinolone antibiotic used for the treatment of various bacterial infections. It is effective against both Gram-positive and Gram-negative bacteria, leveraging its bactericidal properties through inhibition of DNA replication. Due to its high affinity for bacterial enzymes, it is preferred for treating infections where resistance to other antibiotics may exist.

Indications

  • Bacterial infections
  • Complicated urinary-tract infections
  • Lower respiratory-tract infections
  • Skin infections
  • Gonorrhoea
  • Pelvic inflammatory disease
  • Prostatitis
  • Acute pyelonephritis

Dosage

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

Adults: 200–400 mg daily for 3 days for uncomplicated urinary-tract infections; for severe or complicated infections, the dose may be increased to 400 mg twice daily for 7–10 days. In cases of renal impairment, the dose should be adjusted based on creatinine clearance.

Mechanism of action

Ofloxacin acts by inhibiting bacterial DNA gyrase and topoisomerase IV, enzymes crucial for DNA replication and transcription. This inhibition prevents normal cell division, leading to cell death. Ofloxacin has a significantly higher affinity for bacterial DNA gyrase compared to mammalian enzymes, making it effective against infectious pathogens.

Pharmacodynamics

As a quinolone antibiotic, ofloxacin demonstrates bactericidal activity, meaning it kills bacteria rather than merely inhibiting their growth. Its mechanism is primarily through the disruption of DNA supercoiling, a vital process for bacterial cell division and viability. The drug's broad-spectrum activity allows it to target a wide variety of bacterial pathogens, enhancing its utility in clinical settings.

Pharmacokinetics

Ofloxacin is well-absorbed after oral administration, with a bioavailability of approximately 98%. It is primarily metabolized in the liver and excreted through the kidneys, necessitating caution in patients with hepatic or renal impairment. The elimination half-life is about 4 to 7 hours, which supports twice-daily dosing for effective therapeutic levels.

Contra-indications

  • Hypersensitivity to ofloxacin or other quinolones
  • History of tendon disorders related to fluoroquinolone use
  • Severe hepatic impairment
  • History of QT interval prolongation
  • Concurrent use of drugs that prolong the QT interval

Adverse effects

  • Nausea
  • Diarrhea
  • Headache
  • Dizziness
  • Tendonitis and tendon rupture
  • QT interval prolongation
  • Photosensitivity
  • Rash
  • Anaphylaxis

Interactions

  • Antacids containing magnesium or aluminum (may reduce absorption)
  • Cationic drugs (e.g., iron salts, sucralfate)
  • Warfarin (may enhance anticoagulant effect)
  • Drugs that prolong the QT interval (e.g., class IA and III antiarrhythmics)

Precautions

  • Use with caution in patients with a history of seizures or CNS disorders
  • Monitor for signs of tendon damage
  • Assess renal function prior to dosing, especially in elderly patients
  • Caution in patients with a history of myasthenia gravis

Pregnancy

Manufacturer advises use only if the benefit outweighs the risk, as systemic quinolones have been associated with risks during pregnancy.

Breast-feeding

Ofloxacin is excreted in breast milk; caution is advised when administering to nursing mothers.

Storage

Store at room temperature, away from moisture and heat. Protect from light.

Formulations

  • 200 mg tablets
  • 400 mg tablets
  • Injectable solution (200 mg in 100 mL)
  • Eye drops (0.3% solution)
BNF 85 (British National Formulary) p.640 BNF for Children 2019-2020 p.723 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: Cefixime

PubChem CID 5362065

Molecular formula: C16H15N5O7S2

Mechanism of action

The bacterial cell wall, which is located at the periphery of Gram-positive bacteria and within the periplasm of Gram-negative bacteria, comprises a glycopeptide polymer synthesized through cross-linking of glycans to peptide stems on alternating saccharides, which is known commonly as peptidoglycan. Cell wall formation, recycling, and remodelling require numerous enzymes, including a family of enzymes with similar active site character despite distinct and sometimes overlapping roles as carboxypeptidases, endopeptidases, transpeptidases, and transglycosylases, known as "penicillin-binding proteins" (PBPs). The number of PBPs differs between bacteria, in which some are considered essential and others redundant. In general, inhibition of one or more essential PBPs results in impaired cell wall homeostasis, loss of cell integrity, and is ultimately bactericidal. Cefixime is a cephalosporin and cephalosporins work by using their beta-lactam rings to inhibit bacterial cell wall synthesis by binding to the penicillin-binding proteins transpeptidases on bacteria. The inhibition of synthesis of the bacteria cell wall will cause lysis, particularly in fast growing organisms such as bacteria. Specifically, cephalosporins inhibit penicillin-sensitive enzymes responsible for the final 3D structure of the bacterial cell wall which in turn inhibit bacterial cell wall peptidoglycan synthesis.

