4.0 Article

Interferon-γ regulates discordant mechanisms of uveitis versus joint and axial disease in a murine model resembling spondylarthritis

Journal

ARTHRITIS AND RHEUMATISM
Volume 64, Issue 3, Pages 762-771

Publisher

WILEY
DOI: 10.1002/art.33404

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Funding

  1. NIH (National Eye Institute) [EY-021733, EY-019020, EY-019604]
  2. William and Mary Bauman Foundation
  3. Stan and Madelle Rosenfeld Family Trust
  4. William C. Kuzell Foundation
  5. American College of Rheumatology Research and Education Foundation
  6. Research to Prevent Blindness Foundation
  7. Novartis
  8. Amgen

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Objective The spondylarthritides (such as ankylosing spondylitis) are multisystem inflammatory diseases that frequently result in uveitis. Despite the common co-occurrence of uveitis with arthritis, there has been no explanation for the susceptibility of the eye to inflammation. Using an innovative intravital videomicroscopic approach, we discovered the coexistence of uveitis with axial and peripheral joint inflammation in mice immunized with cartilage proteoglycan (PG). The aim of this study was to elucidate the characteristics of uveitis and test the impact of interferon-? (IFN?) deficiency on the eye versus the joint and spine. Methods. Female T cell receptor (TCR)-transgenic mice or IFN gamma -knockout mice crossed to TCR-transgenic mice were immunized with PG. Uveitis was assessed by intravital videomicroscopy and histology. The clinical and histopathologic severity of arthritis and spondylitis were evaluated. The bone remodeling process within the spine was assessed by whole-body near-infrared imaging. Immunoblotting and immunofluorescence staining were used to examine the expression of PG and ADAMTS-5 and to examine the cellular composition of eyes with uveitis. Results. PG neoepitopes along with the aggrecanase ADAMTS-5 were present in the eye, as they were the joint. Anterior uveitis developed in response to PG immunization. The cellular infiltrate consisted mainly of neutrophils and eosinophils. Unexpectedly, IFN gamma deficiency markedly exacerbated uveitis while ameliorating joint and spine disease, indicating divergent mechanisms that drive diseases in the eye versus the joints and spine. Conclusion. This study provides the first detailed description of a murine disease model in which uveitis coincides with arthritis and spondylitis. Our observations provide a great opportunity for understanding the pathogenesis of a relatively common but poorly understood disease.

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