27 research outputs found
A Six-Year Boy with Hypopigmented Lesions on the Neck, Retroauricullary, and on the Lateral Face
EVALUATION OF THE DIAGNOSTIC ACCURACY OF THE ENDOSCOPIC ULTRASONOGRAPHY RESULTS IN THE PATIENTS EXAMINED IN A PERIOD OF THREE YEARS
European expert consensus statement on the systemic treatment of alopecia areata
Alopecia areata is an autoimmune form of non-scarring hair loss. It is usually characterized by limited areas of hair loss. However, the disease may progress to complete scalp and body hair loss (alopecia totalis, alopecia universalis). In patients with alopecia areata hair loss significantly impacts the quality of life. Children and adolescents with alopecia areata often experience bullying, including physical aggression. The disease severity evaluation tools used in clinical practice are: the Severity of Alopecia Tool (SALT) score and the Alopecia Areata Scale (AAS). A SALT score equal to or greater than 20 constitutes a commonly accepted indication for systemic therapy in alopecia areata. When using the AAS, moderate to severe alopecia areata should be considered a medical indication for systemic treatment. Currently, the only two EMA-approved medications for alopecia areata are baricitinib (JAK 1/2 inhibitor) for adults and ritlecitinib (JAK 3/TEC inhibitor) for individuals aged 12 and older. Both are EMA-approved for patients with severe alopecia areata. Other systemic medications used off-label in alopecia areata include glucocorticosteroids, cyclosporine, methotrexate and azathioprine. Oral minoxidil is considered an adjuvant therapy with limited data confirming its possible efficacy. This consensus statement is to outline a systemic treatment algorithm for alopecia areata, indications for systemic treatment, available therapeutic options, their efficacy and safety, as well as the duration of the therapy. © 2024 European Academy of Dermatology and Venereology
European expert consensus statement on the systemic treatment of alopecia areata
Alopecia areata is an autoimmune form of non-scarring hair loss. It is usually characterized by limited areas of hair loss. However, the disease may progress to complete scalp and body hair loss (alopecia totalis, alopecia universalis). In patients with alopecia areata hair loss significantly impacts the quality of life. Children and adolescents with alopecia areata often experience bullying, including physical aggression. The disease severity evaluation tools used in clinical practice are: the Severity of Alopecia Tool (SALT) score and the Alopecia Areata Scale (AAS). A SALT score equal to or greater than 20 constitutes a commonly accepted indication for systemic therapy in alopecia areata. When using the AAS, moderate to severe alopecia areata should be considered a medical indication for systemic treatment. Currently, the only two EMA-approved medications for alopecia areata are baricitinib (JAK 1/2 inhibitor) for adults and ritlecitinib (JAK 3/TEC inhibitor) for individuals aged 12 and older. Both are EMA-approved for patients with severe alopecia areata. Other systemic medications used off-label in alopecia areata include glucocorticosteroids, cyclosporine, methotrexate and azathioprine. Oral minoxidil is considered an adjuvant therapy with limited data confirming its possible efficacy. This consensus statement is to outline a systemic treatment algorithm for alopecia areata, indications for systemic treatment, available therapeutic options, their efficacy and safety, as well as the duration of the therapy
Skin Microbiome Alterations in Skin Diseases
A common oversimplification of the skin microbiome is a binary classification of individual microbes as either “beneficial” or “harmful.” In reality, however, skin microbes are much more complex and can act as either beneficial or harmful in different scenarios (for example, in altered skin or in healthy skin). In other cases, the ecological dynamics of bacteria interacting in a system add complexities to their characteristics. However, increasing evidence has associated altered microbial communities—or “dysbiosis”–in the skin with unhealthy skin, especially atopic dermatitis, which is highly associated with higher populations of Staphylococcus aureus. Here, we review the existing body of evidence around disruptions in the skin microbiome and their associations with skin diseases
Position statement: Recommendations on the diagnosis and treatment of Malassezia folliculitis
Malassezia is a lipophilic yeast that is a part of the human mycobiome. Malassezia folliculitis appears when the benign colonization of the hair follicles, by the Malassezia yeasts, becomes symptomatic with pruritic papules and pustules. Although Malassezia folliculitis is common in hospital departments, diagnosing and treating it varies among dermatologists and countries. The European Academy of Dermatology and Venereology Mycology Task Force Malassezia folliculitis working group has, therefore, sought to develop these recommendations for the diagnosis and management of Malassezia folliculitis. Recommendations comprise methods for diagnosing Malassezia folliculitis, required positive findings before starting therapies and specific treatment algorithms for individuals who are immunocompetent, immunocompromised or who have compromised liver function. In conclusion, this study provides a clinical strategy for diagnosing and managing Malassezia folliculitis
Position statement:Recommendations on the diagnosis and treatment of <i>Malassezia</i> folliculitis
Malassezia is a lipophilic yeast that is a part of the human mycobiome. Malassezia folliculitis appears when the benign colonization of the hair follicles, by the Malassezia yeasts, becomes symptomatic with pruritic papules and pustules. Although Malassezia folliculitis is common in hospital departments, diagnosing and treating it varies among dermatologists and countries. The European Academy of Dermatology and Venereology Mycology Task Force Malassezia folliculitis working group has, therefore, sought to develop these recommendations for the diagnosis and management of Malassezia folliculitis. Recommendations comprise methods for diagnosing Malassezia folliculitis, required positive findings before starting therapies and specific treatment algorithms for individuals who are immunocompetent, immunocompromised or who have compromised liver function. In conclusion, this study provides a clinical strategy for diagnosing and managing Malassezia folliculitis.</p
Groundwater quality and land use change in a typical karst agricultural region: a case study of Xiaojiang watershed, Yunnan
Inflammation is an amplifier of lung congestion by high lv filling pressure in hemodialysis patients: a longitudinal study
Introduction: Since inflammation alters vascular permeability, including vascular permeability in the lung, we hypothesized that it can be an amplifier of lung congestion in a category of patients at high risk for pulmonary oedema like end stage kidney disease (ESKD) patients. Objective and methods: We investigated the effect modification by systemic inflammation (serum CRP) on the relationship between a surrogate of the filling pressure of the LV [left atrial volume indexed to the body surface area (LAVI)] and lung water in a series of 220 ESKD patients. Lung water was quantified by the number of ultrasound B lines (US-B) on lung US. Six-hundred and three recordings were performed during a 2-year follow up. Longitudinal data analysis was made by the Mixed Linear Model. Results: At baseline, 88 had absent, 101 had mild to moderate lung congestion and 31 severe congestion. The number of US B lines associated with LAVI (r = 0.23, P < 0.001) and serum CRP was a robust modifier of this relationship (P < 0.001). Similarly, in fully adjusted longitudinal analyses US-B lines associated with simultaneous estimates of LAVI (P = 0.002) and again CRP was a strong modifier of this relationship in adjusted analyses (P ≤ 0.01). Overall, at comparable LAVI levels, lung congestion was more pronounced in inflamed than in non-inflamed patients. Conclusion: In ESKD systemic inflammation is a modifier of the relationship between LAVI, an integrate measure of LV filling pressure, and lung water. For any given pressure, lung water is increased with higher CRP levels, likely reflecting a higher permeability of the alveolar-capillary barrier
