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PMID: 18318596 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

An antibiotic-responsive mouse model of fulminant ulcerative colitis.

PLoS medicine ·Vol. 5 ·No. 3 ·2008-03-04 ·Pages e41

Kang SS, Bloom SM, Norian LA, Geske MJ, Flavell RA, Stappenbeck TS, Allen PM

Abstract

The constellation of human inflammatory bowel disease (IBD) includes ulcerative colitis and Crohn's disease, which both display a wide spectrum in the severity of pathology. One theory is that multiple genetic hits to the host immune system may contribute to the susceptibility and severity of IBD. However, experimental proof of this concept is still lacking. Several genetic mouse models that each recapitulate some aspects of human IBD have utilized a single gene defect to induce colitis. However, none have produced pathology clearly distinguishable as either ulcerative colitis or Crohn's disease, in part because none of them reproduce the most severe forms of disease that are observed in human patients. This lack of severe IBD models has posed a challenge for research into pathogenic mechanisms and development of new treatments. We hypothesized that multiple genetic hits to the regulatory machinery that normally inhibits immune activation in the intestine would generate more severe, reproducible pathology that would mimic either ulcerative colitis or Crohn's disease. We generated a novel mouse line (dnKO) that possessed defects in both TGFbetaRII and IL-10R2 signaling. These mice rapidly and reproducibly developed a disease resembling fulminant human ulcerative colitis that was quite distinct from the much longer and more variable course of pathology observed previously in mice possessing only single defects. Pathogenesis was driven by uncontrolled production of proinflammatory cytokines resulting in large part from T cell activation. The disease process could be significantly ameliorated by administration of antibodies against IFNgamma and TNFalpha and was completely inhibited by a combination of broad-spectrum antibiotics. Here, we develop to our knowledge the first mouse model of fulminant ulcerative colitis by combining multiple genetic hits in immune regulation and demonstrate that the resulting disease is sensitive to both anticytokine therapy and broad-spectrum antibiotics. These findings indicated the IL-10 and TGFbeta pathways synergize to inhibit microbially induced production of proinflammatory cytokines, including IFNgamma and TNFalpha, which are known to play a role in the pathogenesis of human ulcerative colitis. Our findings also provide evidence that broad-spectrum antibiotics may have an application in the treatment of patients with ulcerative colitis. This model system will be useful in the future to explore the microbial factors that induce immune activation and characterize how these interactions produce disease.

MeSH Terms
Animals Anti-Bacterial Agents/therapeutic use CD4-Positive T-Lymphocytes/cytology Colitis, Ulcerative/drug therapy,pathology Disease Models, Animal Failure to Thrive Female Homeodomain Proteins/metabolism Humans Inflammation Mediators/blood Interferon-gamma/metabolism Lymphocyte Activation Male Mice Mice, Inbred C57BL Mice, Knockout Neutralization Tests Protein Serine-Threonine Kinases/deficiency Receptor, Transforming Growth Factor-beta Type II Receptors, Interleukin-10/deficiency Receptors, Transforming Growth Factor beta/deficiency Signal Transduction Survival Rate Tumor Necrosis Factor-alpha/metabolism Weight Loss
Chemicals
Anti-Bacterial Agents Homeodomain Proteins Inflammation Mediators Receptors, Interleukin-10 Receptors, Transforming Growth Factor beta Tumor Necrosis Factor-alpha RAG-1 protein Interferon-gamma Protein Serine-Threonine Kinases Receptor, Transforming Growth Factor-beta Type II
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Kang Silvia S
Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri, United States of America.
Bloom Seth M
Norian Lyse A
Geske Michael J
Flavell Richard A
Stappenbeck Thaddeus S
Allen Paul M
References (67)
67 references, click to expand
  1. A major quantitative trait locus on chromosome 3 controls colitis severity in IL-10-deficient mice.
    Proc Natl Acad Sci U S A. 2001 Nov 20;98(24):13820-5 PMID: 11707574
  2. Macrophages that have ingested apoptotic cells in vitro inhibit proinflammatory cytokine production through autocrine/paracrine mechanisms involving TGF-beta, PGE2, and PAF.
