Volume 83, Issue 3 pp. 364-368
Free Access

Expression of decay-accelerating factor is reduced on hyperplastic synovial lining cells in rheumatoid synovitis

J. ITOH

J. ITOH

Department of Pathology, Tohoku University School of Medicine, Sendai, Japan

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M. NOSE

Corresponding Author

M. NOSE

Department of Pathology, Tohoku University School of Medicine, Sendai, Japan

Dr M. Nose, Department of Pathology, Tohoku University School of Medicine, 2-1, Seiryo-cho, Aoba-ku, Sendai 980, Japan.Search for more papers by this author
T. FUJITA

T. FUJITA

Department of Biochemistry, Fukushima Medical College, Fukushima, Japan

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M. KATO

M. KATO

Department of Pathology, Tohoku University School of Medicine, Sendai, Japan

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A. OHYAMA

A. OHYAMA

Orthopedic Surgery, Yamagata City Hospital, Yamagata, Japan

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M. KYOGOKU

M. KYOGOKU

Department of Pathology, Tohoku University School of Medicine, Sendai, Japan

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First published: March 1991
Citations: 13

SUMMARY

Decay-accelerating factor (DAF), a membrane inhibitor of homologous complement activation, is present in synovial cells liningjoint space and detected in synovial fluid. DAF is considered to protect synovial membrane from complement-mediated injury associated with articular inflammation. We studied the immunohistopathological features of DAF molecules in synovial membrane of rheumatoid synovitis using a DAF-specific monoclonal antibody, IC6. Reacting molecules with the 1C6 antibodies in synovial tissue extracts formed a 70-kD band in Western blot analysis. DAF was strongly detected on the flat synovial lining cells, but weakly on the hyperplastic and multi-layered lining cells in rheumatoid synovitis. The latter cells reacted with anti-Lcu-M3 antibodies specific for a cell surface marker of activated macrophages, sometimes accompanied by C3 and IgM deposition on the superficial synovial membrane. These results suggest that active rheumatoid synovitis characteristically with hyperplastic synovial lining cells is out of control by DAF, thereby permitting further complement-mediated injury.

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