AI Article Synopsis

  • - Localized scleroderma (LS) is an autoimmune disease that causes skin inflammation and fibrosis, leading to symptoms like hardening and discoloration of the skin, which can result in disability.
  • - This study utilized single-cell RNA sequencing (scRNA-seq) to analyze skin cells from 27 LS patients and 17 healthy controls, focusing primarily on endothelial cells due to their known role in a related condition, systemic sclerosis (SSc).
  • - The analysis identified eight subclusters of endothelial cells, with certain pathways upregulated in LS, suggesting these cells may contribute to disease progression and associated skin abnormalities.

Article Abstract

Localized scleroderma (LS) is an autoimmune disease characterized by inflammation and fibrosis, leading to severe cutaneous manifestations such as skin hardening, tightness, discoloration, and other textural changes that may result in disability. While LS shares similar histopathologic features and immune-fibroblast interactions with systemic sclerosis (SSc), its molecular mechanisms remain understudied. Endothelial cells (EC) are known to play a crucial role in SSc but have not been investigated in LS. Single-cell RNA sequencing (scRNA-seq) now allows for detailed examination of this cell type in the primary organ of interest for scleroderma, the skin. In this study, we analyzed skin-isolated cells from 27 LS patients (pediatric and adult) and 17 healthy controls using scRNA-seq. Given the known role of EC damage as an initial event in SSc and the histologic and clinical skin similarities to LS, we focused primarily on endothelial cells. Our analysis identified eight endothelial subclusters within the dataset, encompassing both disease and healthy samples. Interaction analysis revealed that signaling from diseased endothelial cells was predicted to promote fibrosis through interaction with and other target genes. We also observed high levels of in arterial endothelial cells and in capillary endothelial cells, indicating the activation of a signaling pathway potentially responsible for epidermal abnormalities and contributing to LS pathogenesis. In summary, our scRNA-seq analysis identified potential disease-propagating endothelial cell clusters with upregulated pathways in LS skin, highlighting their importance in disease progression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11477421PMC
http://dx.doi.org/10.3390/ijms251910473DOI Listing

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