炎症
指间关节
胚胎干细胞
关节炎
生物
炎性关节炎
细胞生物学
免疫学
间充质干细胞
细胞因子
病理
滑膜炎
胎儿
KLF2
细胞分化
解剖
医学
滑液
促炎细胞因子
炎症反应
表型
作者
Sarah Davidson,Davide Simone,Kathrin Jansen,Max Cowan,Caio Machado,Ian Reekie,Ananya Bhalla,Rowie Borst,Cesar Prada Medina,Joshua Bull,Zhi Yi Wong,Sarah Hill,Micon Garvilles,Sam Pledger,Patricia Reis Nisa,Nora Rebecca Schwingen,Dylan Windell,Moustafa Attar,Catherine Disney,Andrew J. Bodey
标识
DOI:10.1038/s41590-026-02542-2
摘要
Abstract The cellular basis for site-specific inflammation remains unclear. In human fingers, proximal interphalangeal (PIP) joints are preferentially affected by inflammatory arthritis, whereas distal interphalangeal joints are spared, providing a model to investigate the predilection of inflammation to distinct sites. Here we combine single-cell RNA sequencing, imaging and X-ray tomography to examine cellular composition, spatial organization and structure of finger joints during fetal development. PIP joints had a larger synovial volume and were enriched for PI16 + ‘universal’ fibroblasts. These cells were located in perivascular regions and at developing tendon–ligament interfaces. PI16 + fibroblasts exhibited both a shared inflammatory and cell-type-specific response to cytokine stimulation, suggesting that the combination of their spatial location and transcriptional responses promote inflammation. We suggest that differences in the stoichiometry of mesenchymal cells established in utero, including the key role of PI16 + fibroblasts, is a general principle that drives inflammation susceptibility across tissues.
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