    J Clin Invest. 1998 Feb 15;101(4):890-8 PMID: 9466984
  3. The use of metronidazole, tinidazole and dimetridazole in eliminating trichomonads from laboratory mice.
    Lab Anim. 1988 Oct;22(4):361-4 PMID: 3230872
  4. In vitro generation of interleukin 10-producing regulatory CD4(+) T cells is induced by immunosuppressive drugs and inhibited by T helper type 1 (Th1)- and Th2-inducing cytokines.
    J Exp Med. 2002 Mar 4;195(5):603-16 PMID: 11877483
  5. Inflammatory bowel disease: clinical aspects and established and evolving therapies.
    Lancet. 2007 May 12;369(9573):1641-57 PMID: 17499606
  6. Unravelling the pathogenesis of inflammatory bowel disease.
    Nature. 2007 Jul 26;448(7152):427-34 PMID: 17653185
  7. Enterocolitis and colon cancer in interleukin-10-deficient mice are associated with aberrant cytokine production and CD4(+) TH1-like responses.
    J Clin Invest. 1996 Aug 15;98(4):1010-20 PMID: 8770874
  8. A CD4+ T-cell subset inhibits antigen-specific T-cell responses and prevents colitis.
    Nature. 1997 Oct 16;389(6652):737-42 PMID: 9338786
  9. Interleukin-22 activates STAT3 and induces IL-10 by colon epithelial cells.
    Int Immunopharmacol. 2004 May;4(5):679-91 PMID: 15120652
  10. Resident enteric bacteria are necessary for development of spontaneous colitis and immune system activation in interleukin-10-deficient mice.
    Infect Immun. 1998 Nov;66(11):5224-31 PMID: 9784526
  11. IL-23 plays a key role in Helicobacter hepaticus-induced T cell-dependent colitis.
    J Exp Med. 2006 Oct 30;203(11):2485-94 PMID: 17030948
  12. Role of cytokines in the pathogenesis of inflammatory bowel disease.
    Annu Rev Med. 2000;51:289-98 PMID: 10774465
  13. Interleukin-22, a member of the IL-10 subfamily, induces inflammatory responses in colonic subepithelial myofibroblasts.
    Gastroenterology. 2005 Sep;129(3):969-84 PMID: 16143135
  14. Disparate CD4+ lamina propria (LP) lymphokine secretion profiles in inflammatory bowel disease. Crohn's disease LP cells manifest increased secretion of IFN-gamma, whereas ulcerative colitis LP cells manifest increased secretion of IL-5.
    J Immunol. 1996 Aug 1;157(3):1261-70 PMID: 8757634
  15. Inflammatory bowel disease in C.B-17 scid mice reconstituted with the CD45RBhigh subset of CD4+ T cells.
    Am J Pathol. 1996 May;148(5):1503-15 PMID: 8623920
  16. Mutations in T-cell antigen receptor genes alpha and beta block thymocyte development at different stages.
    Nature. 1992 Nov 19;360(6401):225-31 PMID: 1359428
  17. Differential activity of IL-12 and IL-23 in mucosal and systemic innate immune pathology.
    Immunity. 2006 Aug;25(2):309-18 PMID: 16919486
  18. Different subsets of enteric bacteria induce and perpetuate experimental colitis in rats and mice.
    Infect Immun. 2001 Apr;69(4):2277-85 PMID: 11254584
  19. IL-23 is essential for T cell-mediated colitis and promotes inflammation via IL-17 and IL-6.
    J Clin Invest. 2006 May;116(5):1310-6 PMID: 16670770
  20. Regulatory activity of autocrine IL-10 on dendritic cell functions.
    J Immunol. 2001 Apr 1;166(7):4312-8 PMID: 11254683
  21. Helicobacter hepaticus triggers colitis in specific-pathogen-free interleukin-10 (IL-10)-deficient mice through an IL-12- and gamma interferon-dependent mechanism.
