转录组
关节炎
电池类型
炎症
细胞
炎性关节炎
医学
免疫系统
细胞生物学
滑膜炎
滑膜
滑膜关节
生物
细胞迁移
病理
成纤维细胞
癌症研究
基因剔除小鼠
肿瘤微环境
组织重塑
骨关节炎
颞下颌关节
类风湿性关节炎
神经科学
免疫学
作者
Ziying Lin,Supawadee Jariyasakulroj,Yang Shu,Jingyi Chen,Jingyi Chen,Qing Chang,Pao‐Fen Ko,Yuyueyang Qiu,Feixiang Chen,David Y. Ahn,Zhen Zhao,Jian‐Fu Chen,Jian‐Fu Chen
标识
DOI:10.1002/advs.202519816
摘要
Temporomandibular joint (TMJ) arthritis remodels the cartilage, subchondral bone, and synovial tissue with diverse cell changes. The functional importance of the anatomical organization of TMJ cell types and cellular microenvironment in painful arthritis remains largely unknown. Here, we applied seqFISH (sequential Fluorescence In Situ Hybridization) spatial transcriptomics to examine the adult mouse TMJ. We uncovered new cell types and comprehensively mapped anatomical locations of diverse cell types with distinct neighborhoods, revealed arthritis-induced cell number and cell status changes, and discovered microenvironment remodeling of fibroblast-immune cells, which are confirmed in patient synovial tissues. Functional and mechanistic studies showed that macrophage-specific knockout of mouse Igf1 promotes its immune activation and upregulates Il33 in adjacent synovial fibroblasts, resulting in inflammatory fibroblast expansion. In turn, fibroblast-specific deletion of Il33 alleviates inflammatory macrophages and inflammation, leading to pain mitigation. Thus, spatial transcriptomics maps diverse cell types in TMJ and reveals a remodeling of synovial fibroblast-immune microenvironment via the Igf1-Il33 axis, which drives arthritis pain with therapeutic potentials.
科研通智能强力驱动
Strongly Powered by AbleSci AI