末端炎
强直性脊柱炎
热情
医学
发病机制
CXCR4型
成纤维细胞
病理
细胞外基质
细胞生物学
免疫学
C-C趋化因子受体6型
化学
细胞
生物
脊柱炎
CXCL1型
抗体
炎症
间充质干细胞
疾病
作者
Jiajie Lin,Zepeng Su,Yipeng Zeng,Yi Zhou,Chenying Zeng,Weihao Zhang,Qibo Li,Zipeng Xiao,Zibin Chen,Ziqian Liu,Yangfeng Lin,Guan Zheng,Wenhui Yu,Zhongyu Xie
标识
DOI:10.1002/advs.202520617
摘要
ABSTRACT Ankylosing spondylitis (AS) is an osteoimmune disease characterized by pathological enthesitis related to mechanical strain. However, the cell interactions and molecular mechanisms of AS enthesitis are still unclear. Herein, we constructed a hind paw loading/unloading model using experimental spondyloarthritis SKG mice, and generated a single‐cell RNA sequencing atlas of mechanical strain‐related AS enthesitis. In this context, a disease‐specific subpopulation of SDC1 + sheath fibroblasts was identified to arise under mechanical strain, and these cells secreted higher levels of CXCL5 to recruit and promote the activation of CXCR4 hi neutrophils, which exacerbated CXCR4 hi neutrophil‐mediated enthesitis by increasing their neutrophil extracellular trap formation. Administering CXCL5 neutralizing antibody relieved disease progression in SKG mice. Additionally, computational trajectory analysis revealed a distinct fate branch of the mechanical strain‐responding SDC1 + sheath fibroblasts under the control of SOX5‐mediated enhancers and super‐enhancers. Specifically inhibiting SOX5 in enthesis fibroblasts via rAAV9.HAP‐1 carrying a shRNA targeting Sox5 blocked the generation of SDC1 + sheath fibroblasts in response to mechanical strain and markedly reversed the development of CXCR4 hi neutrophil‐mediated enthesitis. This study identifies the specific cell interactions and molecular mechanisms involved in mechanical strain‐related AS enthesitis, therefore contributing to the understanding of AS pathogenesis and providing insight into potential clinical treatments for AS.
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