Hsp65-producing Lactococcus lactis prevents experimental autoimmune encephalomyelitis in mice by inducing CD4+LAP+ regulatory T cells

Abstract Heat shock proteins (Hsps) participate in the cellular response to stress and they are hiperexpressed in inflammatory conditions. They are also known to play a major role in immune modulation, controlling, for instance, autoimmune responses. In this study, we showed that oral administration...

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Veröffentlicht in:Journal of autoimmunity 2013-02, Vol.40, p.45-57
Hauptverfasser: Rezende, Rafael M, Oliveira, Rafael P, Medeiros, Samara R, Gomes-Santos, Ana C, Alves, Andrea C, Loli, Flávia G, Guimarães, Mauro A.F, Amaral, Sylvia S, da Cunha, André P, Weiner, Howard L, Azevedo, Vasco, Miyoshi, Anderson, Faria, Ana M.C
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Sprache:eng
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Zusammenfassung:Abstract Heat shock proteins (Hsps) participate in the cellular response to stress and they are hiperexpressed in inflammatory conditions. They are also known to play a major role in immune modulation, controlling, for instance, autoimmune responses. In this study, we showed that oral administration of a recombinant Lactococcus lactis strain that produces and releases LPS-free Hsp65 prevented the development of experimental autoimmune encephalomyelitis (EAE) in C57BL/6 mice. This was confirmed by the reduced inflammatory cell infiltrate and absence of injury signs in the spinal cord. The effect was associated with reduced IL-17 and increased IL-10 production in mesenteric lymph node and spleen cell cultures. Hsp65-producing- L. lactis -fed mice had a remarkable increase in the number of natural and inducible CD4+Foxp3+ regulatory T (Treg) cells and CD4+LAP+ (Latency-associated peptide) Tregs - which express the membrane-bound TGF-β - in spleen, inguinal and mesenteric lymph nodes as well as in spinal cord. Moreover, many Tregs co-expressed Foxp3 and LAP. In vivo depletion of LAP+ cells abrogated the effect of Hsp65-producing L. lactis in EAE prevention and worsened disease in medium-fed mice. Thus, Hsp65- L.lactis seems to boost this critical regulatory circuit involved in controlling EAE development in mice.
ISSN:0896-8411
1095-9157
DOI:10.1016/j.jaut.2012.07.012