imiquimod
Sources réglementaires consultées
Indications approuvées
- Kératoses actiniques typiques non hyperkératosiques et non hypertrophiques du visage ou du cuir chevelu chez l’adulte immunocompétent.
- Carcinome basocellulaire superficiel primitif confirmé par biopsie, jusqu’à 2 cm, sur le tronc, le cou ou les extrémités — hors mains et pieds — lorsque la chirurgie est moins appropriée et que le suivi peut être assuré.
- Verrues génitales et périanales externes chez les patients immunocompétents à partir de 12 ans.
Mises en garde cliniques
- Mise en garde majeure · Des réactions inflammatoires locales intenses avec érosion ou suintement peuvent survenir et nécessiter une interruption. Interrompre ou arrêter en cas d’œdème vulvaire sévère avec rétention urinaire. — DailyMed/openFDA, SPL set ID 1505cf54-37da-4b2b-9812-6ffd6a01a7c7
- Arrêter en cas d’hypopigmentation persistante. Les réactions générales pseudogrippales peuvent nécessiter une pause. Éviter ou réduire au minimum l’exposition aux ultraviolets. — DailyMed/openFDA, SPL set ID 1505cf54-37da-4b2b-9812-6ffd6a01a7c7
- Éviter les rapports sexuels tant que la crème reste sur la peau. Elle peut fragiliser les préservatifs et les diaphragmes. — DailyMed/openFDA, SPL set ID 1505cf54-37da-4b2b-9812-6ffd6a01a7c7
Interactions médicamenteuses
- ModéréeAutres produits à base d’imiquimod sur la même zone
Mécanisme: L’utilisation concomitante peut augmenter l’intensité des réactions locales ou générales.
Recommandation: Éviter l’utilisation simultanée sur la même zone.
DailyMed/openFDA, SPL set ID 1505cf54-37da-4b2b-9812-6ffd6a01a7c7https://api.fda.gov/drug/label.json?search=openfda.spl_set_id:1505cf54-37da-4b2b-9812-6ffd6a01a7c7
Effets indésirables
Communs (≥1%)
Érythème, desquamation, sécheresse, croûtes, œdème, érosion ou ulcération de la zone traitée · Prurit ou brûlure locale · Fatigue, fièvre ou céphalées
Rares mais graves
Rétention urinaire due à un œdème vulvaire sévère
Grossesse et allaitement
Les données disponibles pendant la grossesse n’ont pas identifié de risque associé, mais restent limitées. Évaluer le rapport bénéfice-risque ; pendant l’allaitement, tenir compte de l’exposition cutanée du nourrisson et éviter tout contact avec la zone traitée.
Bibliographie récente (PubMed)
The use of preclinical animal models of psoriasis has significantly increased over the last three decades, with each model having unique strengths and limitations. Some models translate better to human disease, and many have provided unique insight into psoriasis disease pathogenesis. In this comprehensive review, we present a comparative description and discussion of genetic mouse models, xenograft approaches, and elicited methods using cytokine injections into and topical imiquimod onto mice. We provide an inclusive list of genetically modified animals that have had imiquimod applied to or cytokines injected into their skin and describe the outcomes of these manipulations. This review will provide a valuable resource for those interested in working with psoriasis animal models.
Extramammary Paget disease (EMPD) is a frequently recurring malignant neoplasm with metastatic potential that presents in older adults on the genital, perianal, and axillary skin. Extramammary Paget disease can precede or occur along with internal malignant neoplasms. To develop recommendations for the care of adults with EMPD. A systematic review of the literature on EMPD from January 1990 to September 18, 2019, was conducted using MEDLINE, Embase, Web of Science Core Collection, and Cochrane Libraries. Analysis included 483 studies. A multidisciplinary expert panel evaluation of the findings led to the development of clinical care recommendations for EMPD. The key findings were as follows: (1) Multiple skin biopsies, including those of any nodular areas, are critical for diagnosis. (2) Malignant neoplasm screening appropriate for age and anatomical site should be performed at baseline to distinguish between primary and secondary EMPD. (3) Routine use of sentinel lymph node biopsy or lymph node dissection is not recommended. (4) For intraepidermal EMPD, surgical and nonsurgical treatments may be used depending on patient and tumor characteristics, although cure rates may be superior with surgical approaches. For invasive EMPD, surgical resection with curative intent is preferred. (5) Patients with unresectable intraepidermal EMPD or patients who are medically unable to undergo surgery may receive nonsurgical treatments, including radiotherapy, imiquimod, photodynamic therapy, carbon dioxide laser therapy, or other modalities. (6) Distant metastatic disease may be treated with chemotherapy or individualized targeted approaches. (7) Close follow-up to monitor for recurrence is recommended for at least the first 5 years. Clinical practice guidelines for EMPD provide guidance regarding recommended diagnostic approaches, differentiation between invasive and noninvasive disease, and use of surgical vs nonsurgical treatments. Prospective registries may further improve our
Alopecia areata (AA) is an autoimmune, nonscarring hair loss disorder with slightly greater prevalence in children than adults. Various treatment modalities exist; however, their evidence in pediatric AA patients is lacking. To evaluate the evidence of current treatment modalities for pediatric AA. We conducted a systematic review on the PubMed database in October 2019 for all published articles involving patients <18 years old. Articles discussing AA treatment in pediatric patients were included, as were articles discussing both pediatric and adult patients, if data on individual pediatric patients were available. Inclusion criteria were met by 122 total reports discussing 1032 patients. Reports consisted of 2 randomized controlled trials, 4 prospective comparative cohorts, 83 case series, 2 case-control studies, and 31 case reports. Included articles assessed the use of aloe, apremilast, anthralin, anti-interferon gamma antibodies, botulinum toxin, corticosteroids, contact immunotherapies, cryotherapy, hydroxychloroquine, hypnotherapy, imiquimod, Janus kinase inhibitors, laser and light therapy, methotrexate, minoxidil, phototherapy, psychotherapy, prostaglandin analogs, sulfasalazine, topical calcineurin inhibitors, topical nitrogen mustard, and ustekinumab. English-only articles with full texts were used. Manuscripts with adult and pediatric data were only incorporated if individual-level data for pediatric patients were provided. No meta-analysis was performed. Topical corticosteroids are the preferred first-line treatment for pediatric AA, as they hold the highest level of evidence, followed by contact immunotherapy. More clinical trials and comparative studies are needed to further guide management of pediatric AA and to promote the potential use of pre-existing, low-cost, and novel therapies, including Janus kinase inhibitors.