Pharmacodynamics

Cefixime, a broad-spectrum antibiotic, is an orally-active third-generation semisynthetic cephalosporin. Like other cephalosporins, the antibacterial action of cefixime results from inhibition of cell wall synthesis. Also like other cephalosporins, cefixime is stable when in the presence of certain beta-lactamase enzymes, which means certain organisms resistant to penicillins and some cephalosporins due to the presence of beta-lactamases could be susceptible to cefixime. Use of cefixime can result in hypersensitivity reactions including anaphylactic/anaphylactoid reactions and _Clostridium difficile_-associated diarrhea (CDAD); it may also be associated with a fall in prothrombin activity. Cefixime doses should be adjusted for patients that have renal impairment and patients undergoing continuous ambulatory peritoneal dialysis (CAPD) and hemodialysis (HD), while patients on dialysis should be monitored while taking cefixime.

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

Molecular reference: Ofloxacin

PubChem CID 4583

Molecular formula: C18H20FN3O4

Mechanism of action

Ofloxacin acts on DNA gyrase and toposiomerase IV, enzymes which, like human topoisomerase, prevents the excessive supercoiling of DNA during replication or transcription. By inhibiting their function, the drug thereby inhibits normal cell division. Quinolone(s) (QNs) is widely used in infection therapy due to its good antimicrobial characteristics. However, QNs-induced arthropathy of immature animals has led to restrictions on the therapeutic use of these antimicrobial agents. The exact mechanism(s) of QNs-induced chondrotoxicity remain unknown. In the present study, .../the authors/ investigated the possible mechanism of ofloxacin (one typical QNs)-induced injuries of chondrocytes. Juvenile rabbit joint chondrocytes cultured in alginate microspheres were incubated with ofloxacin at concentrations of 0, 2, 5, 10, 20, and 40 microg/mL for up to 96 hr. Concentration of 10 microg/mL ofloxacin induced apoptosis of chondrocyte with visible apoptotic signs, including degradation of poly(ADP-ribose) polymerase, caspase-3 activation, and DNA ladder formation. Furthermore, extracellular signal-regulated kinase 1/2 (phospho-ERK1/2) and growth factor receptor-bound protein 2 (Grb2) were significantly reduced, and similar changes were also observed in the beta(1)-integrin receptor as assessed by immunoblotting. However, the mRNA level of beta(1)-integrin obtained from reverse transcription-polymerase chain reaction remained unchanged. Results of beta(1)-integrin immunoprecipitation have also shown that beta(1)-integrin did not interact with activated intracellular signaling proteins. In addition, ofloxacin did not induce apoptosis and decrease beta(1)-integrin expression in chondrocytes supplemented with Mg(2+), and the ofloxacin-induced apoptosis was caspase-8-dependent, inhibition of which did not affect the expression mode of phospho-ERK1/2 and beta(1)-integrin. Our results demonstrate that ofloxacin affects beta(1)-integrin receptor functions and the ERK mitogen-activated protein kinase signaling pathway, causing caspase-8-dependent apoptosis after exposure of 48 hr. Quinolones are widely used in infection therapy due to their good antimicrobial characteristics. However, there potential joint chondrotoxicity on immature animals has stood in the way of the therapeutic application of these agents, the exact mechanism of which is still unclear. This study was undertaken to investigate the role of oxidative damage in ofloxacin (one typical quinolones)-induced arthropathy. Chondrocytes from juvenile rabbit joints were incubated with ofloxacin at concentrations of 0, 5, 10, 20, 40 and 80 ug/mL, respectively. The extent of oxidative damage was assessed by measuring the reactive oxygen species level, activities of antioxidant enzymes, and oxidative damage to some macromolecules. It was observed that ofloxacin induced a concentration-dependent increase in intracellular reactive oxygen species production, which may be an early mediator of ofloxacin cytotoxicity. Similarly, ofloxacin resulted in a significant lipid peroxidation, revealed by a concentration-dependent increase in the level of thiobarbituric acid reactive substances. At the same time, ofloxacin induced DNA damage in a concentration-dependent manner for 24 hr measured by comet assay, which may be a cause for overproduction of reactive oxygen species. Furthermore, antioxidant enzyme activities, such as glutathione peroxidase (GPx), catalase and superoxide dismutase (SOD), were rapidly decreased after treatment with ofloxacin. In addition, SOD decline and reactive oxygen species production were strongly inhibited, and the loss in cell viability was partly abated by additional glutathione (GSH), N-acetylcysteine (NAC) and dithiothreitol (DTT). In conclusion, these results clearly demonstrated that ofloxacin could induce oxidative stress, lipid peroxidation and DNA oxidative damage to chondrocytes. Ofloxacin is a quinolone antimicrobial agent. The mechanism of action of ofloxacin and o

Pharmacodynamics

Ofloxacin is a quinolone/fluoroquinolone antibiotic. Ofloxacin is bactericidal and its mode of action depends on blocking of bacterial DNA replication by binding itself to an enzyme called DNA gyrase, which allows the untwisting required to replicate one DNA double helix into two. Notably the drug has 100 times higher affinity for bacterial DNA gyrase than for mammalian. Ofloxacin is a broad-spectrum antibiotic that is active against both Gram-positive and Gram-negative bacteria.

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.