    Infect Immun. 1998 Nov;66(11):5157-66 PMID: 9784517
  22. Ulcerative colitis and adenocarcinoma of the colon in G alpha i2-deficient mice.
    Nat Genet. 1995 Jun;10(2):143-50 PMID: 7663509
  23. Development of the human infant intestinal microbiota.
    PLoS Biol. 2007 Jul;5(7):e177 PMID: 17594176
  24. Interleukin-10 and related cytokines and receptors.
    Annu Rev Immunol. 2004;22:929-79 PMID: 15032600
  25. The interrelated roles of TGF-beta and IL-10 in the regulation of experimental colitis.
    J Immunol. 2002 Jan 15;168(2):900-8 PMID: 11777988
  26. The orphan receptor CRF2-4 is an essential subunit of the interleukin 10 receptor.
    J Exp Med. 1998 Feb 16;187(4):571-8 PMID: 9463407
  27. Novel p19 protein engages IL-12p40 to form a cytokine, IL-23, with biological activities similar as well as distinct from IL-12.
    Immunity. 2000 Nov;13(5):715-25 PMID: 11114383
  28. CD25+ CD4+ T cells regulate the expansion of peripheral CD4 T cells through the production of IL-10.
    J Immunol. 2001 Mar 1;166(5):3008-18 PMID: 11207250
  29. Inhibition of Th1 responses prevents inflammatory bowel disease in scid mice reconstituted with CD45RBhi CD4+ T cells.
    Immunity. 1994 Oct;1(7):553-62 PMID: 7600284
  30. Interleukin-23 rather than interleukin-12 is the critical cytokine for autoimmune inflammation of the brain.
    Nature. 2003 Feb 13;421(6924):744-8 PMID: 12610626
  31. Optimizing therapy in patients with pancolitis.
    Inflamm Bowel Dis. 2005 Oct;11(10):937-46 PMID: 16189424
  32. Interleukin-23 drives innate and T cell-mediated intestinal inflammation.
    J Exp Med. 2006 Oct 30;203(11):2473-83 PMID: 17030949
  33. IL-22 is increased in active Crohn's disease and promotes proinflammatory gene expression and intestinal epithelial cell migration.
    Am J Physiol Gastrointest Liver Physiol. 2006 Apr;290(4):G827-38 PMID: 16537974
  34. Activated macrophages are an adaptive element of the colonic epithelial progenitor niche necessary for regenerative responses to injury.
    Proc Natl Acad Sci U S A. 2005 Jan 4;102(1):99-104 PMID: 15615857
  35. Interleukin-10 and the interleukin-10 receptor.
    Annu Rev Immunol. 2001;19:683-765 PMID: 11244051
  36. Interleukin-10-deficient mice develop chronic enterocolitis.
    Cell. 1993 Oct 22;75(2):263-74 PMID: 8402911
  37. A murine model of Madurella mycetomatis eumycetoma.
    FEMS Immunol Med Microbiol. 2003 Jun 10;37(1):29-36 PMID: 12770757
  38. IL-10 inhibits cytokine production by activated macrophages.
    J Immunol. 1991 Dec 1;147(11):3815-22 PMID: 1940369
  39. Recognition of commensal microflora by toll-like receptors is required for intestinal homeostasis.
    Cell. 2004 Jul 23;118(2):229-41 PMID: 15260992
  40. Abrogation of TGFbeta signaling in T cells leads to spontaneous T cell differentiation and autoimmune disease.
    Immunity. 2000 Feb;12(2):171-81 PMID: 10714683
  41. Anti-interleukin-12 antibody for active Crohn's disease.
    N Engl J Med. 2004 Nov 11;351(20):2069-79 PMID: 15537905
  42. IL-10 and TGF-beta induce alloreactive CD4+CD25- T cells to acquire regulatory cell function.
    Blood. 2003 Jun 15;101(12):5076-83 PMID: 12609834
  43. T cells that cannot respond to TGF-beta escape control by CD4(+)CD25(+) regulatory T cells.
    J Exp Med. 2005 Mar 7;201(5):737-46 PMID: 15753207
  44. Generation and characterization of hamster monoclonal antibodies that neutralize murine tumor necrosis factors.
    J Immunol. 1989 Jun 1;142(11):3884-93 PMID: 2469726
  45. Transforming growth factor-beta controls development, homeostasis, and tolerance of T cells by regulatory T cell-dependent and -independent mechanisms.
    Immunity. 2006 Sep;25(3):455-71 PMID: 16973386
  46. Heritable susceptibility for colitis in mice induced by IL-10 deficiency.
    Inflamm Bowel Dis. 2000 Nov;6(4):290-302 PMID: 11149562
  47. The immunology of mucosal models of inflammation.
    Annu Rev Immunol. 2002;20:495-549 PMID: 11861611
  48. Colitogenic Th1 cells are present in the antigen-experienced T cell pool in normal mice: control by CD4+ regulatory T cells and IL-10.
