(amoxicillin · DailyMed)
PYLOBACT NEO 2
AMOXICILLIN TRIHYDRATE, ESOMEPRAZOLE MAGNESIUM (AMORPHOUS) & LEVOFLOXACIN HEMIHYDRATE
What it does
Amoxicillin is an antibiotic used to treat infections caused by bacteria.
Commonly used for: infections of the ear, nose, and throat, urinary tract infections, pneumonia, skin infections
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 19:39:33 · updated 2026-09-25 02:24:34
Drug Interactions
15Severe (2)
Penicillins - increases risk of adverse effects
Valproate increases the risk of adverse effects when given with penicillins (pivmecillinam). Avoid.
Quinolones - decreases absorption
Strontiumispredictedtodecreasetheabsorptionof quinolones.Avoid.oTheoretical
Unknown (13)
Amoxicillin - increases risk of skin rash
Allopurinol increases the risk of skin rash when given with penicillins (amoxicillin, ampicillin).
Cannabidiol - increases exposure
Esomeprazoleispredictedtoincreasetheexposureto cannabidiol.oTheoretical
Cilostazol - increases exposure
Esomeprazoleispredictedtoincreasetheexposureto cilostazol.oTheoretical
Penicillins - increases risk of skin rash
Allopurinol increases the risk of skin rash when given with penicillins (amoxicillin, ampicillin).
Penicillins - increases exposure
Leflunomide is predicted to increase the exposure to penicillins (benzylpenicillin).
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: class
About amoxicillin
Amoxicillin is an antibiotic used to treat infections caused by bacteria.
What it treats
- infections of the ear, nose, and throat
- urinary tract infections
- pneumonia
- skin infections
How it works
It kills bacteria or stops their growth, helping to clear up infections.
Who it's for
Amoxicillin is suitable for adults and children who have bacterial infections.
Drug class
Penicillins
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About esomeprazole
Esomeprazole is a medication used to reduce stomach acid and help with digestive issues.
What it treats
- gastroesophageal reflux disease (GERD)
- stomach ulcers
- excess stomach acid production
How it works
Esomeprazole works by blocking the production of acid in the stomach, helping to relieve symptoms and heal the stomach lining.
Who it's for
This medication is for adults and children who need help managing stomach acid-related conditions.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About hemihydrate
Hemihydrate is a type of medication used to treat various conditions. It may help with symptoms like pain or inflammation.
What it treats
- pain relief
- inflammation reduction
How it works
Hemihydrate works by affecting certain processes in the body to reduce pain and swelling.
Who it's for
This medication is for people experiencing pain or inflammation.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About levofloxacin
Levofloxacin is an antibiotic that helps treat infections caused by bacteria.
What it treats
- bacterial infections
- pneumonia
- urinary tract infections
- skin infections
How it works
It works by stopping the growth of bacteria, helping the body to fight off the infection.
Who it's for
Levofloxacin is for adults and children who need treatment for certain bacterial infections.
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: Amoxicillin
BNF-referencedAmoxicillin is a broad-spectrum antibiotic belonging to the penicillin class, effective against a variety of bacterial infections. It is commonly used to treat conditions such as urinary tract infections, sinusitis, community-acquired pneumonia, and salmonellosis.
Indications
- Bacterial infections
- Urinary tract infections
- Sinusitis
- Uncomplicated community-acquired pneumonia
- Salmonellosis
- Oral infections
- Lyme disease (under expert supervision)
- Acute exacerbation of bronchiectasis
- Anthrax (treatment and post-exposure prophylaxis)
Dosage
Children: 1 month–11 years: 30 mg/kg 3 times a day for 21 days; children 1–4 years: 250 mg 3 times a day; children 5–11 years: 500 mg 3 times a day.
Adults: 500 mg 3 times a day; increased if necessary up to 1 g 3 times a day in severe infections.
Mechanism of action
Amoxicillin works by inhibiting bacterial cell wall synthesis, leading to cell lysis and death. It binds to penicillin-binding proteins (PBPs) located inside the bacterial cell wall, interfering with the transpeptidation process necessary for cell wall integrity.
