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2.
Dermatologie (Heidelb) ; 75(6): 492-495, 2024 Jun.
Article in German | MEDLINE | ID: mdl-38361042

ABSTRACT

We report a 77-year-old man with a skin abscess caused by Actinomyces radingae. Targeted antibiotic therapy with amoxicillin/clavulanic acid for 6 weeks resulted in clearing of the infection. A. radingae is a rare pathogenic agent of skin and soft tissue infections. As with other Actinomyces infections, the early identification of the pathogen and specific antibiotic therapy is crucial for successful resolution of the infection because of the chronic course and the long treatment time needed. Usually, A. radingae is sensitive to ß­lactam antibiotics.


Subject(s)
Abscess , Actinomyces , Actinomycosis , Anti-Bacterial Agents , Skin Diseases, Bacterial , Humans , Male , Aged , Abscess/microbiology , Abscess/drug therapy , Abscess/diagnosis , Actinomycosis/drug therapy , Actinomycosis/diagnosis , Actinomycosis/microbiology , Actinomycosis/pathology , Actinomyces/isolation & purification , Anti-Bacterial Agents/therapeutic use , Skin Diseases, Bacterial/microbiology , Skin Diseases, Bacterial/drug therapy , Skin Diseases, Bacterial/diagnosis , Amoxicillin-Potassium Clavulanate Combination/therapeutic use , Treatment Outcome
3.
Allergy ; 76(8): 2461-2474, 2021 08.
Article in English | MEDLINE | ID: mdl-33528894

ABSTRACT

BACKGROUND: While several systemic immunomodulatory effects of allergen-specific immunotherapy (AIT) have been discovered, local anti-inflammatory mechanisms in the respiratory tract are largely unknown. We sought to elucidate local and epithelial mechanisms underlying allergen-specific immunotherapy in a genome-wide approach. METHODS: We induced sputum in hay fever patients and healthy controls during the pollen peak season and stratified patients by effective allergen immunotherapy or as untreated. Sputum was directly processed after induction and subjected to whole transcriptome RNA microarray analysis. Nasal secretions were analyzed for Secretoglobin1A1 (SCGB1A1) and IL-24 protein levels in an additional validation cohort at three defined time points during the 3-year course of AIT. Subsequently, RNA was extracted and subjected to an array-based whole transcriptome analysis. RESULTS: Allergen-specific immunotherapy inhibited pro-inflammatory CXCL8, IL24, and CCL26mRNA expression, while SCGB1A1, IL7, CCL5, CCL23, and WNT5BmRNAs were induced independently of the asthma status and allergen season. In our validation cohort, local increase of SCGB1A1 occurred concomitantly with the reduction of local IL-24 in upper airways during the course of AIT. Additionally, SCGB1A1 was identified as a suppressor of epithelial gene expression. CONCLUSIONS: Allergen-specific immunotherapy induces a yet unknown local gene expression footprint in the lower airways that on one hand appears to be a result of multiple regulatory pathways and on the other hand reveals SCGB1A1 as novel anti-inflammatory mediator of long-term allergen-specific therapeutic intervention in the local environment.


Subject(s)
Desensitization, Immunologic , Rhinitis, Allergic, Seasonal , Uteroglobin/metabolism , Allergens , Humans , Respiratory System
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