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is an emerging multidrug-resistant fungal pathogen that preferentially colonizes and persists in skin tissue, yet the host immune factors that regulate the skin colonization of are unknown. In this study, we employed unbiased single-cell transcriptomics of murine skin infected with to understand the cell type-specific immune response to skin infection results in the accumulation of immune cells such as neutrophils, inflammatory monocytes, macrophages, dendritic cells, T cells, and NK cells at the site of infection. We identified fibroblasts as a major non-immune cell accumulated in the infected skin tissue. The comprehensive single-cell profiling revealed the transcriptomic signatures in cytokines, chemokines, host receptors (TLRs, C-type lectin receptors, NOD receptors), antimicrobial peptides, and immune signaling pathways in individual immune and non-immune cells during skin infection. Our analysis revealed that infection upregulates the expression of the IL-1RN gene (encoding IL-1R antagonist protein) in different cell types. We found IL-1Ra produced by macrophages during skin infection decreases the killing activity of neutrophils. Furthermore, uses a unique cell wall mannan outer layer to evade IL-1R-signaling mediated host defense. Collectively, our single-cell RNA seq profiling identified the transcriptomic signatures in immune and non-immune cells during skin infection. Our results demonstrate the IL-1Ra and IL-1R-mediated immune evasion mechanisms employed by to persist in the skin. These results enhance our understanding of host defense and immune evasion mechanisms during skin infection and identify potential targets for novel antifungal therapeutics.
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http://dx.doi.org/10.1101/2024.10.22.619653 | DOI Listing |
Biomater Sci
September 2025
School of Biomedical Sciences, Kent State University, Kent, OH 44242, USA.
Copper ions have been considered to hold promise for the treatment of wound infections due to their unique characteristics that exhibit not only antibacterial activities through multiple bactericidal mechanisms but also tissue reparative activities by acting as a co-factor for many angiogenic promoters and enzymes. However, higher doses are necessary to achieve sufficient bactericidal and antibiofilm effects. The objective of this study is to develop copper nanoparticles (CuNPs) as an antimicrobial agent by harnessing the characteristics of copper and vitamin C (VC) to form a sustained catalytic cycle, leading to a significant enhancement of bactericidal and antibiofilm effects when compared with the use of CuNPs alone.
View Article and Find Full Text PDFActa Derm Venereol
September 2025
CHU Lille, Urgences Pédiatriques & Maladies Infectieuses, Hôpital R. Salengro, Lille, France; University of Lille, URL2694: METRICS, Lille, France.
Some patients with slow-flow vascular malformations (SFVMs) develop recurring cellulitis. The main objective of this study was to describe SFVMs in children. Other objectives were to determine the frequency of cellulitis episodes, and the factors associated with the occurrence of cellulitis.
View Article and Find Full Text PDFDan Med J
August 2025
Department of Dermatology, Zealand University Hospital, Roskilde.
Introduction: Tinea pedis is a common disease that affects up to 70% of adults during a lifetime. Most cases are caused by Trichophyton species. Worldwide, terbinafine resistance among dermatophytes is rising, which is concerning as terbinafine is the first-line treatment.
View Article and Find Full Text PDFDan Med J
August 2025
Department of Regional Health Research, University of Southern Denmark.
Introduction: Erysipelas is a common disease in the emergency department, whereas necrotising soft tissue infections (NSTIs) are rare but more severe. The study aimed to investigate the prevalence, incidence, population-based incidence rate, one-year mortality and clinical presentation of erysipelas and NSTIs, and the aetiology, treatment and recurrence of erysipelas.
Methods: This was a population-based cohort study including acute non-trauma patients ≥ 18 years old with erysipelas or NSTIs from the Region of Southern Denmark in the period from 1 January 2016 to 19 March 2018.
Regen Biomater
August 2025
College of Textiles & Clothing, Institute of Functional Textiles and Advanced Materials, Qingdao 266071, China.
Bacterial infection in the injured skin may threaten the wound repair and skin regeneration owing to aggravated inflammation. The multifunctional dressings with persistent antibacterial activity and improved anti-inflammatory capability are urgently required. Herein, a type of heterogeneous zinc/catechol-derived resin microspheres (Zn/CFRs) composed of zinc ions (Zn) and zinc oxide (ZnO) nanoparticles was developed to impart the methacrylamide chitosan (CSMA)-oxidized hyaluronic acid (OHA) hydrogel with a persistent Zn release behavior.
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