OBJECTIVE: Leukocyte infiltration into the rheumatoid arthritis (RA) synovium is a multistep process in which leukocytes leave the bloodstream and invade the synovial tissue (ST). Leukocyte transendothelial migration and adhesion to RA ST requires adhesion molecules on the surface of endothelial cells and RA ST fibroblasts. This study was undertaken to investigate the role of junctional adhesion molecule C (JAM-C) in mediating leukocyte recruitment and retention in the RA joint. METHODS: Immunohistologic analysis was performed on RA, osteoarthritis (OA), and normal ST samples to quantify JAM-C expression. Fibroblast JAM-C expression was also analyzed using Western blotting, cell surface enzyme-linked immunosorbent assay, and immunofluorescence. To determine the role of JAM-C in leukocyte retention in the RA synovium, in vitro and in situ adhesion assays and RA ST fibroblast transmigration assays were performed. RESULTS: JAM-C was highly expressed by RA ST lining cells, and its expression was increased in OA ST and RA ST endothelial cells compared with normal ST endothelial cells. JAM-C was also expressed on the surface of OA ST and RA ST fibroblasts. Furthermore, we demonstrated that myeloid U937 cell adhesion to both OA ST and RA ST fibroblasts and to RA ST was dependent on JAM-C. U937 cell migration through an RA ST fibroblast monolayer was enhanced in the presence of neutralizing antibodies against JAM-C. CONCLUSION: Our results highlight the novel role of JAM-C in recruiting and retaining leukocytes in the RA synovium and suggest that targeting JAM-C may be important in combating inflammatory diseases such as RA.
OBJECTIVE: Leukocyte infiltration into the rheumatoid arthritis (RA) synovium is a multistep process in which leukocytes leave the bloodstream and invade the synovial tissue (ST). Leukocyte transendothelial migration and adhesion to RA ST requires adhesion molecules on the surface of endothelial cells and RA ST fibroblasts. This study was undertaken to investigate the role of junctional adhesion molecule C (JAM-C) in mediating leukocyte recruitment and retention in the RA joint. METHODS: Immunohistologic analysis was performed on RA, osteoarthritis (OA), and normal ST samples to quantify JAM-C expression. Fibroblast JAM-C expression was also analyzed using Western blotting, cell surface enzyme-linked immunosorbent assay, and immunofluorescence. To determine the role of JAM-C in leukocyte retention in the RA synovium, in vitro and in situ adhesion assays and RA ST fibroblast transmigration assays were performed. RESULTS:JAM-C was highly expressed by RA ST lining cells, and its expression was increased in OA ST and RA ST endothelial cells compared with normal ST endothelial cells. JAM-C was also expressed on the surface of OA ST and RA ST fibroblasts. Furthermore, we demonstrated that myeloid U937 cell adhesion to both OA ST and RA ST fibroblasts and to RA ST was dependent on JAM-C. U937 cell migration through an RA ST fibroblast monolayer was enhanced in the presence of neutralizing antibodies against JAM-C. CONCLUSION: Our results highlight the novel role of JAM-C in recruiting and retaining leukocytes in the RA synovium and suggest that targeting JAM-C may be important in combating inflammatory diseases such as RA.
Authors: Christel Moog-Lutz; Florence Cavé-Riant; Florence C Guibal; Marie A Breau; Yolande Di Gioia; Pierre Olivier Couraud; Yvon E Cayre; Sandrine Bourdoulous; Pierre G Lutz Journal: Blood Date: 2003-07-17 Impact factor: 22.113
Authors: J Morales-Ducret; E Wayner; M J Elices; J M Alvaro-Gracia; N J Zvaifler; G S Firestein Journal: J Immunol Date: 1992-08-15 Impact factor: 5.422
Authors: Bradley J Rabquer; Mohammad A Amin; Nanditha Teegala; Matthew K Shaheen; Pei-Suen Tsou; Jeffrey H Ruth; Charles A Lesch; Beat A Imhof; Alisa E Koch Journal: J Immunol Date: 2010-06-30 Impact factor: 5.422
Authors: Y Hou; B J Rabquer; M L Gerber; F Del Galdo; S A Jimenez; G K Haines; W G Barr; M C Massa; J R Seibold; A E Koch Journal: Ann Rheum Dis Date: 2010-01 Impact factor: 19.103
Authors: Takeo Isozaki; Mohammad A Amin; Jeffrey H Ruth; Phillip L Campbell; Pei-Suen Tsou; Christine M Ha; W Alex Stinson; Steven E Domino; Alisa E Koch Journal: Arthritis Rheumatol Date: 2014-08 Impact factor: 10.995
Authors: Qiang Shu; Mohammad A Amin; Jeffrey H Ruth; Phillip L Campbell; Alisa E Koch Journal: Arthritis Res Ther Date: 2012-04-25 Impact factor: 5.156
Authors: Joseph Paquet; Jean-Christophe Goebel; Camille Delaunay; Astrid Pinzano; Laurent Grossin; Christel Cournil-Henrionnet; Pierre Gillet; Patrick Netter; Jean-Yves Jouzeau; David Moulin Journal: Arthritis Res Ther Date: 2012-03-13 Impact factor: 5.156