Neuro-immune interactions in chronic joint pain: how T cell subsets might affect persistent nociception in inflammatory arthritis
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AI plain-English summaryInflammatory arthritis leaves many patients with persistent joint pain even after standard treatments have brought their inflammation under control. This PhD project will investigate whether regulatory T cells—immune cells that normally dampen inflammation—are directly interacting with sensory neurons in the joint and either helping or hindering pain signalling. Current treatments focus on reducing inflammation, but they often fail to resolve the pain that remains. The problem is that scientists do not yet understand how anti-inflammatory signals from T cells affect the nerve endings that detect pain. This project will map those interactions by combining computer-based predictions with lab experiments using patient-derived cells and a mouse model of arthritis. If the research identifies specific ligand-receptor pairs between T cell subsets and sensory neurons, those molecules could become new drug targets for pain relief that works independently of inflammation control. This would address a major unmet need: the millions of arthritis patients whose quality of life is limited by pain that existing therapies cannot touch. The work is fundamental science, but it targets a concrete clinical gap with a clear path toward therapeutic development.
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