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PMID: 17304105 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

The contribution of CD4+ CD25+ T-regulatory-cells to immune suppression in sepsis.

Shock (Augusta, Ga.) ·Vol. 27 ·No. 3 ·2007-03-00 ·Pages 251-7

Wisnoski N, Chung CS, Chen Y, Huang X, Ayala A

Abstract

Studies have indicated that there is a development of generalized immune dysfunction after septic insult. However, the mechanisms responsible for these changes remain unclear. Recently, accumulating evidence shows that several lymphocyte subpopulations such as NKT-, CD4(+)-Th2-T-, CD8(+)-T-, gammadelta-T-, and CD4+ CD25+ T regulatory cells are capable of actively contributing to the induction of septic immune suppression. Thus, our aim was to investigate the contribution of CD4+ CD25+ cells to the immune dysfunction seen in sepsis. To study this, C57BL/6J, C57BL/6-Il6(tm1Kopf) (interleukin [IL] 6 -/-), and C57BL/6-Il10(tm1Cgn) (IL-10 -/-) mice were subjected to cecal ligation and puncture (CLP) or sham operations. Twenty-four hours later, blood was collected, and splenocytes were isolated. Phenotypic expression of CD4/CD25 (by fluorescence-activated cell sorter), cell proliferation (presented as proliferation index = [with anti-CD3]/[without anti-CD3]), and immune suppressive capacity (by in vitro add-back experiments) were assessed. The results indicate a marked elevation in CD4+ CD25+ cell levels and their proliferation index after sepsis in background mice. CD4+ CD25- cells from sham and CLP mice proliferated equally. However, coculture of CD4+ CD25- with CD4+ CD25+ cells suppressed their proliferation in both sham and CLP mice. Depletion of CD25+ cells in vivo before CLP markedly restored CD4+ CD25- proliferative capacity and Th1 cytokine release while not altering plasma proinflammatory cytokine levels. Subsequently, IL-6 -/- and IL-10 -/- mice were used to elucidate the possible mediator(s) regulating the changes seen after sepsis. Although CD4+ CD25+ cells increased after septic insult in both C57BL/6J and IL-6 -/- mice, this was not observed in IL-10 -/- mice. Similarly, in vitro proliferation studies showed that proliferation index increased in CD4+ CD25+ cells from septic C57BL/6J and IL6 -/- mice, but it remained the same in IL-10 -/- mice. Surprisingly, depletion of CD25+ cells before inducing sepsis did not alter septic mortality. Together, these findings suggest that although CD4+ CD25+ T regulatory cells induced by IL-10 seem to contribute to aspects of sepsis-induced lymphoid immune suppression, the oblation of CD25+ cells does not provide a survival advantage or disadvantage.

