CLONEM-G CREAM
Clotrimazole USP 1% w/w, Beclomethasone Dipropionate BP 0.025%w/w and Gentamicin Sulphate BP Eq. to Gentamicin 0.1% w/w
What it does
Beclomethasone is a medication used to help reduce inflammation in the body.
Commonly used for: asthma, chronic obstructive pulmonary disease (COPD), allergic rhinitis (hay fever)
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Sourcing - Kenya onlyRegistration & product details
Source: Rwanda Food and Drugs Authority · fetched 2026-03-11 22:07:18 · updated 2026-09-21 02:30:20
Drug Interactions
8Pharmacodynamic Warnings
Gentamicin appears in TABLE 2: Drugs that cause nephrotoxicity
Gentamicin appears in TABLE 19: Drugs that cause ototoxicity
Gentamicin appears in TABLE 20: Drugs with neuromuscular blocking effects
Severe (2)
Agalsidasealfa - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof agalsidasealfa.Avoid.oTheoretical
Agalsidasebeta - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof agalsidasebeta.Avoid.oTheoretical
Unknown (6)
Aminoglycosides - decreases exposure
Miconazole potentially decreases the exposure to aminoglycosides (tobramycin).
Lomitapide - increases exposure
Clotrimazole is predicted to increase the exposure to lomitapide. Separate administration by 12 hours.
Neostigmine - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof neostigmine.oTheoretical
Neratinib - decreases concentration
Aminoglycosides are predicted to decrease the effects of neostigmine. Theoretical Nepafenac → see NSAIDs Neratinib → see TABLE 1 p. 1517 (hepatotoxicity) FOOD AND LIFESTYLE Avoid pomegranate, and pome
Pyridostigmine - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof pyridostigmine.oTheoretical
Relugolix - increases exposure
Gentamicin is predicted to increase the exposure to relugolix. Avoid or take relugolix first and separate administration by at least 6 hours. Theoretical Aminophylline → see TABLE 17 p. 1521 (reduced
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: class
About beclomethasone
Beclomethasone is a medication used to help reduce inflammation in the body.
What it treats
- asthma
- chronic obstructive pulmonary disease (COPD)
- allergic rhinitis (hay fever)
How it works
It works by decreasing swelling and irritation in the airways, making it easier to breathe.
Who it's for
This medication is typically for people with asthma or other breathing problems.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About clotrimazole
Clotrimazole is an antifungal medication used to treat fungal infections.
What it treats
- fungal skin infections
- athlete's foot
- thrush (oral candidiasis)
- vaginal yeast infections
How it works
Clotrimazole works by stopping the growth of fungi that cause infections.
Who it's for
It is suitable for adults and children with fungal infections.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About gentamicin
Gentamicin is an antibiotic used to treat various bacterial infections.
What it treats
- bacterial infections
- severe infections
- infections in the blood (sepsis)
How it works
Gentamicin works by stopping bacteria from growing and multiplying.
Who it's for
Gentamicin is for individuals with bacterial infections, particularly those severe or resistant to other antibiotics.
Drug class
Aminoglycosides
Cautions
- • Be cautious if taking other drugs that can harm the kidneys.
- • Be cautious if taking other drugs that can affect hearing.
- • Be cautious if taking drugs that can weaken muscle function.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Clotrimazole
BNF-referencedClotrimazole is a broad-spectrum antifungal agent belonging to the imidazole class, commonly used for the treatment of various fungal infections, particularly those caused by Candida species. It is available in multiple forms including creams, pessaries, and solutions, making it suitable for topical application in areas affected by fungal infections such as the vagina and skin. Clotrimazole is effective against vaginal candidiasis and other superficial fungal infections.
Indications
- Vaginal candidiasis
- Vulval candidiasis
- Superficial fungal infections
- Otitis externa (as part of combination therapy)
Dosage
Adults: For vaginal candidiasis, 1 pessary of 500 mg can be inserted at night. Alternatively, for treatment with 1% cream, apply 2–3 times a day to the affected area for at least 14 days. For recurrent vulvovaginal candidiasis
Mechanism of action
Clotrimazole acts primarily by damaging the permeability barrier in the cell membrane of fungi. It inhibits ergosterol biosynthesis, which is essential for maintaining the integrity of fungal cell membranes. The inhibition of lanosterol 14-demethylase (CYP51) is a key mechanism behind its antifungal properties, leading to decreased ergosterol synthesis and resulting in cell membrane dysfunction. Clotrimazole also affects calcium homeostasis by inhibiting sarcoplasmic reticulum Ca2+-ATPase and blocking calcium-dependent potassium channels, contributing to its overall pharmacological effects.