The present guidelines aim to provide comprehensive information on genital condyloma acuminata, including the epidemiology, clinical features, diagnosis and management. The guidelines provide evidence-based recommendations on the diagnosis, prevention and treatment of genital condyloma acuminata in adults in Asia, including patients with HIV co-infection. A PubMed search was performed, using the keywords "condyloma acuminata", "anal wart", "anogenital wart", "genital wart" and "genital HPV". A total of 3031 results were found in publications during last six years. A careful review of the titles and abstracts was done to find all the studies pertaining to epidemiology, clinical features, diagnosis, treatment and prevention of condyloma acuminata. Various diagnostic procedures described are: 1. PCR (LE: 2b). 2. Serology (LE: 2b). 3. In-situ hybridization (LE: 3). 1. Vaccination (LE: 1a): Quadrivalent vaccine reduced the frequency of anogenital warts in both vaccinated and unvaccinated contacts. According to the update Advisory Committee on Immunization Practices (ACIP) recommendations, the following protocol is recommended: (a). HPV vaccination at age 11 or 12 years for both males and females. (b). Catch-up vaccination for all persons through age 26 years. (c). Shared clinical decision-making regarding potential HPV vaccination for persons aged 27-45 years, who are at risk of new HPV infection. 2. Male circumcision (LE: 2a): conflicting evidence. In HIV-affected individuals, the course of HPV is more aggressive, with a greater risk of treatment resistance, increased chances of intraepithelial neoplasia as well as cancers. Physician administered. 1. Photodynamic therapy (LE: 1a). 2. Laser (LE: 2b). 3. Surgery (LE: 1a). 4. Electrosurgery (LE: 2c). 5. Cryotherapy (LE: 1b). 6. Immunotherapy (LE: 1b). 7. Podophyllin (LE: 1b). Provider administered. 1. Imiquimod 5%(LE: 1a). 2. Podophyllotoxin (LE: 1b). 3. Sinecatechins (LE: 1a). 4. Cidofovir (LE: 3). 5. 5- Fluorouracil (LE:
The incidence of anal cancer is substantially higher among persons living with the human immunodeficiency virus (HIV) than in the general population. Similar to cervical cancer, anal cancer is preceded by high-grade squamous intraepithelial lesions (HSILs). Treatment for cervical HSIL reduces progression to cervical cancer; however, data from prospective studies of treatment for anal HSIL to prevent anal cancer are lacking. We conducted a phase 3 trial at 25 U.S. sites. Persons living with HIV who were 35 years of age or older and who had biopsy-proven anal HSIL were randomly assigned, in a 1:1 ratio, to receive either HSIL treatment or active monitoring without treatment. Treatment included office-based ablative procedures, ablation or excision under anesthesia, or the administration of topical fluorouracil or imiquimod. The primary outcome was progression to anal cancer in a time-to-event analysis. Participants in the treatment group were treated until HSIL was completely resolved. All the participants underwent high-resolution anoscopy at least every 6 months; biopsy was also performed for suspected ongoing HSIL in the treatment group, annually in the active-monitoring group, or any time there was concern for cancer. Of 4459 participants who underwent randomization, 4446 (99.7%) were included in the analysis of the time to progression to cancer. With a median follow-up of 25.8 months, 9 cases were diagnosed in the treatment group (173 per 100,000 person-years; 95% confidence interval [CI], 90 to 332) and 21 cases in the active-monitoring group (402 per 100,000 person-years; 95% CI, 262 to 616). The rate of progression to anal cancer was lower in the treatment group than in the active-monitoring group by 57% (95% CI, 6 to 80; P = 0.03 by log-rank test). Among participants with biopsy-proven anal HSIL, the risk of anal cancer was significantly lower with treatment for anal HSIL than with active monitoring. (Funded by the National Cancer Institute; ClinicalTrials.go