MeSH Terms
Animals CD3 Complex/metabolism CD4 Antigens/biosynthesis CD4-Positive T-Lymphocytes/metabolism Cell Separation Interleukin-10/metabolism Interleukin-2 Receptor alpha Subunit/biosynthesis Mice Mice, Inbred C3H Mice, Inbred C57BL Sepsis/blood,immunology T-Lymphocytes, Regulatory/immunology Th1 Cells/cytology Th2 Cells/cytology Tissue Distribution
Chemicals
CD3 Complex CD4 Antigens Interleukin-2 Receptor alpha Subunit Interleukin-10
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wisnoski Nicholas
Shock-Trauma Research Laboratories in the Division of Surgical Research, Department of Surgery, Rhode Island Hospital and Brown University School of Medicine, Providence, Rhode Island 02903, USA.
Chung Chun-Shiang
Chen Yaping
Huang Xin
Ayala Alfred
References (31)
31 references, click to expand
  1. CD1-reactive natural killer T cells are required for development of systemic tolerance through an immune-privileged site.
    J Exp Med. 1999 Nov 1;190(9):1215-26 PMID: 10544194
  2. Silencing of Fas, but not caspase-8, in lung epithelial cells ameliorates pulmonary apoptosis, inflammation, and neutrophil influx after hemorrhagic shock and sepsis.
    Am J Pathol. 2005 Dec;167(6):1545-59 PMID: 16314469
  3. T regulatory cells 1 inhibit a Th2-specific response in vivo.
    J Immunol. 2000 Nov 1;165(9):4848-53 PMID: 11046008
  4. Certified professionals: CD4(+)CD25(+) suppressor T cells.
    J Exp Med. 2001 Jun 4;193(11):F41-6 PMID: 11390442
  5. MAPK p38 antagonism as a novel method of inhibiting lymphoid immune suppression in polymicrobial sepsis.
    Am J Physiol Cell Physiol. 2001 Aug;281(2):C662-9 PMID: 11443065
  6. Regulatory T cells in the control of immune pathology.
    Nat Immunol. 2001 Sep;2(9):816-22 PMID: 11526392
  7. Immunologic tolerance maintained by CD25+ CD4+ regulatory T cells: their common role in controlling autoimmunity, tumor immunity, and transplantation tolerance.
    Immunol Rev. 2001 Aug;182:18-32 PMID: 11722621
  8. Stimulation of CD25(+)CD4(+) regulatory T cells through GITR breaks immunological self-tolerance.
    Nat Immunol. 2002 Feb;3(2):135-42 PMID: 11812990
  9. CD4(+)CD25(+) immunoregulatory T cells: gene expression analysis reveals a functional role for the glucocorticoid-induced TNF receptor.
    Immunity. 2002 Feb;16(2):311-23 PMID: 11869690
  10. Anti-IL-10 therapeutic strategy using the immunomodulator AS101 in protecting mice from sepsis-induced death: dependence on timing of immunomodulating intervention.
    J Immunol. 2002 Jul 1;169(1):384-92 PMID: 12077268
  11. CD4+ CD25+ suppressor T cells: more questions than answers.
    Nat Rev Immunol. 2002 Jun;2(6):389-400 PMID: 12093005
  12. Pathological aspects of apoptosis in severe sepsis and shock?
    Int J Biochem Cell Biol. 2003 Jan;35(1):7-15 PMID: 12467642
  13. Toll pathway-dependent blockade of CD4+CD25+ T cell-mediated suppression by dendritic cells.
    Science. 2003 Feb 14;299(5609):1033-6 PMID: 12532024
  14. Marked elevation of human circulating CD4+CD25+ regulatory T cells in sepsis-induced immunoparalysis.
    Crit Care Med. 2003 Jul;31(7):2068-71 PMID: 12847405
  15. Systemic overexpression of IL-10 induces CD4+CD25+ cell populations in vivo and ameliorates type 1 diabetes in nonobese diabetic mice in a dose-dependent fashion.
    J Immunol. 2003 Sep 1;171(5):2270-8 PMID: 12928371
  16. Naturally arising CD4+ regulatory t cells for immunologic self-tolerance and negative control of immune responses.
    Annu Rev Immunol. 2004;22:531-62 PMID: 15032588
  17. Foxp3: a critical regulator of the development and function of regulatory T cells.
    Microbes Infect. 2004 Jul;6(8):745-51 PMID: 15207821
  18. Polymicrobial sepsis induces divergent effects on splenic and peritoneal dendritic cell function in mice.
    Shock. 2004 Aug;22(2):137-44 PMID: 15257086
  19. Polymicrobial sepsis selectively activates peritoneal but not alveolar macrophages to release inflammatory mediators (interleukins-1 and -6 and tumor necrosis factor).
    Circ Shock. 1992 Mar;36(3):191-9 PMID: 1611704
  20. Polymicrobial sepsis but not low-dose endotoxin infusion causes decreased splenocyte IL-2/IFN-gamma release while increasing IL-4/IL-10 production.
    J Surg Res. 1994 Jun;56(6):579-85 PMID: 8015314
  21. Altered IL-10 levels in trauma patients' M phi and T lymphocytes.
    J Clin Immunol. 1995 Mar;15(2):93-104 PMID: 7559913
  22. Factors responsible for peritoneal granulocyte apoptosis during sepsis.
    J Surg Res. 1997 Apr;69(1):67-75 PMID: 9202649
  23. IL-10 is a major mediator of sepsis-induced impairment in lung antibacterial host defense.
    J Immunol. 1999 Jan 1;162(1):392-9 PMID: 9886412
  24. T-cell reactivity and its predictive role in immunosuppression after burns.
    Crit Care Med. 1999 Jan;27(1):66-72 PMID: 9934895
  25. Does Fas ligand or endotoxin contribute to thymic apoptosis during polymicrobial sepsis?
    Shock. 1999 Mar;11(3):211-7 PMID: 10188775
  26. What is the role of interleukin 10 in polymicrobial sepsis: anti-inflammatory agent or immunosuppressant?
    Surgery. 1999 Aug;126(2):378-83 PMID: 10455909
  27. Increased percentage of CD4+CD25+ regulatory T cells during septic shock is due to the decrease of CD4+CD25- lymphocytes.
    Crit Care Med. 2004 Nov;32(11):2329-31 PMID: 15640650
  28. A well adapted regulatory contrivance: regulatory T cell development and the forkhead family transcription factor Foxp3.
    Nat Immunol. 2005 Apr;6(4):331-7 PMID: 15785758
  29. In vivo delivery of caspase-8 or Fas siRNA improves the survival of septic mice.
    Blood. 2005 Oct 1;106(7):2295-301 PMID: 15941915
  30. Loss of signal transducer and activator of transduction 4 or 6 signaling contributes to immune cell morbidity and mortality in sepsis.
    Intensive Care Med. 2005 Nov;31(11):1564-9 PMID: 16172848
  31. Regulatory T cells in autoimmmunity*.
    Annu Rev Immunol. 2000;18:423-49 PMID: 10837065
Article Info
Journal
Shock (Augusta, Ga.)
Abbr.
Shock
ISSN
1073-2322
Published
2007-03-00
Pages
251-7
Language
English
Region
United States
NLM ID
9421564
PMCID
PMC1805637
Subset
IM
Grants
NIGMS NIH HHS · R01 GM046354 · United States
NIGMS NIH HHS · R01-GM46354 · United States
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