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The genetic ablation of cyclooxygenase 2 prevents the development of autoimmune arthritis
L K Myers1, A H Kang, A E Postlethwaite
1University of Tennessee, Memphis, USA.
Objective:
To determine the effects of cyclooxygenase 1 (COX-1) and COX-2 gene deletion on collagen-induced arthritis (CIA).
Methods:
Mice that were susceptible to CIA but lacked either the COX-1 or the COX-2 gene were immunized with type II collagen (CII), and the incidence and severity of arthritis were compared with findings in wild-type animals, by clinical and histologic examination. The immune response was assessed by measuring total CII IgG, IgG1, and IgG2 antibody production in sera from immunized mice. The passive transfer of arthritis, accomplished using anti-CII monoclonal antibodies, was tested in wild-type and COX-deficient (-/-) mice. Splenocytes cultured from CII-immunized wild-type and COX-/- mice were challenged with bovine alpha1(II), and cytokine production was assessed.
Results:
COX-2 gene deletion reduced the incidence and severity of CIA compared with findings in wild-type and COX-1-/- mice. Histologic examination of joints after the onset of clinical arthritis revealed cartilage erosions, proliferation of the synovial lining, and inflammatory cell infiltration in wild-type and COX-1-/- mice, but not in COX-2-/- mice. COX-2-/- mice exhibited reduced anti-CII IgG antibody levels, indicating a decreased immune response. However, cytokine production by spleen cells from immunized mice indicated no cytokine deficiencies in COX-2-/- mice compared with wild-type or COX-1-/- mice. More important, arthritis could not be passively transferred to naive COX-2-/- mice, indicating a requirement for COX-2 in the pathogenesis of arthritis, independent of the immune response.
Conclusion:
COX-2-/- mice exhibit at least 2 defects resulting in down-modulation of the development of CIA: a reduced immune response to CII demonstrated by a markedly reduced antibody titer, and an "inflammatory" defect reflected by the inability to passively transfer arthritis to COX-2-/- mice.
Insights
Deletion of the cyclooxygenase-2 (COX-2) gene significantly reduced collagen-induced arthritis (CIA) severity and incidence in mice. This indicates COX-2 plays a critical role in arthritis development, independent of the immune response.
Area of Science:
- Immunology
- Rheumatology
- Molecular Biology
Background:
- Collagen-induced arthritis (CIA) is a common model for rheumatoid arthritis.
- Cyclooxygenase enzymes (COX-1 and COX-2) are involved in inflammation and immune responses.
Purpose of the Study:
- To investigate the role of cyclooxygenase-1 (COX-1) and cyclooxygenase-2 (COX-2) in the development of collagen-induced arthritis (CIA).
Main Methods:
- Mice with genetic deletions of COX-1 or COX-2 were immunized with type II collagen (CII).
- Arthritis incidence and severity were assessed clinically and histologically.
- Immune responses (antibody production) and cytokine profiles were analyzed.
- Passive transfer of arthritis was performed using anti-CII antibodies.
Main Results:
- COX-2 gene deletion markedly reduced CIA incidence and severity compared to wild-type and COX-1 knockout mice.
- Histological analysis showed reduced joint inflammation and damage in COX-2 deficient mice.
- COX-2 deficient mice had a diminished antibody response to CII, but normal cytokine production.
- Arthritis could not be passively transferred to COX-2 deficient mice, highlighting a COX-2 role independent of adaptive immunity.
Conclusions:
- COX-2 plays a crucial role in CIA pathogenesis through both immune response modulation and inflammatory processes.
- COX-2 deficiency leads to a reduced immune response to CII and an inability to develop arthritis via passive transfer.
- Targeting COX-2 may be a therapeutic strategy for inflammatory arthritis.
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