View clinical trials related to Dermatitis.
Filter by:Allergic diseases are currently one of the most important problem in medicine. Research confirms that probiotics administered during the formation of the intestinal ecosystem and the maturation of the immune system can positively influence the development of antiallergic mechanisms. The aim of the present randomized, double-blind, placebo controlled study was to evaluate the efficacy of the mixture of probiotic Lactobacillus rhamnosus ŁOCK 0900, Lactobacillus rhamnosus ŁOCK 0908, and Lactobacillus casei ŁOCK 0919 in children up to the age 2 with atopic dermatitis and food allergy to cow's milk proteins. Children received the mixture of Lactobacillus strains for 3 months every day in the daily dose of a billion bacteria or a placebo (maltodextrin). Primary outcomes included the effects of probiotic treatment on the severity of symptoms assessed with SCORing atopic dermatitis (SCORAD) index. Secondary endpoints included assessment of total IgE and selected cytokine levels. Cytokines were evaluated in supernatants obtained from peripheral blood cultures of randomly selected 20 patients from each group. The primary and secondary outcomes were assessed at 3 time points: at baseline, after the finishing the administration of probiotic/placebo, and after 9 months of follow up.
A randomised, adaptive design, double-blind, placebo-controlled, first-in-human, two-part study to investigate the safety, tolerability, PK and preliminary efficacy of multiple topical doses of BEN2293 in patients with mild to moderate AD.
A multi-center, open, long-term follow-up study to Evaluate the Safety and Explore the Efficacy of Multiple Doses of FURESTEM-AD inj. for Moderate to Severe Chronic Atopic Dermatitis: 5-year Results from the K0104 Extension Study
This exploratory study aims to evaluate the impact of a cosmetic product (Lactibiane Topic AD) vs placebo on skin flora and skin reinforcement barrier in mild to moderate atopic dermatitis using biometrological, biological and clinical parameters.
A Phase I/IIa Clinical Trial to Evaluate the Safety and Explore the Efficacy of Multiple Doses of FURESTEM-AD inj. for Moderate to Severe Chronic Atopic Dermatitis
Primary Objective: - Evaluate changes in skin barrier function with transepidermal water loss (TEWL) assessed after skin tape stripping (STS) in predefined lesional skin in pediatric participants with moderate to severe atopic dermatitis (AD) treated with dupilumab. Secondary Objectives: - Evaluate changes in skin barrier function with TEWL assessed after STS in predefined lesional and non-lesional skin in pediatric participants with moderate to severe AD treated with dupilumab in reference to normal skin of healthy volunteers. - Evaluate time course of change in skin barrier function with TEWL assessed before and after STS in predefined lesional and non-lesional skin in pediatric participants with moderate to severe AD during dupilumab treatment phase and follow-up period in reference to normal skin of healthy volunteers.
This is a Randomized, Double-blind, Vehicle-Controlled, Seamless and Adaptive-designed Phase II/III Study to Evaluate the Efficacy and Safety of Topical SHR0302 Ointment in Adult Patients with Mild-to-Moderate Atopic Dermatitis. It will consist of phase II and phase III parts, phase II will be a dose-ranging part and phase III will be a pivotal study part.
To compare radiation dermatitis severity in irradiated skin protected by an agent verses uncovered skin based on photographs and track patient reported outcomes with use of the agent.
Atopic Dermatitis (AD) is a frequent inflammatory skin disease characterized by recurrent eczema. It associates genetic/epigenetic-induced alterations of epidermal barrier and type-2 inflammation/hypersensitivity, which may be triggered by different antigens that pass through the altered skin . Some studies have reported that environmental pathogens such as house dust mites are able to induce type-2 inflammation through particular activation of innate immunity . Multiple staphylococcal strains are commonly found on the skin of AD patients. Interestingly, recent findings suggest that S. aureus may be a key factor of AD inflammation: (i) 90% of AD patients have S. aureus skin colonization on lesional skin , (ii) AD patients with S. aureus skin colonization have more increased type-2 inflammatory markers in comparison with AD patients without SA skin colonization , (iii) skin colonization by monoclonal S. aureus strains correlate with severe flares and (iv) S. aureus is detected in both epidermis and dermis during AD flares; In this study, our hypothesis is that S. aureus induces AD flares through a type 2 T cell-mediated hypersensitivity against S. aureus, involving innate and adaptive responses. Conversely, S. epidermidis, a commensal strain, has a protective effect against S. aureus dysbiosis. To this end, we will characterize, in the skin and the blood, the immune response induced by cutaneous application of : i) S. aureus isolated from patients with moderate-to-severe AD which will mimic the cutaneous dysbiosis occurring in the natural course of AD; ii) S. aureus toxins without bacteria to evaluate the skin response against those particular proteins; iii) a laboratory strain of S. epidermidis, a common well-tolerated skin commensal bacteria; iv) a mix of S. aureus and S. epidermidis to evaluate the regulatory effect of S. epidermidis on the S. aureus-induced AD inflammation. Importantly, this characterization will be led in AD patients (with alterations of skin barrier), compared to healthy volunteers (without alterations of skin barrier), as controls.
Percutaneous PFO closure has been established as a first-line therapy for preventing recurrent strokes in selected patients. The devices used for the specific purpose contain and release nickel, which is considered as the most allergen metal in nature. Skin patch tests are considered as gold-standard for documenting nickel allergy. While the allergic contact dermatitis induced by nickel is well described, literature is inadequate on explaining the effect of nickel release on the clinical manifestations of patients implanted with such devices. Our prospective, randomized, blinded trial will try to investigate the above by performing nickel skin patch tests to all patients, 14 days before and 90 days after the implantation. During follow-up, clinical manifestations and transthoracic echocardiographic findings will be evaluated and associated with patch skin tests.