    J Immunol. 2003 Jul 15;171(2):971-8 PMID: 12847269
  49. Characterization of Foxp3+CD4+CD25+ and IL-10-secreting CD4+CD25+ T cells during cure of colitis.
    J Immunol. 2006 Nov 1;177(9):5852-60 PMID: 17056509
  50. T cells in inflammatory bowel disease: protective and pathogenic roles.
    Immunity. 1995 Aug;3(2):171-4 PMID: 7648390
  51. Keratin-8-deficient mice develop chronic spontaneous Th2 colitis amenable to antibiotic treatment.
    J Cell Sci. 2005 May 1;118(Pt 9):1971-80 PMID: 15840656
  52. Use of antibiotics in the treatment of inflammatory bowel disease.
    Inflamm Bowel Dis. 2006 Jul;12(7):651-64 PMID: 16804403
  53. Experimental models of inflammatory bowel disease reveal innate, adaptive, and regulatory mechanisms of host dialogue with the microbiota.
    Immunol Rev. 2005 Aug;206:260-76 PMID: 16048554
  54. Cellular mechanisms of fatal early-onset autoimmunity in mice with the T cell-specific targeting of transforming growth factor-beta receptor.
    Immunity. 2006 Sep;25(3):441-54 PMID: 16973387
  55. Neutralization of tumour necrosis factor (TNF) but not of IL-1 reduces inflammation in chronic dextran sulphate sodium-induced colitis in mice.
    Clin Exp Immunol. 1997 Feb;107(2):353-8 PMID: 9030875
  56. Antibiotics with a selective aerobic or anaerobic spectrum have different therapeutic activities in various regions of the colon in interleukin 10 gene deficient mice.
    Gut. 2003 Dec;52(12):1721-7 PMID: 14633949
  57. The straw that stirs the drink: insight into the pathogenesis of inflammatory bowel disease revealed through the study of microflora-induced inflammation in genetically modified mice.
    Inflamm Bowel Dis. 2007 Apr;13(4):490-500 PMID: 17243141
  58. Monoclonal antibodies to murine gamma-interferon which differentially modulate macrophage activation and antiviral activity.
    J Immunol. 1985 Mar;134(3):1609-18 PMID: 2578513
  59. Interleukin 10 prevents cytokine-induced disruption of T84 monolayer barrier integrity and limits chloride secretion.
    Gastroenterology. 1997 Jul;113(1):151-9 PMID: 9207273
  60. Targeting enteric bacteria in treatment of inflammatory bowel diseases: why, how, and when.
    Curr Opin Gastroenterol. 2003 Jul;19(4):358-65 PMID: 15703577
  61. Antimicrobials in the management of inflammatory bowel disease.
    Digestion. 2006;73 Suppl 1:77-85 PMID: 16498255
  62. Ulcerative colitis-like disease in mice with a disrupted interleukin-2 gene.
    Cell. 1993 Oct 22;75(2):253-61 PMID: 8402910
  63. Transforming growth factor-beta regulation of immune responses.
    Annu Rev Immunol. 2006;24:99-146 PMID: 16551245
  64. A genome-wide association study identifies IL23R as an inflammatory bowel disease gene.
    Science. 2006 Dec 1;314(5804):1461-3 PMID: 17068223
  65. A role for TNF-alpha and mucosal T helper-1 cytokines in the pathogenesis of Crohn's disease.
    J Immunol. 1997 Dec 15;159(12):6276-82 PMID: 9550432
  66. Differentiation of Tr1 cells by immature dendritic cells requires IL-10 but not CD25+CD4+ Tr cells.
    Blood. 2005 Feb 1;105(3):1162-9 PMID: 15479730
  67. Antibodies to interleukin 12 abrogate established experimental colitis in mice.
    J Exp Med. 1995 Nov 1;182(5):1281-90 PMID: 7595199
Article Info
Journal
PLoS medicine
Abbr.
PLoS Med
ISSN
1549-1676
Published
2008-03-04
Pages
e41
Language
English
Region
United States
NLM ID
101231360
PMCID
PMC2270287
Subset
IM
Corrections
CommentIn
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