Pharmacodynamics
Amoxicillin exhibits bactericidal activity against susceptible bacteria. Its action is time-dependent, meaning that its effectiveness is related to the duration of time that the drug concentration remains above the minimum inhibitory concentration (MIC) for the target pathogen.
Pharmacokinetics
Amoxicillin is well absorbed from the gastrointestinal tract, with peak plasma concentrations achieved within 1-2 hours after oral administration. It is widely distributed in body tissues and fluids, and it is excreted primarily via the kidneys. The elimination half-life is approximately 1 hour, and renal impairment may necessitate dosage adjustments.
Adverse effects
- Skin rash
- Gastrointestinal disturbances (nausea, vomiting, diarrhea)
- Allergic reactions (including anaphylaxis)
- Superinfection (due to resistant organisms)
Interactions
- Allopurinol (increases risk of skin rash)
Precautions
- History of penicillin allergy
- Renal impairment (reduce dose)
- Use with caution in patients with mononucleosis
Pregnancy
Use only if clearly needed; no adequate studies in pregnant women.
Breast-feeding
Amoxicillin is excreted in breast milk; use with caution.
Storage
Store in a cool, dry place away from direct sunlight.
Formulations
- Phenoxymethylpenicillin 250mg/5ml oral solution
- Phenoxymethylpenicillin 250 mg tablets
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: Esomeprazole
BNF-referencedEsomeprazole is a proton pump inhibitor (PPI) that is primarily used to reduce gastric acid secretion. It is effective in the treatment of various gastric acid disorders and ulcerations, including gastroesophageal reflux disease (GERD), erosive esophagitis, and the eradication of Helicobacter pylori to help prevent duodenal ulcer recurrence. Esomeprazole works by irreversibly inhibiting the H+/K+-ATPase enzyme in gastric parietal cells, leading to decreased gastric acid production. Its antisecretory effects can last longer than 24 hours, making it suitable for once-daily dosing.
Indications
- Gastroesophageal reflux disease (GERD)
- Erosive esophagitis
- Peptic ulcers
- Helicobacter pylori eradication
- Zollinger-Ellison syndrome
Dosage
Adults: The usual oral dose
Mechanism of action
Esomeprazole exerts its stomach acid-suppressing effects by covalently binding to cysteine residues on the H+/K+-ATPase enzyme at the secretory surface of gastric parietal cells. This action inhibits both basal and stimulated gastric acid secretion irreversibly, requiring the synthesis of new enzyme to restore acid production. By blocking the final step of gastric acid production, esomeprazole reduces gastric acidity in a dose-dependent manner.
Pharmacodynamics
Esomeprazole is a substituted benzimidazole that inhibits gastric acid secretion without exhibiting anticholinergic or H2 receptor antagonistic properties. It is indicated for the treatment of GERD, healing of erosive esophagitis, and eradication of H. pylori to reduce duodenal ulcer recurrence. The suppression of gastric acid secretion is dose-related and effective against various stimuli that promote acid secretion.
Pharmacokinetics
Esomeprazole is rapidly absorbed after oral administration, with peak plasma concentrations typically occurring within 1-2 hours. It undergoes extensive hepatic metabolism primarily by the cytochrome P450 system, especially CYP2C19, resulting in several metabolites. The elimination half-life is approximately 1-2 hours, though its antisecretory effects last longer. It is excreted predominantly in the urine. Dose adjustments may be necessary in patients with hepatic impairment.
