logo
ResearchBunny Logo
Single-cell transcriptomics reveals aberrant skin-resident cell populations and identifies fibroblasts as a determinant in rosacea

Medicine and Health

Single-cell transcriptomics reveals aberrant skin-resident cell populations and identifies fibroblasts as a determinant in rosacea

M. Chen, L. Yang, et al.

This groundbreaking study explores the unique cellular landscape of rosacea in female patients, revealing a distinct keratinocyte subpopulation linked to barrier damage. The research, conducted by Mengting Chen and colleagues, identifies fibroblasts as key contributors to inflammation and vasodilation, offering new insights into potential treatments. Discover how blocking certain signaling pathways could transform therapeutic strategies for rosacea.

00:00
00:00
~3 min • Beginner • English
Abstract
Rosacea is a chronic inflammatory skin disorder, whose underlying cellular and molecular mechanisms remain obscure. Here, we generate a single-cell atlas of facial skin from female rosacea patients and healthy individuals. Among keratinocytes, a subpopulation characterized by IFNy-mediated barrier function damage is found to be unique to rosacea lesions. Blocking IFNy signaling alleviates rosacea-like phenotypes and skin barrier damage in mice. The papulopustular rosacea is featured by expansion of pro-inflammatory fibroblasts, Schwann, endothelial and macrophage/dendritic cells. The frequencies of type 1/17 and skin-resident memory T cells are increased, and vascular mural cells are characterized by activation of inflammatory pathways and impaired muscle contraction function in rosacea. Most importantly, fibroblasts are identified as the leading cell type producing pro-inflammatory and vasodilative signals in rosacea. Depletion of fibroblasts or knockdown of PTGDS, a gene specifically upregulated in fibroblasts, blocks rosacea development in mice. Our study provides a comprehensive understanding of the aberrant alterations of skin-resident cell populations and identifies fibroblasts as a key determinant in rosacea development.
Publisher
Nature Communications
Published On
Oct 09, 2024
Authors
Mengting Chen, Li Yang, Peijie Zhou, Suoqin Jin, Zheng Wu, Zixin Tan, Wenqin Xiao, San Xu, Yan Zhu, Mei Wang, Dan Jian, Fangfen Liu, Yan Tang, Zhixiang Zhao, Yingxue Huang, Wei Shi, Hongfu Xie, Qing Nie, Ben Wang, Zhili Deng, Ji Li
Tags
rosacea
single-cell RNA sequencing
keratinocytes
fibroblasts
pro-inflammatory signals
IFNγ signaling
barrier damage
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny