FGFR3 deficiency enhances CXCL12-dependent chemotaxis of macrophages via upregulating CXCR7 and aggravates joint destruction in mice

Author:

Kuang Liang,Wu Jiangyi,Su Nan,Qi Huabing,Chen Hangang,Zhou Siru,Xiong Yan,Du Xiaolan,Tan Qiaoyan,Yang Jing,Jin Min,Luo Fengtao,Ouyang Junjie,Zhang Bin,Wang Zuqiang,Jiang Wanling,Chen Liang,Chen Shuai,Wang Ziming,Liu Peng,Yin Liangjun,Guo Fengjin,Deng Chuxia,Chen DiORCID,Liu ChuanjuORCID,Xie Yangli,Ni Zhenhong,Chen LinORCID

Abstract

ObjectivesThis study aims to investigate the role and mechanism of FGFR3 in macrophages and their biological effects on the pathology of arthritis.MethodsMice with conditional knockout of FGFR3 in myeloid cells (R3cKO) were generated. Gait behaviours of the mice were monitored at different ages. Spontaneous synovial joint destruction was evaluated by digital radiographic imaging and μCT analysis; changes of articular cartilage and synovitis were determined by histological analysis. The recruitment of macrophages in the synovium was examined by immunostaining and monocyte trafficking assay. RNA-seq analysis, Western blotting and chemotaxis experiment were performed on control and FGFR3-deficient macrophages. The peripheral blood from non-osteoarthritis (OA) donors and patients with OA were analysed. Mice were treated with neutralising antibody against CXCR7 to investigate the role of CXCR7 in arthritis.ResultsR3cKO mice but not control mice developed spontaneous cartilage destruction in multiple synovial joints at the age of 13 months. Moreover, the synovitis and macrophage accumulation were observed in the joints of 9-month-old R3cKO mice when the articular cartilage was not grossly destructed. FGFR3 deficiency in myeloid cells also aggravated joint destruction in DMM mouse model. Mechanically, FGFR3 deficiency promoted macrophage chemotaxis partly through activation of NF-κB/CXCR7 pathway. Inhibition of CXCR7 could significantly reverse FGFR3-deficiency-enhanced macrophage chemotaxis and the arthritic phenotype in R3cKO mice.ConclusionsOur study identifies the role of FGFR3 in synovial macrophage recruitment and synovitis, which provides a new insight into the pathological mechanisms of inflammation-related arthritis.

Funder

the Key Project of Innovation Program in Military Medicine

Project of the State Key Laboratory of Trauma, Burns and Combined Injury

National Postdoctoral Program for Innovative Talents

National Natural Science Foundation of China

Publisher

BMJ

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology

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