ZOLEBET
BETAMETHASONE AND DEXCHLORPHENIRAMINE MALEATE
What it does
Betamethasone is a corticosteroid used to reduce inflammation and suppress the immune system.
Commonly used for: inflammation, allergic reactions, skin conditions, certain autoimmune diseases
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 19:34:56 · updated 2026-09-15 02:18:04
Drug Interactions
39Pharmacodynamic Warnings
Betamethasone appears in TABLE 17: Drugs that reduce serum potassium
Severe (1)
Mifamurtide - decreases efficacy
Corticosteroidsarepredictedtodecreasetheefficacyof mifamurtide.Avoid.rTheoretical
Moderate (18)
Corticosteroids - increases exposure
Dronedarone is predicted to increase the exposure to corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - increases concentration
Miconazole is predicted to increase the concentration of corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - increases exposure
Antifungals, azoles (fluconazole, isavuconazole, posaconazole) are predicted to increase the exposure to corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - decreases exposure
Cenobamate is predicted to decrease the exposure to corticosteroids (fluticasone). Adjust dose.
Corticosteroids - decreases efficacy
Mifepristone is predicted to decrease the efficacy of corticosteroids. Use with caution and adjust dose.
Unknown (20)
Aspirin - decreases concentration
Corticosteroids are predicted to decrease the concentration of aspirin (high-dose) and aspirin (high-dose) increases the risk of gastrointestinal bleeding when given with corticosteroids.
Betamethasone - increases exposure
Cobicistat is predicted to increase the exposure to corticosteroids (betamethasone, budesonide, ciclesonide, deflazacort, dexamethasone, fludrocortisone, fluticasone, hydrocortisone, methylprednisolon
Betamethasone - increases exposure
Idelalisib is predicted to increase the exposure to corticosteroids (betamethasone, budesonide, ciclesonide, deflazacort, dexamethasone, fludrocortisone, fluticasone, hydrocortisone, methylprednisolon
Betamethasone - increases exposure
Clarithromycin is predicted to increase the exposure to corticosteroids (betamethasone, budesonide, ciclesonide, deflazacort, dexamethasone, fludrocortisone, fluticasone, hydrocortisone, methylprednis
Choline Salicylate - decreases concentration
Corticosteroids are predicted to decrease the concentration of cholinesalicylate. Ciclesonide → see corticosteroids Ciclosporin → see TABLE 2 p. 1517 (nephrotoxicity), TABLE 16 p. 1521 (increased seru
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: class
About betamethasone
Betamethasone is a corticosteroid used to reduce inflammation and suppress the immune system.
What it treats
- inflammation
- allergic reactions
- skin conditions
- certain autoimmune diseases
How it works
It works by decreasing inflammation and modifying the body's immune response.
Who it's for
It is for adults and children who need treatment for conditions involving inflammation or an overactive immune system.
Drug class
Corticosteroids
Cautions
- • Be cautious if you are taking medications that lower potassium levels in the blood.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About dexchlorpheniramine
Dexchlorpheniramine is an antihistamine used to relieve allergy symptoms.
What it treats
- allergic rhinitis (hay fever)
- urticaria (hives)
- allergy symptoms
How it works
It blocks the action of histamine, a substance in the body that causes allergy symptoms.
Who it's for
It is suitable for adults and children over a certain age for treating allergy-related issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Betamethasone
BNF-referencedBetamethasone is a potent corticosteroid with high glucocorticoid activity and minimal mineralocorticoid effects, used primarily to suppress inflammation and manage allergic conditions.
Indications
- Suppression of inflammatory disorders
- Management of allergic conditions
- Congenital adrenal hyperplasia
- Inflammatory and allergic eye conditions
Dosage
Children: For children aged 1–11 months: Initially 1 mg, repeated up to 4 times in 24 hours according to response. Aged 1–5 years: Initially 2 mg, repeated up to 4 times in 24 hours according to response. Aged 6–11 years: Initially 4 mg, repeated up to 4 times in 24 hours according to response. Aged 12–17 years: 4–20 mg, repeated up to 4 times in 24 hours according to response.
Adults: Dosage varies based on condition; typically, initial doses are adjusted according to the patient's response and severity of condition.
