Home LiteratureArticle Details
PMID: 19332874 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

In vivo expansion of T reg cells with IL-2-mAb complexes: induction of resistance to EAE and long-term acceptance of islet allografts without immunosuppression.

The Journal of experimental medicine ·Vol. 206 ·No. 4 ·2009-04-13 ·Pages 751-60

Webster KE, Walters S, Kohler RE, Mrkvan T, Boyman O, Surh CD, Grey ST, Sprent J

Abstract

Via a transcription factor, Foxp3, immunoregulatory CD4(+)CD25(+) T cells (T reg cells) play an important role in suppressing the function of other T cells. Adoptively transferring high numbers of T reg cells can reduce the intensity of the immune response, thereby providing an attractive prospect for inducing tolerance. Extending our previous findings, we describe an in vivo approach for inducing rapid expansion of T reg cells by injecting mice with interleukin (IL)-2 mixed with a particular IL-2 monoclonal antibody (mAb). Injection of these IL-2-IL-2 mAb complexes for a short period of 3 d induces a marked (>10-fold) increase in T reg cell numbers in many organs, including the liver and gut as well as the spleen and lymph nodes, and a modest increase in the thymus. The expanded T reg cells survive for 1-2 wk and are highly activated and display superior suppressive function. Pretreating with the IL-2-IL-2 mAb complexes renders the mice resistant to induction of experimental autoimmune encephalomyelitis; combined with rapamycin, the complexes can also be used to treat ongoing disease. In addition, pretreating mice with the complexes induces tolerance to fully major histocompatibility complex-incompatible pancreatic islets in the absence of immunosuppression. Tolerance is robust and the majority of grafts are accepted indefinitely. The approach described for T reg cell expansion has clinical potential for treating autoimmune disease and promoting organ transplantation.

