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Sensitization of knee-innervating sensory neurons by tumor necrosis factor-α-activated fibroblast-like synoviocytes: an in vitro, coculture model of inflammatory pain.

Accepted version
Peer-reviewed

Type

Article

Change log

Authors

Chakrabarti, Sampurna 
Hore, Zoe 
Pattison, Luke A 
Lalnunhlimi, Sylvine 
Bhebhe, Charity N 

Abstract

Pain is a principal contributor to the global burden of arthritis with peripheral sensitization being a major cause of arthritis-related pain. Within the knee joint, distal endings of dorsal root ganglion neurons (knee neurons) interact with fibroblast-like synoviocytes (FLS) and the inflammatory mediators they secrete, which are thought to promote peripheral sensitization. Correspondingly, RNA sequencing has demonstrated detectable levels of proinflammatory genes in FLS derived from arthritis patients. This study confirms that stimulation with tumor necrosis factor (TNF-α) results in expression of proinflammatory genes in mouse and human FLS (derived from osteoarthritis and rheumatoid arthritis patients), as well as increased secretion of cytokines from mouse TNF-α-stimulated FLS (TNF-FLS). Electrophysiological recordings from retrograde labelled knee neurons cocultured with TNF-FLS, or supernatant derived from TNF-FLS, revealed a depolarized resting membrane potential, increased spontaneous action potential firing, and enhanced TRPV1 function, all consistent with a role for FLS in mediating the sensitization of pain-sensing nerves in arthritis. Therefore, data from this study demonstrate the ability of FLS activated by TNF-α to promote neuronal sensitization, results that highlight the importance of both nonneuronal and neuronal cells to the development of pain in arthritis.

Description

Keywords

Animals, Cells, Cultured, Coculture Techniques, Fibroblasts, Humans, Knee Joint, Mice, Pain, Sensory Receptor Cells, Synovial Membrane, Synoviocytes, Tumor Necrosis Factor-alpha

Journal Title

Pain

Conference Name

Journal ISSN

0304-3959
1872-6623

Volume Title

161

Publisher

Ovid Technologies (Wolters Kluwer Health)

Rights

All rights reserved
Sponsorship
ARTHRITIS RESEARCH UK (20930)
Rosetrees Trust (A1296)
Arthritis Research UK (11600/21973)
Biotechnology and Biological Sciences Research Council (BB/M011194/1)
This study was supported by Versus Arthritis Project Grants (RG 20930 and RG 21973), a Rosetrees grant (M818) to E. St. J. S. and G.C., Crohn’s and Colitis UK grant to D.C.B. (PC2019/1-Bulmer), and a King’s Together Award to L.S.T. and F.D. S.C. and C.N.B were supported by Gates Cambridge Trust scholarships. L.A.P. was supported by the University of Cambridge BBSRC Doctoral Training Programme (BB/M011194/1). S.L. was supported by Versus Arthritis (21139).
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