Pharmacodynamics
Clotrimazole is considered a broad-spectrum antifungal that alters the permeability of fungal cell membranes, leading to inhibition of growth in pathogenic yeasts. At lower concentrations, it exhibits fungistatic properties, while at higher concentrations, it may be fungicidal against certain strains like Candida albicans. However, resistance to clotrimazole has become more common in recent years, limiting its efficacy in some populations.
Pharmacokinetics
Clotrimazole is primarily applied topically, and its absorption varies depending on the formulation and site of application. Following topical administration, systemic absorption is minimal, thereby reducing the risk of systemic side effects. The drug is metabolized in the liver and excreted via urine and feces. The pharmacokinetics may differ based on the dosing regimen and specific formulation used.
Contra-indications
- Hypersensitivity to clotrimazole or any excipients in the formulation
- Not recommended if trying to conceive due to potential damage to latex condoms and diaphragms
Adverse effects
- Skin reactions
- Vaginal burning
- Angioedema
Interactions
- Clotrimazole may increase the exposure of lomitapide, though the specific nature of this interaction is unknown
Precautions
- Avoid use in pregnancy without medical advice
- Use caution in patients with a history of hypersensitivity reactions
Pregnancy
Clotrimazole should be used during pregnancy only if clearly needed. Oral antifungal treatments should be avoided.
Breast-feeding
Clotrimazole is excreted in breast milk; caution is advised when used in breastfeeding mothers.
Storage
Store in a cool, dry place, away from direct sunlight. Keep out of reach of children.
Formulations
- Clotrimazole 1% cream
- Clotrimazole 2% cream
- Clotrimazole 500 mg vaginal pessaries
- Clotrimazole 10% vaginal cream
- Clotrimazole 1% solution (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: Gentamicin
BNF-referencedGentamicin is an aminoglycoside antibiotic used for the treatment of various bacterial infections. It is effective against a broad range of Gram-negative and some Gram-positive bacteria. Gentamicin works by inhibiting bacterial protein synthesis and disrupting the integrity of the bacterial cell membrane, leading to cell death. It is often used in serious infections such as sepsis, pneumonia, meningitis, and endocarditis, particularly in hospital settings.
Indications
- Bacterial infections
- Sepsis
- Pneumonia
- Meningitis
- Endocarditis
- Biliary tract infections
- Prostatitis
- Surgical prophylaxis
- Acute diverticulitis
- Leg ulcer infections
Dosage
Adults: 3–5 mg/kg daily in 3 divided doses, or a single daily dose of 5–7 mg/kg adjusted according to serum-gentamicin concentration. For surgical prophylaxis, 1.5 mg/kg administered intraven
Mechanism of action
Gentamicin exerts its antibacterial effects through a multi-phase mechanism. Initially, it binds to negatively charged components of bacterial cell membranes, increasing membrane permeability. Following this, it enters the bacterial cell via energy-dependent transport mechanisms, where it binds to the 30S ribosomal subunit. This binding causes mistranslation of proteins and disrupts membrane integrity, resulting in bacterial cell death. The action is concentration-dependent, leading to rapid bactericidal effects.
Pharmacodynamics
Gentamicin has a rapid onset of action due to its mechanism of disrupting the bacterial cell membrane and inhibiting protein synthesis. Its effectiveness is enhanced by higher concentrations, and it demonstrates a post-antibiotic effect where bacteria remain suppressed even after drug levels fall below the minimum inhibitory concentration. The drug's efficacy is influenced by factors like the bacterial strain and its susceptibility patterns.
Pharmacokinetics
Gentamicin is usually administered intravenously or intramuscularly. It has a volume of distribution of approximately 0.25 L/kg and is not significantly protein-bound. The drug is primarily eliminated via renal excretion, with a half-life of 2 to 3 hours in individuals with normal renal function. Dosing adjustments are necessary in patients with renal impairment to avoid toxicity. Serum levels should be monitored to optimize therapeutic efficacy while minimizing toxicity.
Contra-indications
- Hypersensitivity to gentamicin or any aminoglycoside
- Severe renal impairment
- Pre-existing auditory or vestibular dysfunction
Adverse effects
- Ototoxicity (hearing loss, vertigo, tinnitus)
- Nephrotoxicity
- Neuromuscular blockade
- Allergic reactions (rash, pruritus)
- Injection site reactions
Interactions
- Gentamicin + relugolix: Unknown (increases exposure)
- Gentamicin + other nephrotoxic drugs (e.g., vancomycin, cisplatin): Increased risk of nephrotoxicity
- Gentamicin + neuromuscular blocking agents: Enhanced neuromuscular blockade
Precautions
- Monitor renal function during therapy, especially in patients with pre-existing renal impairment
- Caution in patients with pre-existing hearing loss or vestibular disorders
- Use with caution in pregnant women and during breastfeeding
Pregnancy
Use only if clearly needed and the benefit justifies the risk to the fetus. Limited data on use in pregnancy.
