ketoconazole
Regulatory sources consulted
Approved indications
- In adults: cutaneous candidiasis, tinea versicolor, seborrheic dermatitis, and tinea cruris, corporis, pedis, and manuum.
Contraindications
Absolute
- Hypersensitivity to ketoconazole or any excipient.
Clinical warnings
- For external use only; avoid the eyes. It is not indicated for tinea of the scalp or nails. — CIMA FUNGAREST 20 mg/g crema, registro 57595
- If a topical corticosteroid has been used for a prolonged period, withdraw it gradually over 2–3 weeks when starting ketoconazole to avoid rebound. Discontinue if hypersensitivity occurs. Propylene glycol may irritate the skin and must not be applied to open wounds or large areas of damaged skin. — CIMA FUNGAREST 20 mg/g crema, registro 57595
- Cetyl alcohol and stearyl alcohol may cause local skin reactions, such as contact dermatitis. — https://cima.aemps.es/cima/dochtml/ft/57595/FT_57595.html
Adverse events
Common (≥1%)
Application-site itching · Skin burning sensation · Application-site erythema
Pregnancy and lactation
As a precaution, it is preferable to avoid the cream during pregnancy and breastfeeding.
Recent literature (PubMed)
We aimed to determine the efficacy of the various available oral, topical, and procedural treatment options for hair loss in individuals with androgenic alopecia. Using the Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines, a systematic review of the National Library of Medicine was performed. Overall, 141 unique studies met our inclusion criteria. We demonstrate that many over the counter (e.g. topical minoxidil, supplements, low-level light treatment), prescription (e.g. oral minoxidil, finasteride, dutasteride), and procedural (e.g. platelet-rich plasma, fractionated lasers, hair transplantation) treatments successfully promote hair growth, highlighting the superiority of a multifaceted and individualized approach to management.
Tinea pedis is one of the most common superficial fungal infections of the skin, with various clinical manifestations. This review aims to familiarize physicians with the clinical features, diagnosis and management of tinea pedis. A search was conducted in April 2023 in PubMed Clinical Queries using the key terms 'tinea pedis' OR 'athlete's foot'. The search strategy included all clinical trials, observational studies and reviews published in English within the past 10 years. Tinea pedis is most often caused by Trichophyton rubrum and Trichophyton interdigitale. It is estimated that approximately 3% of the world population have tinea pedis. The prevalence is higher in adolescents and adults than in children. The peak age incidence is between 16 and 45 years of age. Tinea pedis is more common amongst males than females. Transmission amongst family members is the most common route, and transmission can also occur through indirect contact with contaminated belongings of the affected patient. Three main clinical forms of tinea pedis are recognized: interdigital, hyperkeratotic (moccasin-type) and vesiculobullous (inflammatory). The accuracy of clinical diagnosis of tinea pedis is low. A KOH wet-mount examination of skin scrapings of the active border of the lesion is recommended as a point-of-care testing. The diagnosis can be confirmed, if necessary, by fungal culture or culture-independent molecular tools of skin scrapings. Superficial or localized tinea pedis usually responds to topical antifungal therapy. Oral antifungal therapy should be reserved for severe disease, failed topical antifungal therapy, concomitant presence of onychomycosis or in immunocompromised patients. Topical antifungal therapy (once to twice daily for 1-6 weeks) is the mainstay of treatment for superficial or localized tinea pedis. Examples of topical antifungal agents include allylamines (e.g. terbinafine), azoles (e.g. ketoconazole), benzylamine, ciclopirox, tolnaftate and amorolfine. Oral an
Seborrheic dermatitis (SD) is a common chronic inflammatory skin disorder that mostly affects young adults in areas rich in sebaceous glands (scalp, face, and trunk). In adolescents and adults, SD clinical presentation may range from mild patches to diffuse scalp scaling. In infants, it mainly occurs on the scalp as yellowish, scaly patches ("cradle cap"). In adults, several environmental triggers are likely to promote SD development, along with fungal colonization by Malassezia spp., sebaceous gland activity, as well as immunosuppression, endocrine, neurogenic and iatrogenic factors. In children, early occurrence in the first trimester suggests the role of excessive sebaceous gland activity from maternal hormones, along with cutaneous microbiome alterations. The diagnosis of SD is usually clinical, and specific laboratory and/or instrumental investigations are seldom required. Treatment is aimed at modulating sebum production, reducing skin colonization by Malassezia spp., and controlling inflammation. In adults, mild-to-moderate