Characterization of effector memory CD8+ T cells in the synovial fluid of rheumatoid arthritis. 2012

Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
Department of Anatomy, Seoul National University College of Medicine, 103 Daehak-ro, Jongno-gu, Seoul, 110-799, Republic of Korea.

Little is known about the cellular characteristics of CD8(+) T cells in rheumatoid arthritis (RA). We addressed this by investigating whether the frequency of the CD8(+) T cell subsets and their phenotypic characteristics are altered in the peripheral blood and synovial fluid (SF) from patients with RA. In this study, CD8(+) T cells, mainly CD45RA(-) effector memory (EM) CD8(+) T cells, were increased significantly in the SF, but not in the peripheral blood from RA patients, compared with healthy controls. The synovial EM CD8(+) T cells were activated phenotypes with high levels of CD80, CD86, and PD-1, and had a proliferating signature in vivo upon Ki-67 staining, whereas the Fas-positive cells were prone to apoptosis. In addition, EM CD8(+) T cells in the SF were less cytotoxic, as they expressed less perforin and granzyme B. In particular, the proportions of synovial fluid mononuclear cells that were CCR4(+)CD8(+) T cells and IL-4-producing CD8(+) T cells (i.e., Tc2 cells) were significantly higher than those in peripheral blood mononuclear cells of patients with RA and healthy controls. In addition, the number of IL-10-producing CD8(+) suppressor T (Ts) cells increased significantly in the SF of RA patients. Especially, CD8(+) T cells were inversely correlated with disease activity. These findings strongly suggest that EM CD8(+) T cells in the SF are increased, likely because of inflammation, and they may be involved in modulating inflammation, thereby affecting the development and progression of RA.

UI MeSH Term Description Entries
D007156 Immunologic Memory The altered state of immunologic responsiveness resulting from initial contact with antigen, which enables the individual to produce antibodies more rapidly and in greater quantity in response to secondary antigenic stimulus. Immune Memory,Immunological Memory,Memory, Immunologic,Immune Memories,Immunologic Memories,Immunological Memories,Memory, Immune,Memory, Immunological
D008213 Lymphocyte Activation Morphologic alteration of small B LYMPHOCYTES or T LYMPHOCYTES in culture into large blast-like cells able to synthesize DNA and RNA and to divide mitotically. It is induced by INTERLEUKINS; MITOGENS such as PHYTOHEMAGGLUTININS, and by specific ANTIGENS. It may also occur in vivo as in GRAFT REJECTION. Blast Transformation,Blastogenesis,Lymphoblast Transformation,Lymphocyte Stimulation,Lymphocyte Transformation,Transformation, Blast,Transformation, Lymphoblast,Transformation, Lymphocyte,Activation, Lymphocyte,Stimulation, Lymphocyte
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001172 Arthritis, Rheumatoid A chronic systemic disease, primarily of the joints, marked by inflammatory changes in the synovial membranes and articular structures, widespread fibrinoid degeneration of the collagen fibers in mesenchymal tissues, and by atrophy and rarefaction of bony structures. Etiology is unknown, but autoimmune mechanisms have been implicated. Rheumatoid Arthritis
D013582 Synovial Fluid The clear, viscous fluid secreted by the SYNOVIAL MEMBRANE. It contains mucin, albumin, fat, and mineral salts and serves to lubricate joints. Synovia,Fluid, Synovial,Fluids, Synovial,Synovial Fluids
D015496 CD4-Positive T-Lymphocytes A critical subpopulation of T-lymphocytes involved in the induction of most immunological functions. The HIV virus has selective tropism for the T4 cell which expresses the CD4 phenotypic marker, a receptor for HIV. In fact, the key element in the profound immunosuppression seen in HIV infection is the depletion of this subset of T-lymphocytes. T4 Cells,T4 Lymphocytes,CD4-Positive Lymphocytes,CD4 Positive T Lymphocytes,CD4-Positive Lymphocyte,CD4-Positive T-Lymphocyte,Lymphocyte, CD4-Positive,Lymphocytes, CD4-Positive,T-Lymphocyte, CD4-Positive,T-Lymphocytes, CD4-Positive,T4 Cell,T4 Lymphocyte
D015847 Interleukin-4 A soluble factor produced by activated T-LYMPHOCYTES that induces the expression of MHC CLASS II GENES and FC RECEPTORS on B-LYMPHOCYTES and causes their proliferation and differentiation. It also acts on T-lymphocytes, MAST CELLS, and several other hematopoietic lineage cells. B-Cell Growth Factor-I,B-Cell Stimulatory Factor-1,Binetrakin,IL-4,Mast Cell Growth Factor-2,B Cell Stimulatory Factor-1,B-Cell Growth Factor-1,B-Cell Proliferating Factor,B-Cell Stimulating Factor-1,B-Cell Stimulatory Factor 1,BCGF-1,BSF-1,IL4,MCGF-2,B Cell Growth Factor 1,B Cell Growth Factor I,B Cell Proliferating Factor,B Cell Stimulating Factor 1,B Cell Stimulatory Factor 1,Interleukin 4,Mast Cell Growth Factor 2

Related Publications

Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
June 1992, Journal of autoimmunity,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
October 1997, Annals of the rheumatic diseases,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
December 1989, Journal of autoimmunity,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
January 2003, Arthritis research & therapy,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
July 1995, Annals of the New York Academy of Sciences,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
March 1995, The Journal of rheumatology,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
August 1992, Arthritis and rheumatism,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
January 2004, Scandinavian journal of immunology,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
August 1996, Arthritis and rheumatism,
Bon-A Cho, and Ji Hyun Sim, and Ji Ah Park, and Hye Won Kim, and Wan-Hee Yoo, and Seung-Hyun Lee, and Dong-Sup Lee, and Jae Seung Kang, and Young-Il Hwang, and Wang Jae Lee, and Insoo Kang, and Eun Bong Lee, and Hang-Rae Kim
January 2020, Clinical & translational immunology,
Copied contents to your clipboard!