The persistence of activated T cells in rheumatoid arthritis (RA) synovium may be attributable to increased homing, increased retention or a possible imbalance between cell proliferation and programmed cell death. Induction of apoptosis may represent a potential therapeutic approach. Galactoxylomannan (GalXM) from the opportunistic fungus Cryptococcus neoformans can interact with T cells and induce T-cell apoptosis through the inhibition of CD45 phosphatase activity. The aim of this study was to determine the effect of GalXM on circulating T cells from patients with RA and the underlying mechanisms. GalXM immunomodulating effect on apoptosis and signal transduction pathway involved in IL-17A production was evaluated on T cells. RA T-cell apoptosis, higher than that of control T cells, was further increased by GalXM through induction of caspase-3 activation. Activated T cells expressing the CD45RO molecule and producing IL-17A were the main target of GalXM-induced apoptosis. GalXM induced consistent impairment of IL-17A production and inhibition of STAT3, which was hyperactivated in RA. In conclusion, GalXM triggered apoptosis of activated memory T cells and interfered with IL-17A production in RA. These data suggest therapeutic targeting of deleterious Th17 cells in RA and other autoimmune diseases.

The Microbial Capsular Polysaccharide Galactoxylomannan Inhibits IL-17A Production in Circulating T Cells from Rheumatoid Arthritis Patients / Pericolini, Eva; Alunno, Alessia; Gabrielli, Elena; Bartoloni, Elena; Cenci, Elio; Chow, Siu Kei; Bistoni, Giovanni; Casadevall, Arturo; Gerli, Roberto; Vecchiarelli, Anna. - In: PLOS ONE. - ISSN 1932-6203. - ELETTRONICO. - 8:1(2013), p. e53336. [10.1371/journal.pone.0053336]

The Microbial Capsular Polysaccharide Galactoxylomannan Inhibits IL-17A Production in Circulating T Cells from Rheumatoid Arthritis Patients

ALUNNO, ALESSIA;BISTONI, GIOVANNI;
2013

Abstract

The persistence of activated T cells in rheumatoid arthritis (RA) synovium may be attributable to increased homing, increased retention or a possible imbalance between cell proliferation and programmed cell death. Induction of apoptosis may represent a potential therapeutic approach. Galactoxylomannan (GalXM) from the opportunistic fungus Cryptococcus neoformans can interact with T cells and induce T-cell apoptosis through the inhibition of CD45 phosphatase activity. The aim of this study was to determine the effect of GalXM on circulating T cells from patients with RA and the underlying mechanisms. GalXM immunomodulating effect on apoptosis and signal transduction pathway involved in IL-17A production was evaluated on T cells. RA T-cell apoptosis, higher than that of control T cells, was further increased by GalXM through induction of caspase-3 activation. Activated T cells expressing the CD45RO molecule and producing IL-17A were the main target of GalXM-induced apoptosis. GalXM induced consistent impairment of IL-17A production and inhibition of STAT3, which was hyperactivated in RA. In conclusion, GalXM triggered apoptosis of activated memory T cells and interfered with IL-17A production in RA. These data suggest therapeutic targeting of deleterious Th17 cells in RA and other autoimmune diseases.
2013
Aged; Antigens, CD45; Apoptosis; Arthritis, Rheumatoid; Caspase 3; Cell Proliferation; Cells, Cultured; Cryptococcus neoformans; Female; Fungal Polysaccharides; Gene Expression; Humans; Immunologic Memory; Interleukin-17; Lymphocyte Activation; Male; Middle Aged; Polysaccharides; STAT3 Transcription Factor; Signal Transduction; Synovial Fluid; Th17 Cells; Agricultural and Biological Sciences (all); Biochemistry, Genetics and Molecular Biology (all); Medicine (all)
01 Pubblicazione su rivista::01a Articolo in rivista
The Microbial Capsular Polysaccharide Galactoxylomannan Inhibits IL-17A Production in Circulating T Cells from Rheumatoid Arthritis Patients / Pericolini, Eva; Alunno, Alessia; Gabrielli, Elena; Bartoloni, Elena; Cenci, Elio; Chow, Siu Kei; Bistoni, Giovanni; Casadevall, Arturo; Gerli, Roberto; Vecchiarelli, Anna. - In: PLOS ONE. - ISSN 1932-6203. - ELETTRONICO. - 8:1(2013), p. e53336. [10.1371/journal.pone.0053336]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/815913
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