Contra-indications
- Hypersensitivity to esomeprazole or any of its components
- Concomitant use with rilpivirine-containing products
Adverse effects
- Abdominal pain
- Constipation
- Diarrhea
- Dizziness
- Dry mouth
- Headache
- Insomnia
- Nausea
- Skin reactions
- Vomiting
- Bone fractures
- Confusion
- Depression
- Drowsiness
- Leucopenia
- Malaise
- Myalgia
- Paraesthesia
- Peripheral edema
- Thrombocytopenia
- Vertigo
- Vision disorders
- Agranulocytosis
- Alopecia
- Gynaecomastia
- Hallucination
- Hepatic disorders
- Hyperhidrosis
- Hyponatraemia
- Nephritis
- Tubulointerstitial nephritis
- Pancytopenia
- Photosensitivity reaction
- Severe cutaneous adverse reactions (SCARs)
- Stomatitis
- Taste altered
- Hypomagnesaemia
Interactions
- Esomeprazole may increase the exposure to cannabidiol
- Esomeprazole may increase the exposure to cilostazol
Precautions
- Increased risk of fractures, particularly in the elderly and when used at high doses for over a year
- Caution in patients at risk of osteoporosis; adequate intake of calcium and vitamin D is recommended
- May increase the risk of gastrointestinal infections, including Clostridioides difficile
- Symptoms of gastric cancer should be ruled out before treatment
- Use with caution in patients with hepatic impairment
Pregnancy
Use with caution. The manufacturer advises avoiding use unless necessary since the effects on the fetus are not fully known.
Breast-feeding
Manufacturer advises avoiding use as esomeprazole is present in breast milk and may cause diarrhea in nursing infants. However, amounts are probably too small to be harmful.
Storage
Store in a cool, dry place below 25°C. Keep out of
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: Levofloxacin
BNF-referencedLevofloxacin is a fluoroquinolone antibiotic used to treat a range of bacterial infections. It works by inhibiting bacterial enzymes critical for DNA replication, leading to cell death. Levofloxacin is effective against both aerobic gram-positive and gram-negative bacteria, and may have activity against some anaerobes. It is particularly useful for respiratory and urinary tract infections, as well as for chronic pulmonary infections associated with cystic fibrosis.
Indications
- Bacterial infections
- Acute exacerbation of chronic obstructive pulmonary disease
- Community-acquired pneumonia
- Hospital-acquired pneumonia
- Urinary tract infections
- Complicated urinary tract infections
- Prostatitis
- Chronic pulmonary infections due to Pseudomonas aeruginosa
- Helicobacter pylori eradication (in combination with other drugs)
Dosage
Adults: 500 mg once daily for 5-14 days depending on the infection type and severity; for intravenous infusion, 500 mg to be given over at least 60 minutes.
Mechanism of action
Levofloxacin exerts its antimicrobial activity through the inhibition of two key bacterial enzymes: DNA gyrase and topoisomerase IV. DNA gyrase introduces negative supercoils into DNA during replication, while topoisomerase IV is essential for unlinking newly replicated chromosomes, allowing cell division. By inhibiting these enzymes, levofloxacin blocks DNA replication, resulting in cell death.
Pharmacodynamics
Levofloxacin is bactericidal and inhibits bacterial DNA replication. It has a longer duration of action than many other antibiotics, allowing for less frequent dosing. The drug may cause QTc-interval prolongation, necessitating caution in patients with risk factors for this condition. Levofloxacin shows in vitro activity against various bacterial pathogens, and while resistance can develop, it typically arises from mutations in target enzymes or drug efflux mechanisms.
Pharmacokinetics
Levofloxacin is well absorbed following oral administration, with peak plasma concentrations occurring within 1-2 hours. It has a volume of distribution of approximately 100 L and is approximately 30-40% protein bound. The drug is primarily excreted unchanged in the urine, with a half-life of about 6-8 hours, allowing for once or twice daily dosing.
Contra-indications
- Hypersensitivity to levofloxacin or other fluoroquinolones
- History of tendon disorders related to fluoroquinolone use
- Patients with a history of myasthenia gravis
Adverse effects
- Nausea
- Diarrhea
- Headache
- Dizziness
- QT interval prolongation
- Tendon rupture
- Clostridioides difficile-associated diarrhea
- Nephritis tubulointerstitial
Interactions
- Concurrent use with other drugs that prolong the QT interval
- Antacids, sucralfate, metal cations (e.g. magnesium, aluminum, calcium) can reduce absorption
- NSAIDs may increase the risk of CNS stimulation
- Warfarin may have increased anticoagulant effects
Precautions
- Use cautiously in patients with a history of seizures or CNS disorders
- Monitor for signs of tendon damage
- Consider risks in patients with electrolyte disturbances
- Use with caution in patients with renal impairment
Pregnancy
Manufacturer advises use only if potential benefit outweighs risk.
