Smith Emily, McGettrick Helen M, Stone Michael A, Shaw John S, Middleton Jim, Nash Gerard B, Buckley Christopher D, Ed Rainger G
Department of Physiology, Medical School, University of Birmingham, Edgbaston, Birmingham, UK.
Arthritis Rheum. 2008 Jul;58(7):1968-73. doi: 10.1002/art.23545.
The role of chemokines and their transporters in rheumatoid arthritis (RA) is poorly described. Evidence suggests that CXCL5 plays an important role, because it is abundant in RA tissue, and its neutralization moderates joint damage in animal models of arthritis. Expression of the chemokine transporter Duffy antigen receptor for chemokines (DARC) is also up-regulated in early RA. The aim of this study was to investigate the role of CXCL5 and DARC in regulating neutrophil recruitment, using an in vitro model of RA synovium.
To model RA synovium, RA synovial fibroblasts (RASFs) were cocultured with endothelial cells (ECs) for 24 hours. Gene expression in cocultured cells was investigated using TaqMan gene arrays. The roles of CXCL5 and DARC were determined by incorporating cocultures into a flow-based adhesion assay, in which their function was demonstrated by blocking neutrophil recruitment with neutralizing reagents.
EC-RASF coculture induced chemokine expression in both cell types. Although the expression of CXC chemokines was modestly up-regulated in ECs, the expression of CXCL1, CXCL5, and CXCL8 was greatly increased in RASFs. RASFs also promoted the recruitment of flowing neutrophils to ECs. Anti-CXCL5 antibody abolished neutrophil recruitment by neutralizing CXCL5 expressed on ECs or when used to immunodeplete coculture-conditioned medium. DARC was also induced on ECs by coculture, and anti-Fy6 antibody or small interfering RNA targeting of DARC expression effectively abolished neutrophil recruitment.
This study is the first to demonstrate, in a model of human disease, that the function of DARC is essential for editing the chemokine signals presented by ECs and for promoting unwanted leukocyte recruitment.
趋化因子及其转运体在类风湿关节炎(RA)中的作用鲜见描述。有证据表明,CXCL5发挥重要作用,因为它在RA组织中含量丰富,并且在关节炎动物模型中对其进行中和可减轻关节损伤。趋化因子转运体趋化因子达菲抗原受体(DARC)的表达在早期RA中也上调。本研究旨在使用RA滑膜的体外模型,研究CXCL5和DARC在调节中性粒细胞募集中的作用。
为模拟RA滑膜,将RA滑膜成纤维细胞(RASF)与内皮细胞(EC)共培养24小时。使用TaqMan基因芯片研究共培养细胞中的基因表达。通过将共培养物纳入基于流式细胞术的黏附试验来确定CXCL5和DARC的作用,在该试验中,用中和试剂阻断中性粒细胞募集来证明它们的功能。
EC-RASF共培养诱导了两种细胞类型中趋化因子的表达。虽然CXC趋化因子的表达在EC中略有上调,但CXCL1、CXCL5和CXCL8的表达在RASF中大幅增加。RASF还促进流动的中性粒细胞向EC募集。抗CXCL5抗体通过中和EC上表达的CXCL5或用于免疫去除共培养条件培养基时,消除了中性粒细胞募集。共培养也诱导EC上的DARC表达,抗Fy6抗体或靶向DARC表达的小干扰RNA有效消除了中性粒细胞募集。
本研究首次在人类疾病模型中证明,DARC的功能对于编辑EC呈现的趋化因子信号以及促进不必要白细胞募集至关重要。