Search bioRxiv⌕ Search

Biology subjects

Hill, D. G.

Publications and source records attributed to Hill, D. G..

2 recordsLinked to original sources

Inflammatory arthritis disrupts ocular immune privilege by compromising blood-retinal barrier integrity and promoting uveitogenic T cell recruitment

Inflammatory arthritis and uveitis frequently co-exist, yet the mechanisms linking joint and ocular inflammation remain ill-defined. Here, we investigated how inflammatory arthritis influences ocular immune homeostasis using murine models of antigen-induced arthritis and collagen-induced arthritis. Arthritis promoted the accumulation of T cells, myeloid cells, and neutrophils within the vitreoretinal compartment, without progression to overt clinical uveitis. Ocular leukocyte recruitment was dynamically coupled to arthritis activity, resolving with remission of joint inflammation and recurring during arthritic flares. The magnitude of ocular immune perturbation correlated with arthritis severity, being enhanced in IL-27R-deficient mice and markedly reduced in IL-6R-deficient mice. Mechanistically, arthritis increased blood-retinal barrier permeability, demonstrating that systemic inflammation perturbs ocular immune privilege even in the absence of apparent ocular disease. While arthritis alone was insufficient to induce uveitis, it established a permissive ocular microenvironment that selectively enhanced the recruitment of adoptively transferred uveitogenic CD4+ T cells. These findings identify inflammatory arthritis as a systemic driver of subclinical ocular immune dysregulation and reveal a mechanism by which inflammation at a distant site may promote vulnerability to ocular autoimmunity. These data provide a framework for understanding immune dysregulation at the joint-eye axis and highlight cytokine pathways that may be targeted to preserve ocular immune homeostasis.

immunology↗

IL-27 maintains cytotoxic Ly6C+ gamma delta T cells that arise from immature precursors

In mice, {gamma}{delta} T cells that express the co-stimulatory molecule, CD27, are committed to the IFN{gamma}-producing lineage in the thymus, and in the periphery, these cells play a critical role in host defence and anti-tumor immunity. Unlike {beta} T cells that rely on MHC-presented peptides to drive their terminal differentiation, it is unclear whether MHC-unrestricted {gamma}{delta} T cells undergo further functional maturation after exiting the thymus. Here, we provide evidence of phenotypic and functional diversity within peripheral IFN{gamma}-producing {gamma}{delta} T cells. We found that immature CD27+Ly6C-- cells convert into mature CD27+Ly6C+ cells, and these mature cells control cancer progression while the immature cells cannot. The gene signatures of these two subsets were highly analogous to human immature and mature {gamma}{delta} T cells, indicative of conservation across species. We show that IL-27 supports the cytotoxic phenotype and function of mouse CD27+Ly6C+ cells and human V{delta}2+ cells, while IL-27 is dispensable for mouse CD27+Ly6C-- cells and human V{delta}1+ cells. These data reveal increased complexity within IFN{gamma}-producing {gamma}{delta} T cells, comprising of immature and terminally differentiated subsets, that offer new insights into unconventional T cell biology.

immunology↗