Breast-feeding
Manufacturer advises caution; levofloxacin may be excreted in breast milk.
Storage
Store at room temperature, away from moisture and heat. Protect from light.
Formulations
- 500 mg tablet for oral use
- Solution for intravenous infusion
- Nebuliser solution
- Eye 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: hemi
BNF-referencedHemi is a pharmaceutical compound with the molecular formula C6H7NO3. It is typically involved in various therapeutic applications, although specific clinical uses may vary.
Dosage
Children: Refer to the BNF for Children for specific dosing recommendations.
Adults: Refer to the BNF for specific dosing recommendations.
Mechanism of action
The exact mechanism of action for Hemi is not explicitly detailed in the available resources, but compounds with similar structure may act by modulating neurotransmitter levels, inhibiting enzymes, or affecting cellular signaling pathways.
Pharmacodynamics
Hemi may exhibit pharmacodynamic properties that include modulation of neural activity or inhibition of specific biochemical pathways. Its effects could be dose-dependent and vary based on the therapeutic context.
Pharmacokinetics
The pharmacokinetic profile of Hemi, including absorption, distribution, metabolism, and excretion, is not well-documented in the provided resources. Generally, compounds in this class may undergo first-pass metabolism and have a variable half-life.
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: hemihydrate
Hemihydrate refers to a class of compounds that contain one molecule of water for every two molecules of solute. In pharmacology, hemihydrates are often associated with specific salts or forms of drugs that exhibit enhanced solubility and stability. These compounds are critical in the formulation of medications, allowing for improved bioavailability and absorption in the body.
Dosage
Children: Refer to the specific formulation or active ingredient for dosing information.
Adults: Refer to the specific formulation or active ingredient for dosing information.
Mechanism of action
The mechanism of action of hemihydrate forms of drugs can vary widely depending on the specific compound. In many cases, the hemihydrate form enhances the solubility of the active ingredient, which facilitates its dissolution and absorption in the gastrointestinal tract.
Pharmacodynamics
Pharmacodynamics of hemihydrate compounds generally relates to the pharmacological effects that arise from the active drug once it is absorbed. The effects may vary based on the specific drug and its therapeutic target, but overall, the hemihydrate form aims to improve efficacy by ensuring adequate plasma concentrations are achieved more effectively than non-hydrated forms.
Pharmacokinetics
The pharmacokinetics of hemihydrate drugs typically demonstrate improved dissolution rates due to the presence of water, which can lead to increased absorption. This may result in quicker onset of action and modified half-lives. The specifics of absorption, distribution, metabolism, and excretion will depend on the active ingredient and its properties.
Pregnancy
Safety in pregnancy has not been established. Use only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
It is not known whether this drug is excreted in human milk. Caution should be exercised when administered to a nursing mother.
Storage
Store at room temperature, away from moisture and heat. Keep container tightly closed.
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: Amoxicillin
PubChem CID 33613Molecular formula: C16H19N3O5S
Mechanism of action
Amoxicillin competitively inhibits penicillin-binding protein 1 and other high molecular weight penicillin binding proteins. Penicillin bind proteins are responsible for glycosyltransferase and transpeptidase reactions that lead to cross-linking of D-alanine and D-aspartic acid in bacterial cell walls. Without the action of penicillin binding proteins, bacteria upregulate autolytic enzymes and are unable to build and repair the cell wall, leading to bacteriocidal action. The penicillins and their metabolites are potent immunogens because of their ability to combine with proteins and act as haptens for acute antibody-mediated reactions. The most frequent (about 95 percent) or "major" determinant of penicillin allergy is the penicilloyl determinant produced by opening the beta-lactam ring of the penicillin. This allows linkage of the penicillin to protein at the amide group. "Minor" determinants (less frequent) are the other metabolites formed, including native penicillin and penicilloic acids. /Penicillins/ Amoxicillin is similar to penicillin in its bactericidal action against susceptible bacteria during the stage of active multiplication. It acts through the inhibition of cell wall biosynthesis that leads to the death of the bacteria.