Mechanism of action
Betamethasone exerts its effects by binding to glucocorticoid receptors, leading to modulation of gene expression and suppression of inflammatory cytokines and mediators.
Pharmacodynamics
Betamethasone reduces inflammation and immune response, which is beneficial in managing various inflammatory and allergic disorders.
Pharmacokinetics
Betamethasone is rapidly absorbed after administration, with a long half-life allowing for once-daily dosing in many cases. It is metabolized in the liver and excreted primarily in urine.
Adverse effects
- Hiccups
- Oedema
- Mood and behaviour changes
- Vision disorders
- Serious gastro-intestinal effects
- Musculoskeletal effects
- Ophthalmic effects
- Stevens-Johnson syndrome
- Myocardial rupture (following recent myocardial infarction)
Interactions
- Cobicistat + betamethasone: Unknown (increases exposure)
- Idelalisib + betamethasone: Unknown (increases exposure)
- Clarithromycin + betamethasone: Unknown (increases exposure)
Precautions
- Immunosuppression due to prolonged corticosteroid treatment
- Adrenal suppression if given for longer than 3 weeks
- Increased susceptibility to infections, including chickenpox and measles
Pregnancy
Readily crosses the placenta. Transient effect on fetal movements and heart rate.
Storage
Store at room temperature, protect from light.
Formulations
- Betamethasone sodium phosphate 4 mg per 1 ml solution for injection ampoules
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: betamethasonedipropionate
Betamethasone dipropionate is a potent synthetic glucocorticoid steroid that is used topically to relieve inflammation and itching associated with various skin conditions. It is a derivative of betamethasone, which has anti-inflammatory, immunosuppressive, and anti-proliferative activities. The drug is commonly utilized in dermatology for conditions such as eczema, psoriasis, and dermatitis.
Indications
- Eczema
- Psoriasis
- Contact dermatitis
- Seborrheic dermatitis
- Atopic dermatitis
Dosage
Children: Refer to the BNF for Children for appropriate dosing information.
Adults: Refer to relevant clinical guidelines or product information for specific dosing instructions.
Mechanism of action
Betamethasone dipropionate exerts its effects by binding to the glucocorticoid receptor, leading to the modulation of gene expression. This interaction results in the inhibition of pro-inflammatory cytokines, chemokines, and adhesion molecules, which reduces inflammation, suppresses the immune response, and promotes vasoconstriction in the affected tissues.
Pharmacodynamics
The pharmacodynamic effects of betamethasone dipropionate include a significant reduction in inflammation and immune response due to the inhibition of leukocyte infiltration at the site of inflammation. The drug also inhibits the release of arachidonic acid, subsequently decreasing the production of inflammatory mediators such as prostaglandins and leukotrienes. Its efficacy is enhanced by its high lipid solubility, allowing for better penetration through the skin layers.
Pharmacokinetics
Betamethasone dipropionate is well absorbed through the skin when applied topically. Its bioavailability is influenced by the formulation and the condition of the skin. The drug is metabolized primarily in the liver to inactive metabolites, which are excreted in the urine. The systemic absorption and effects are minimal when used as directed, but caution is advised in extensive applications or occlusive dressings, which may increase absorption.
Adverse effects
- Local skin atrophy
- Striae
- Telangiectasia
- Hypopigmentation
- Allergic contact dermatitis
- Systemic effects with prolonged use
Precautions
- Use with caution in patients with a history of diabetes mellitus
- Monitor for potential adrenal suppression with prolonged use
- Avoid application to infected areas unless treated
Pregnancy
Betamethasone dipropionate should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus. Limited data suggest that topical corticosteroids have low systemic absorption.
Breast-feeding
Caution is advised when using betamethasone dipropionate during breastfeeding, as it is unknown whether it is excreted in breast milk. Topical corticosteroids should be applied sparingly and avoided on the breast area to minimize ingestion by the infant.
Storage
Store at room temperature, away from light and moisture. Keep out of reach of children.
Formulations
- Topical cream
- Topical ointment
- 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.
Clinical monograph: dexchlorpheniramine
BNF-referencedDexchlorpheniramine is a first-generation antihistamine primarily used in the management of allergic conditions. It is effective in alleviating symptoms such as sneezing, runny nose, and itching by antagonizing histamine H1 receptors. Its anticholinergic properties also provide a drying effect on mucous membranes, making it useful in treating allergic rhinitis and urticaria.
