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Experimental and Molecular PathologyVolume 105, Issue 1, August 2018, Pages 10-22

Collagen-induced arthritis in Dark Agouti rats as a model for study of immunological sexual dimorphisms in the human disease(Article)

  • Dimitrijević, M.,
  • Arsenović-Ranin, N.,
  • Bufan, B.,
  • Nacka-Aleksić, M.,
  • Macanović, M.L.,
  • Milovanović, P.,
  • Đurić, M.,
  • Sopta, J.,
  • Leposavić, G.
  • View Correspondence (jump link)
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  • aDepartment of Immunology, Institute for Biological Research “Siniša Stanković”, University of Belgrade, Belgrade, Serbia
  • bDepartment of Microbiology and Immunology, University of Belgrade-Faculty of Pharmacy, Vojvode Stepe 450, Belgrade, Serbia
  • cDepartment of Physiology, University of Belgrade-Faculty of Pharmacy, Vojvode Stepe 450, Belgrade, Serbia
  • dDepartment of Radiology and Radiation hygiene, University of Belgrade-Faculty of Veterinary Medicine, Bulevar oslobođenja 18, Belgrade, Serbia
  • eLaboratory for Anthropology, Institute of Anatomy, University of Belgrade-Faculty of Medicine, Dr Subotića 4/2, Belgrade, Serbia
  • fDepartment for Pathology, University of Belgrade-Faculty of Medicine, Dr Subotića 4/2, Belgrade, Serbia

Abstract

Collagen-induced arthritis (CIA) is a frequently used animal model of rheumatoid arthritis, human autoimmune disease that exhibits clear sex bias in incidence and clinical course. Female Dark Agouti rats immunized for CIA showed also greater incidence and higher arthritic score than their male counterparts. The study investigated sex differences in mechanisms controlling the primary immune responses in draining lymph nodes (dLNs), as a factor contributing to this dimorphism. The higher frequencies of CD4 + CD25 + Foxp3- cells, presumably activated effector T (Teff) cells, and IL-17+, IFN-γ + and IL-17 + IFN-γ + T cells were found in female compared with male rat dLNs. However, the frequency of CD4 + CD25 + Foxp3+ T regulatory cells (Treg) did not differ between sexes. Thus, CD4+ Teff cells/Treg ratio, and IL-17+ T cells/Treg and IFN-γ + T cells/Treg ratios were higher in female than in male rats, and among them was found lower frequency of PD-1+ cells. This suggested less efficient control of (auto)immune Th1/Th17 cell responses in female rat dLNs. On the contrary, the frequency of IL-4+ T cells was lower in female than in male rat dLNs. Consistently, the ratio of serum levels of collagen-specific IgG2a (IFN-γ-dependent, with an important pathogenic role in CIA) and IgG1 (IL-4-dependent) was shifted towards IgG2a in female compared with male rats. As a whole, the study suggests that sexual dimorphism in the control of T cell activation/polarization could contribute to sex bias in the susceptibility to CIA. Moreover, the study advises the use of animals of both sexes in the preclinical testing of new drugs for rheumatoid arthritis. © 2018 Elsevier Inc.

Author keywords

CIADA rat strainIFN-γ + T cellsIL-17+ T cellsSexual dimorphismT regulatory cells

Indexed keywords

EMTREE drug terms:CD4 antigengamma interferongilvetmabimmunoglobulin G1immunoglobulin G2ainterleukin 17interleukin 2 receptor alphainterleukin 4programmed death 1 receptortranscription factor FOXP3collagenimmunoglobulin G
EMTREE medical terms:animal cellanimal experimentanimal modelanimal tissueArticleCD4+ T lymphocytecell cycle regulationcell interactioncell membrane depolarizationcellular immunitycollagen-induced arthritiscontrolled studydark agouti rateffector cellfemalefrequencyimmune responseimmunoglobulin blood levellymph nodemalenonhumanprotein interactionratregulatory T lymphocytesex differenceT lymphocyte activationTh1 cellTh17 cellanimalbloodcell culturedisease modelexperimental arthritisgeneticsimmunologysexual characteristics
MeSH:AnimalsArthritis, ExperimentalCells, CulturedCollagenDisease Models, AnimalFemaleImmunoglobulin GMaleRatsSex CharacteristicsT-Lymphocytes, Regulatory

Chemicals and CAS Registry Numbers:

gamma interferon, 82115-62-6; gilvetmab, 1808081-43-7; collagen, 9007-34-5; immunoglobulin G, 97794-27-9;

Collagen; Immunoglobulin G

Funding details

Funding sponsor Funding number Acronym
Ministarstvo Prosvete, Nauke i Tehnološkog Razvoja175050MPNTR
Ministarstvo Prosvete, Nauke i Tehnološkog RazvojaMPNTR
  • 1

    This work was supported by the grant No. 175050 from Ministry of Education, Science and Technological Development of Republic of Serbia .

  • ISSN: 00144800
  • CODEN: EXMPA
  • Source Type: Journal
  • Original language: English
  • DOI: 10.1016/j.yexmp.2018.05.007
  • PubMed ID: 29792851
  • Document Type: Article
  • Publisher: Academic Press Inc.

  Dimitrijević, M.; Department of Immunology, Institute for Biological Research “Siniša Stanković”, University of Belgrade, Bulevar despota Stefana 142, Belgrade, Serbia;
© Copyright 2018 Elsevier B.V., All rights reserved.

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