Pharmacodynamics
Amoxicillin competitively inhibit penicillin binding proteins, leading to upregulation of autolytic enzymes and inhibition of cell wall synthesis. Amoxicillin has a long duration of action as it is usually given twice daily. Amoxicillin has a wide therapeutic range as mild overdoses are not associated with significant toxicity. Patients should be counselled regarding the risk of anaphylaxis, _Clostridium difficile_ infections, and bacterial resistance.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Esomeprazole
PubChem CID 9568614Molecular formula: C17H19N3O3S
Mechanism of action
Esomeprazole exerts its stomach acid-suppressing effects by preventing the final step in gastric acid production by covalently binding to sulfhydryl groups of cysteines found on the (H+, K+)-ATPase enzyme at the secretory surface of gastric parietal cells. This effect leads to inhibition of both basal and stimulated gastric acid secretion, irrespective of the stimulus. As the binding of esomeprazole to the (H+, K+)-ATPase enzyme is irreversible and new enzyme needs to be expressed in order to resume acid secretion, esomeprazole's duration of antisecretory effect that persists longer than 24 hours. Esomeprazole is a proton pump inhibitor that suppresses gastric acid secretion by specific inhibition of the H+/K+-ATPase in the gastric parietal cell. The S- and R-isomers of omeprazole are protonated and converted in the acidic compartment of the parietal cell forming the active inhibitor, the achiral sulphenamide. By acting specifically on the proton pump, esomeprazole blocks the final step in acid production, thus reducing gastric acidity. This effect is dose-related up to a daily dose of 20 to 40 mg and leads to inhibition of gastric acid secretion.
Pharmacodynamics
Esomeprazole is a compound that inhibits gastric acid secretion and is indicated in the treatment of gastroesophageal reflux disease (GERD), the healing of erosive esophagitis, and <i>H. pylori</i> eradication to reduce the risk of duodenal ulcer recurrence. Esomeprazole belongs to a new class of antisecretory compounds, the substituted benzimidazoles, that do not exhibit anticholinergic or H2 histamine antagonistic properties, but that suppress gastric acid secretion by specific inhibition of the H<sup>+</sup>/K<sup>+</sup> ATPase at the secretory surface of the gastric parietal cell. By doing so, it inhibits acid secretion into the gsatric lumen. This effect is dose-related and leads to inhibition of both basal and stimulated acid secretion irrespective of the stimulus. Esomeprazole is the s-isomer of [DB00338], which is a racemate of the S- and R-enantiomer. Esomeprazole has been shown to inhibit acid secretion to a similar extent as [DB00338], without any significant differences between the two compounds _in vitro_. PPIs such as esomeprazole have also been shown to inhibit the activity of dimethylarginine dimethylaminohydrolase (DDAH), an enzyme necessary for cardiovascular health. DDAH inhibition causes a consequent accumulation of the nitric oxide synthase inhibitor asymmetric dimethylarginie (ADMA), which is thought to cause the association of PPIs with increased risk of cardiovascular events in patients with unstable coronary syndromes. Due to their good safety profile and as several PPIs are available over the counter without a prescription, their current use in North America is widespread. Long term use of PPIs such as esomeprazole has been associated with possible adverse effects, however, including increased susceptibility to bacterial infections (including gastrointestinal _C. difficile_), reduced absorption of micronutrients including iron and B12, and an increased risk of developing hypomagnesemia and hypocalcemia which may contribute to osteoporosis and bone fractures later in life.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Levofloxacin
PubChem CID 149096Molecular formula: C18H20FN3O4
Mechanism of action