Indications
- Allergic rhinitis
- Urticaria
- Allergic conjunctivitis
- Common cold symptoms
Dosage
Children: For children aged 6 to 12 years, the recommended dose is 1 to 2 mg every 4 to 6 hours, not exceeding 6 mg per day. For children aged 2 to 6 years, refer to the BNF for Children for specific dosing recommendations.
Adults: The typical adult dose for allergic conditions is 2 to 4 mg taken every 4 to 6 hours, not exceeding 24 mg per day.
Mechanism of action
Dexchlorpheniramine antagonizes histamine H1 receptors, competing with histamine for binding sites on effector cells. This prevents the actions mediated by histamine, such as urticaria and pruritus. Additionally, its anticholinergic effects lead to a drying effect on nasal mucosa, further alleviating allergy symptoms.
Pharmacodynamics
As an H1 receptor antagonist, dexchlorpheniramine reduces the physiological effects of histamine, including vascular permeability, smooth muscle contraction, and stimulation of sensory nerves. Its anticholinergic properties can cause sedation and dry secretions, which are common side effects associated with first-generation antihistamines.
Pharmacokinetics
Dexchlorpheniramine is well absorbed from the gastrointestinal tract. It has a moderate volume of distribution and is metabolized in the liver. The drug has a relatively long half-life, allowing for once or twice daily dosing in most cases. The elimination of the drug occurs primarily through urinary excretion of its metabolites.
Contra-indications
- Hypersensitivity to dexchlorpheniramine or any of its components
- Severe asthma
- Narrow-angle glaucoma
- Prostatic hypertrophy
Adverse effects
- Drowsiness
- Dry mouth
- Dizziness
- Nausea
- Constipation
- Blurred vision
Interactions
- Increased sedation when used with alcohol, opioids, or other central nervous system depressants
- May enhance the anticholinergic effects of other medications with anticholinergic properties
Precautions
- Use with caution in patients with hepatic impairment
- Caution in patients with a history of seizures
- Should be used with caution in elderly patients due to increased sensitivity
Pregnancy
Dexchlorpheniramine is classified as category B. Animal studies have not shown any risk to the fetus, but there are no adequate and well-controlled studies in pregnant women. Use only if clearly needed.
Breast-feeding
Dexchlorpheniramine is excreted in breast milk, and caution should be exercised when administering to nursing mothers.
Storage
Store below 25°C. Protect from light and moisture.
Formulations
- Tablets
- Syrup
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: Betamethasone
PubChem CID 9782Molecular formula: C22H29FO5
Mechanism of action
Glucocorticoids inhibit neutrophil apoptosis and demargination, and inhibit NF-Kappa B and other inflammatory transcription factors. They also inhibit phospholipase A2, leading to decreased formation of arachidonic acid derivatives. In addition, glucocorticoids promote anti-inflammatory genes like interleukin-10. Corticosteroids like betamethasone can act through nongenomic and genomic pathways. The genomic pathway is slower and occurs when glucocorticoids activate glucocorticoid receptors and initiate downstream effects that promote transcription of anti-inflammatory genes including phosphoenolpyruvate carboxykinase (PEPCK), IL-1-receptor antagonist, and tyrosine amino transferase (TAT). On the other hand, the nongenomic pathway is able to elicit a quicker response by modulating T-cell, platelet and monocyte activity through the use of existing membrane-bound receptors and second messengers. Corticosteroids interact with specific receptor proteins in target tissues to regulate the expression of corticosteroid responsive genes, thereby changing the levels and array of proteins synthesized by the various target tissues. As a consequence of the time required for changes in gene expression and protein synthesis, most effects of corticosteroids are not immediate, but become apparent after several hours. ... Although corticosteroids predominantly act to increase expression of target genes, there are well documented examples where glucocorticoids decrease transcription of target genes ... In contrast to these genomic effects, recent studies have raised the possibility that some actions of corticosteroids are immediate and are mediated by membrane-bound receptors. /Adrenocorticosteroids/ The mechanisms by which glucocorticoids inhibit glucose utilization in peripheral tissues are not fully understood. Glucocorticoids decrease glucose uptake in adipose tissue, skin, fibroblasts, thymocytes, and polymorphonuclear leukocytes; these effects are postulated to result from translocation of the glucose transporters from the plasma membrane to an intracellular location. These peripheral effects are associated with a number of catabolic actions, including atrophy of lymphoid tissue, decreased muscle mass, negative nitrogen balance, and thinning of the skin. /Adrenocorticalsteroids/ The mechanisms by which the glucocorticoids promote gluconeogenesis are not fully defined. Amino acids mobilized from a number of tissues in response to glucocorticoids reach the liver and provide substrate for the production of glucose and glycogen. In the liver, glucocorticoids induce the transcription of a number of enzymes involved in gluconeogenesis and amino acid metabolism, including phosphoenolpyruvate carboxykinase, glucose-6-phosphatase, and fructose-2,6-bisphosphatase. Analyses of the molecular basis for regulation of phosphoenolpyruvate carboxykinase gene expression have identified complex regulatory influences involving an interplay among glucocorticoids, insulin, glucagon, and catecholamine. The effects of these hormones and amines on phosphoenolpyruvate carboxykinase gene expression mirror the complex regulation of gluconeogenesis in the intact organism. /Adrenocorticalsteroids/ ... /A/ major action of corticosteroids on the cardiovascular system is to enhance vascular reactivity to other vasoactive substances. Hypoadrenalism generally is associated with hypotension and reduced response to vasoconstrictors such as norepinephrine and angiotensin II. This diminished pressor response is explained partly by recent studies in experimental systems showing that glucocorticoids increase expression of adrenergic receptors in the vascular wall. Conversely, hypertension is seen in patients with excessive glucocorticoid secretion, occurring in most patients with Cushing's syndrome and in a subset of patients treated with synthetic glucocorticoids (even those lacking any significant mineralocorticoid action). /Adrenocorticosteroids/ For more Mechanism of Action (
Pharmacodynamics
Corticosteroids bind to the glucocorticoid receptor inhibiting pro-inflammatory signals, while promoting anti-inflammatory signals. Corticosteroids have a wide therapeutic window as patients may require doses that are multiples of what the body naturally produces. Patients who require long-term treatment with a corticosteroid should be counselled regarding the risk of hypothalamic-pituitary-adrenal axis suppression and increased susceptibility to infections.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: dexchlorpheniramine
PubChem CID 33036Molecular formula: C16H19ClN2
Mechanism of action
Dexchlorpheniramine is an antihistamine that antagonizes histamine H1 receptors. Antihistamines used in the treatment of allergy act by competing with histamine for H1-receptor sites on effector cells. They thereby prevent, but do not reverse, responses mediated by histamine alone. Antihistamines antagonize, in varying degrees, most of the pharmacological effects of histamine, including urticaria and pruritus. Also, the anticholinergic actions of most antihistamines provide a drying effect on the nasal mucosa. /Antihistamines/ DEXCHLORPHENIRAMINE MALEATE ANTAGONIZES MANY OF CHARACTERISTIC EFFECTS OF HISTAMINE. WHEN TESTED IN DOGS, ANTIHISTAMINIC POTENCY OF DEXTRO ISOMER WAS 100 TIMES GREATER THAN THAT OF LEVO ISOMER, & 2.5 TIMES GREATER THAN RACEMIC FORM. ON CIRCUS-MOVEMENT ATRIAL FLUTTER, LEVO FORM WAS 1.4 & 2.3 TIMES THAT OF RACEMIC & DEXTRO CMPD. H1 antagonists inhibit most responses of smooth muscle to histamine. Antagonism of the constrictor action of histamine on respiratory smooth muscle is easily shown in vivo and in vitro. /Histamine Antagonists: H1 Antagonists/ For more Mechanism of Action (Complete) data for DEXCHLORPHENIRAMINE (7 total), please visit the HSDB record page.
Biological pathways
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
- BADRUF CREAM (Each cream contains Clotrimazole / Betamethasone Dipropionate / Neomycin Sulphate 1.0%/w/v 0.05%/w/v 0.5%w/v) · Centurion Remedies
- BECLOGEN CREAM · S Kant Healthcare
- BETACORT EYE/EAR/NASAL DROPS · Indiana Opticals