Breast-feeding
Gentamicin is excreted in breast milk, exercise caution when administering to breastfeeding mothers. Monitor infant for possible side effects.
Storage
Store below 25°C. Protect from light. Do not freeze.
Formulations
- Injection solution (various concentrations)
- Ophthalmic solution (0.3% w/v)
- Topical ointment (0.1% w/v)
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: beclomethasone
BNF-referencedBeclomethasone is a synthetic corticosteroid used primarily for its anti-inflammatory and immunosuppressive properties. It is commonly administered via inhalation, intranasal spray, or topical formulations. Inhaled beclomethasone is effective in managing chronic respiratory conditions such as asthma and chronic obstructive pulmonary disease (COPD), while intranasal preparations are used for allergic rhinitis.
Indications
- Asthma
- Chronic obstructive pulmonary disease (COPD)
- Allergic rhinitis
- Nasal polyps
Dosage
Children: For children aged 5 to 12 years with asthma, the usual inhaled dose is 50 to 200 micrograms twice daily. For allergic rhinitis, refer to the BNF for Children
Adults: For asthma, the usual dose of inhaled beclomethasone is 100 to 400 micrograms twice daily, adjusted based on clinical response. For allergic rhinitis, 200 to 400 micrograms as a nasal spray may be administered once daily.
Mechanism of action
Beclomethasone acts by binding to glucocorticoid receptors in the cytoplasm of target cells. This complex translocates to the nucleus, where it influences gene transcription, leading to the downregulation of pro-inflammatory cytokines and the upregulation of anti-inflammatory proteins. This mechanism results in decreased inflammation, mucus production, and airway hyper-responsiveness.
Pharmacodynamics
The anti-inflammatory effects of beclomethasone are attributed to its ability to inhibit the release of inflammatory mediators, including leukotrienes and prostaglandins. It also reduces the recruitment of inflammatory cells to the site of inflammation. The onset of action for inhaled beclomethasone may take several hours to days, with maximum benefits typically observed after continuous use.
Pharmacokinetics
Beclomethasone is well-absorbed following inhalation, with a significant portion undergoing first-pass metabolism in the liver, thereby reducing systemic exposure. Its half-life is approximately 2.5 hours, but the duration of action may extend due to the drug's accumulation in lung tissue. The elimination of beclomethasone is primarily hepatic, with metabolites excreted in urine and feces.
Contra-indications
- Hypersensitivity to beclomethasone or any of its components
- Untreated systemic fungal infections
Adverse effects
- Cushing's syndrome
- Adrenal suppression
- Osteoporosis
- Growth retardation in children
- Skin thinning
- Increased risk of infections
- Oral candidiasis
Interactions
- CYP3A4 inhibitors may increase systemic exposure to beclomethasone
- Vaccines (live) may have reduced efficacy
Precautions
- Use with caution in patients with active or quiescent tuberculosis
- Monitor for signs of adrenal insufficiency
- Consider risks in patients with diabetes mellitus
- Use with caution in patients with hypertension
Pregnancy
Beclomethasone is classified as category C. It should only be used if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Beclomethasone is excreted in breast milk, caution should be exercised when administering to nursing women.
Storage
Store at room temperature, away from moisture and heat. Keep out of reach of children.
Formulations
- Inhalation aerosol
- Nasal spray
- Topical cream
- Topical lotion
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: Clotrimazole
PubChem CID 2812Molecular formula: C22H17ClN2
Mechanism of action
Clotrimazole acts primarily by damaging the permeability barrier in the cell membrane of fungi. Clotrimazole causes inhibition of ergosterol biosynthesis, an essential constituent of fungal cell membranes. If ergosterol synthesis is either completely or partially inhibited, the cell is no longer able to construct an intact and functional cell membrane,. Because ergosterol directly promotes the growth of fungal cells in a hormone‐like fashion, rapid onset of the above events leads to dose-dependent inhibition of fungal growth. Though decreased ergosterol, due to the inhibition of lanosterol 14-demethylase (also known as _CYP51_) is accepted to be primarily responsible for the antimycotic properties of clotrimazole, this drug also shows other pharmacological effects. These include the inhibition of sarcoplasmic reticulum Ca2+‐ATPase, depletion of intracellular calcium, and blocking of calcium‐dependent potassium channels and voltage‐dependent calcium channels. The action of clotrimazole on these targets accounts for other effects of this drug that are separate from its antimycotic activities. Clotrimazole exerts its antifungal activity by altering cell membrane permeability, apparently by binding with phospholipids in the fungal cell membrane. In contrast to polyene antibiotics (eg, amphotericin B), the action of clotrimazole is less dependent on the sterol content of the cell membrane. As a result of alteration of permeability, the cell membrane is unable to function as a selective barrier, and potassium and other cellular constituents are lost.