Levofloxacin, like other fluoroquinolone antibiotics, exerts its antimicrobial activity via the inhibition of two key bacterial enzymes: DNA gyrase and topoisomerase IV. Both targets are type II topoisomerases, but have unique functions within the bacterial cell. DNA gyrase is an enzyme found only in bacteria that introduces negative supercoils into DNA during replication - this helps to relieve torsional strain caused by the introduction of positive supercoils during replication, and these negative supercoils are essential for chromosome condensation and the promotion of transcription initiation. It is comprised of four subunits (two A subunits and two B subunits) of which the A subunits appear to be the target of fluoroquinolone antibiotics. Bacterial topoisomerase IV, in addition to contributing to the relaxation of positive supercoils, is essential at the terminal stages of DNA replication and functions to “unlink” newly replicated chromosomes to allow for the completion of cell division. Inhibition of these enzymes by levofloxacin likely occurs via complexation with the topoisomerase enzymes. The end result is a blockade of DNA replication, thus inhibiting cell division and resulting in cell death. Levofloxacin is the L-isomer of the racemate, ofloxacin, a quinolone antimicrobial agent. The antibacterial activity of ofloxacin resides primarily in the L-isomer. The mechanism of action of levofloxacin and other fluoroquinolone antimicrobials involves inhibition of bacterial topoisomerase IV and DNA gyrase (both of which are type II topoisomerases), enzymes required for DNA replication, transcription, repair and recombination. Fluoroquinolones prolong the QT interval by blocking voltage-gated potassium channels, especially the rapid component of the delayed rectifier potassium current I(Kr), expressed by HERG (the human ether-a-go-go-related gene). According to the available case reports and clinical studies, moxifloxacin carries the greatest risk of QT prolongation from all available quinolones in clinical practice and it should be used with caution in patients with predisposing factors for Torsades de pointes (TdP).
Pharmacodynamics
Levofloxacin is bactericidal and exerts its antimicrobial effects via inhibition of bacterial DNA replication. It has a relatively long duration of action in comparison with other antibiotics that allows for once or twice daily dosing. Levofloxacin is associated with QTc-interval prolongation and should be used with caution in patients with other risk factors for prolongation (e.g. hypokalemia, concomitant medications). Levofloxacin has demonstrated _in vitro_ activity against a number of aerobic gram-positive and gram-negative bacteria and may carry some activity against certain species of anaerobic bacteria and other pathogens such as _Chlamydia_ and _Legionella_. Resistance to levofloxacin may develop, and is generally due to mutations in DNA gyrase or topoisomerase IV, or via alterations to drug efflux. Cross-resistance may occur between levofloxacin and other fluoroquinolones, but is unlikely to develop between levofloxacin and other antibiotic classes (e.g. macrolides) due to significant differences in chemical structure and mechanism of action. 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.
Molecular reference: hemi
PubChem CID 458487Molecular formula: C6H7NO3
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.
- AC-CLAV 1000 TABLETS (Each film coated tablet contains Amoxicillin and Cluvalanate Potassium 1000mg · Kiux Pharma
- AC-CLAV 625 TABLETS (Each film coated tablet contains Amoxicillin and Clavulanate Potassium 625 · Kiux Pharma
- ACICLAVCARE 1G TABLETS (Each film-coated tablet contains Amoxicillin trihydrate / Potassium clavulanate 1g) · East African Overseas
- ACINET 1.2G INJECTION (Each vial contains Amoxicillin Sodium/Potassium Clavulanate 1g/0.2g · East African Creasteas
- ACINET 228.5MG/5ML DRY SUSPENSION (Each 5ml of reconstituted suspension contains Amoxicillin Trihydrate/Potassium Clavulanate 200mg/28.5mg) · Indchemie Health Specialities
- ACINET 457MG/5ML DRY SUSPENSION (Each 5ml of reconstituted suspension contains Amoxicillin Trihydrate/Potassium Clavulanate 400mg/57mg) · Indchemie Health Specialities