scalp SD forms can be managed with topical antifungals (ketoconazole, ciclopirox, miconazole) or antiinflammatory (mild-to-moderate potency corticosteroids) or keratolytic/humectant (propylene glycol) agents. Recommended topical therapeutic options for mild-to-moderate facial or body areas SD include topical ketoconazole, ciclopirox, clotrimazole, mild-to-moderate potency corticosteroids, lithium succinate/gluconate, and topical calcineurin inihibitors (off-label use). In severe and/or resistant cases, the use of systemic antifungal drugs (terbinafine, itraconazole), as well as UVB phototherapy, may be considered. In children, scant scientific evidence supports the effectiveness and safety of topical drugs, and "cradle cap" is usually successfully managed with baby shampoos enriched with emollient agents and vegetable oils. Alternatively, similarly to adult scalp SD, medical device shampoos with antiinflammatory and antifungal properties,
Tinea versicolor is a common superficial fungal infection of the skin with various clinical manifestations. This review aims to familiarize physicians with the clinical features, diagnosis and management of tinea versicolor. A search was conducted in July 2022 in PubMed Clinical Queries using the key terms "tinea versicolor" OR "pityriasis versicolor". The search strategy included all clinical trials, observational studies and reviews published within the past 10 years. Tinea versicolor is caused by Malassezia species, notably M. globosa, M. furfur and M. sympodialis. The condition is characterized by scaly hypopigmented or hyperpigmented macules/patches, primarily located on the upper trunk, neck and upper arms. The diagnosis is usually based on characteristic clinical features. If necessary, a potassium hydroxide preparation test can be performed to reveal numerous short, stubby hyphae intermixed with clusters of spores. Most patients with tinea versicolor respond to topical antifungal therapy, which has a better safety profile (fewer adverse events, fewer drug interactions) and lower cost compared to systemic treatment and is therefore the treatment of choice. Oral antifungal therapy is typically reserved for patients with extensive disease, frequent recurrences or disease that is refractory to topical therapy. Advantages of oral antifungal therapy include increased patient compliance, shorter duration of treatment, increased convenience, less time involved with therapy and reduced recurrence rates. On the other hand, oral antifungal therapy is associated with higher cost, greater adverse events and potential drug-drug interactions and is therefore not the first-line treatment for tinea versicolor. Long-term intermittent prophylactic therapy should be considered for patients with frequent recurrence of the disease. Selection of antifungal agents depends on several factors, including efficacy, safety, local availability, ease of administration, likelihood of compl
The increasing burden of invasive fungal infections results in growing challenges to antifungal (AF) therapeutic drug monitoring (TDM). This review aims to provide an overview of recent advances in AF TDM. We conducted a PubMed search for articles during 2016-2020 using "TDM" or "pharmacokinetics" or "drug-drug-interaction" with "antifungal," consolidated for each AF. Selection was limited to English language articles with human data on drug exposure. More than 1000 articles matched the search terms. We selected 566 publications. The latest findings tend to confirm previous observations in real-life clinical settings. The pharmacokinetic variability related to special populations is not specific but must be considered. AF benefit-to-risk ratio, drug-drug interaction (DDI) profiles, and minimal inhibitory concentrations for pathogens must be known to manage at-risk situations and patients. Itraconazole has replaced ketoconazole in healthy volunteers DDI studies. Physiologically based pharmacokinetic modeling is widely used to assess metabolic azole DDI. AF prophylactic use was studied more for Aspergillus spp. and Mucorales in oncohematology and solid organ transplantation than for Candida (already studied). Emergence of central nervous system infection and severe infections in immunocompetent individuals both merit special attention. TDM is more challenging for azoles than amphotericin B and echinocandins. Fewer TDM requirements exist for fluconazole and isavuconazole (ISZ); however, ISZ is frequently used in clinical situations in which TDM is recommended. Voriconazole remains the most challenging of the AF, with toxicity limiting high-dose treatments. Moreover, alternative treatments (posaconazole tablets, ISZ) are now available. TDM seems to be crucial for curative and/or long-term maintenance treatment in highly variable patients. TDM poses fewer cost issues than the drugs themselves or subsequent treatment issues. The integration of clinical pharmacology into m