Pharmacodynamics
Clotrimazole is a broad-spectrum antifungal agent that inhibits the growth of pathogenic yeasts by changing the permeability of cell membranes. The action of clotrimazole is fungistatic at concentrations of drug up to 20 mcg/mL and may be fungicidal _in vitro_ against Candida albicans and other species of the genus Candida at higher concentrations. Unfortunately, resistance to clotrimazole, which was rare in the past, is now common in various patient populations. Clotrimazole is generally considered to be a fungistatic, and not a fungicidal drug, although this contrast is not absolute, as clotrimazole shows fungicidal properties at higher concentrations.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Gentamicin
PubChem CID 3467Molecular formula: C21H43N5O7
Mechanism of action
There are 3 key phases of aminoglycoside entry into cells. The first “ionic binding phase” occurs when polycationic aminoglycosides bind electrostatically to negatively charged components of bacterial cell membranes including with lipopolysaccharides and phospholipids within the outer membrane of Gram-negative bacteria and to teichoic acids and phospholipids within the cell membrane of Gram-positive bacteria. This binding results in displacement of divalent cations and increased membrane permeability, allowing for aminoglycoside entry. The second “energy-dependent phase I” of aminoglycoside entry into the cytoplasm relies on the proton-motive force and allows a limited amount of aminoglycoside access to its primary intracellular target - the bacterial 30S ribosome. This ultimately results in the mistranslation of proteins and disruption of the cytoplasmic membrane. Finally, in the “energy-dependent phase II” stage, concentration-dependent bacterial killing is observed. Aminoglycoside rapidly accumulates in the cell due to the damaged cytoplasmic membrane, and protein mistranslation and synthesis inhibition is amplified. The necessity of oxygen-dependent active transport explains why aminoglycosides are ineffective against anaerobic bacteria. Hence, aminoglycosides have both immediate bactericidal effects through membrane disruption and delayed bactericidal effects through impaired protein synthesis; observed experimental data and mathematical modeling support this two-mechanism model. Inhibition of protein synthesis is a key component of aminoglycoside efficacy. Structural and cell biological studies suggest that aminoglycosides bind to the 16S rRNA in helix 44 (h44), near the A site of the 30S ribosomal subunit, altering interactions between h44 and h45. This binding also displaces two important residues, A1492 and A1493, from h44, mimicking normal conformational changes that occur with successful codon-anticodon pairing in the A site. Overall, aminoglycoside binding has several negative effects including inhibition of translation, initiation, elongation, and ribosome recycling. Recent evidence suggests that the latter effect is due to a cryptic second binding site situated in h69 of the 23S rRNA of the 50S ribosomal subunit. Also, by stabilizing a conformation that mimics correct codon-anticodon pairing, aminoglycosides promote error-prone translation. Mistranslated proteins can incorporate into the cell membrane, inducing the damage discussed above. Aminoglycosides are usually bactericidal in action. Although the exact mechanism of action has not been fully elucidated, the drugs appear to inhibit protein synthesis in susceptible bacteria by irreversibly binding to 30S ribosomal subunits. /Aminoglycosides/ ... Aminoglycosides are aminocyclitols that kill bacteria by inhibiting protein synthesis as they bind to the 16S rRNA and by disrupting the integrity of bacterial cell membrane. Aminoglycoside resistance mechanisms include: (a) the deactivation of aminoglycosides by N-acetylation, adenylylation or O-phosphorylation, (b) the reduction of the intracellular concentration of aminoglycosides by changes in outer membrane permeability, decreased inner membrane transport, active efflux, and drug trapping, (c) the alteration of the 30S ribosomal subunit target by mutation, and (d) methylation of the aminoglycoside binding site. ... /Aminoglycosides/
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: beclomethasone
PubChem CID 20469Molecular formula: C22H29ClO5
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.
- ADACT CREAM (Each gram contains Clotrimazole / Betamethasone Dipropionate / Neomycin Sulphate 1%w/w/0.025%w/w/0.5%w/w) · Rednex Phramaceuticals Pvt. Ltd
- AMIDERM CREAM · Lincoln Pharmaceuticals
- AMIDERM PLUS TRIPLE ACTION CREAM · Kremoint Pharma
- ASCOT GENTAMICIN EYE/EAR DROPS (Each bottle contains Gentamicin Sulfate 0.3%w/v) · Pharmax India
- ASCOT GENTAMICIN 0.3%w/v EYE/EAR DROPS · Pharmax India
- BADRUF CREAM (Each cream contains Clotrimazole / Betamethasone Dipropionate / Neomycin Sulphate 1.0%/w/v 0.05%/w/v 0.5%w/v) · Centurion Remedies