MeSH Terms
Animals Antibodies, Monoclonal/pharmacology CD4-Positive T-Lymphocytes/drug effects,immunology Cell Division Encephalomyelitis, Autoimmune, Experimental/immunology Genes, RAG-1 Glycoproteins/immunology Graft Survival/immunology Immunophenotyping Interleukin-2/immunology,pharmacology Interleukin-2 Receptor alpha Subunit/immunology Islets of Langerhans Transplantation/immunology Lymphocyte Activation Mice Mice, Inbred BALB C Mice, Inbred C57BL Mice, Inbred CBA Mice, Knockout Myelin-Oligodendrocyte Glycoprotein Peptide Fragments/immunology T-Lymphocytes, Regulatory/drug effects,immunology Transplantation, Homologous/immunology
Chemicals
Antibodies, Monoclonal Glycoproteins Interleukin-2 Interleukin-2 Receptor alpha Subunit Myelin-Oligodendrocyte Glycoprotein Peptide Fragments myelin oligodendrocyte glycoprotein (34-56)
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Webster Kylie E
Garvan Institute of Medical Research, Darlinghurst, NSW, Australia.
Walters Stacey
Kohler Rachel E
Mrkvan Tomas
Boyman Onur
Surh Charles D
Grey Shane T
Sprent Jonathan
References (28)
28 references, click to expand
  1. Induction of antigen-specific immunologic tolerance by in vivo and in vitro antigen-specific expansion of naturally arising Foxp3+CD25+CD4+ regulatory T cells.
    Int Immunol. 2004 Aug;16(8):1189-201 PMID: 15237110
  2. The interleukin-2 T-cell system: a new cell growth model.
    Science. 1984 Jun 22;224(4655):1312-6 PMID: 6427923
  3. Control of regulatory T cell development by the transcription factor Foxp3.
    Science. 2003 Feb 14;299(5609):1057-61 PMID: 12522256
  4. Identification of regulatory T cells in tolerated allografts.
    J Exp Med. 2002 Jun 17;195(12):1641-6 PMID: 12070291
  5. In vitro-expanded antigen-specific regulatory T cells suppress autoimmune diabetes.
    J Exp Med. 2004 Jun 7;199(11):1455-65 PMID: 15184499
  6. Nuclear factor-kappaB regulates beta-cell death: a critical role for A20 in beta-cell protection.
    Diabetes. 2006 Sep;55(9):2491-501 PMID: 16936197
  7. Myelin-specific regulatory T cells accumulate in the CNS but fail to control autoimmune inflammation.
    Nat Med. 2007 Apr;13(4):423-31 PMID: 17384649
  8. Central role of defective interleukin-2 production in the triggering of islet autoimmune destruction.
    Immunity. 2008 May;28(5):687-97 PMID: 18468463
  9. Prevention of acute and chronic allograft rejection with CD4+CD25+Foxp3+ regulatory T lymphocytes.
    Nat Med. 2008 Jan;14(1):88-92 PMID: 18066074
  10. Increased CD4+Foxp3+ T cells in BAFF-transgenic mice suppress T cell effector responses.
    J Immunol. 2009 Jan 15;182(2):793-801 PMID: 19124722
  11. Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases.
    J Immunol. 1995 Aug 1;155(3):1151-64 PMID: 7636184
  12. A function for interleukin 2 in Foxp3-expressing regulatory T cells.
    Nat Immunol. 2005 Nov;6(11):1142-51 PMID: 16227984
  13. An essential role for interleukin 10 in the function of regulatory T cells that inhibit intestinal inflammation.
    J Exp Med. 1999 Oct 4;190(7):995-1004 PMID: 10510089
  14. Regulatory T cells in transplantation tolerance.
    Nat Rev Immunol. 2003 Mar;3(3):199-210 PMID: 12658268
  15. Deacetylase inhibition promotes the generation and function of regulatory T cells.
    Nat Med. 2007 Nov;13(11):1299-307 PMID: 17922010
  16. Suppression of murine allergic airway disease by IL-2:anti-IL-2 monoclonal antibody-induced regulatory T cells.
    J Immunol. 2008 Nov 15;181(10):6942-54 PMID: 18981114
  17. Transient expression of interleukin 2 receptors. Consequences for T cell growth.
    J Exp Med. 1983 Dec 1;158(6):1895-911 PMID: 6606011
  18. A myelin oligodendrocyte glycoprotein peptide induces typical chronic experimental autoimmune encephalomyelitis in H-2b mice: fine specificity and T cell receptor V beta expression of encephalitogenic T cells.
    Eur J Immunol. 1995 Jul;25(7):1951-9 PMID: 7621871
  19. Streptozotocin-induced pancreatic insulitis: new model of diabetes mellitus.
    Science. 1976 Jul 30;193(4251):415-7 PMID: 180605
  20. Development and function of agonist-induced CD25+Foxp3+ regulatory T cells in the absence of interleukin 2 signaling.
    Nat Immunol. 2005 Nov;6(11):1152-9 PMID: 16227983
  21. Foxp3 programs the development and function of CD4+CD25+ regulatory T cells.
    Nat Immunol. 2003 Apr;4(4):330-6 PMID: 12612578
  22. CD25+CD4+ T cells contribute to the control of memory CD8+ T cells.
    Proc Natl Acad Sci U S A. 2002 Jun 25;99(13):8832-7 PMID: 12084927
  23. Rapamycin selectively expands CD4+CD25+FoxP3+ regulatory T cells.
    Blood. 2005 Jun 15;105(12):4743-8 PMID: 15746082
  24. Homeostatic maintenance of natural Foxp3(+) CD25(+) CD4(+) regulatory T cells by interleukin (IL)-2 and induction of autoimmune disease by IL-2 neutralization.
    J Exp Med. 2005 Mar 7;201(5):723-35 PMID: 15753206
  25. In vitro-expanded donor alloantigen-specific CD4+CD25+ regulatory T cells promote experimental transplantation tolerance.
    Blood. 2007 Jan 15;109(2):827-35 PMID: 17003369
  26. IL-17 plays an important role in the development of experimental autoimmune encephalomyelitis.
    J Immunol. 2006 Jul 1;177(1):566-73 PMID: 16785554
  27. Selective stimulation of T cell subsets with antibody-cytokine immune complexes.
    Science. 2006 Mar 31;311(5769):1924-7 PMID: 16484453
  28. The IL-2/IL-2 receptor system: a current overview.
    Cell. 1993 Apr 9;73(1):5-8 PMID: 8462103
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
1540-9538
Published
2009-04-13
Epub
2009-00-30
Pages
751-60
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2715127
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com