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Protective effect of sensory denervation in inflammatory arthritis (evidence of regulatory neuroimmune pathways in the arthritic joint)
  1. D Kane1,
  2. J C Lockhart2,
  3. P V Balint1,
  4. C Mann3,
  5. W R Ferrell1,
  6. I B McInnes1
  1. 1Centre for Rheumatic Diseases, University Department of Medicine, Glasgow Royal Infirmary, UK
  2. 2Biological Sciences, University of Paisley, UK
  3. 3Institute of Neurological Sciences, Southern General Hospital, Glasgow, UK
  1. Correspondence to:
    Dr D Kane
    School of Clinical and Medical Sciences (Rheumatology), 4th Floor, Cookson Building, Framlington Place, University of Newcastle-upon-Tyne, Newcastle-upon-Tyne NE2 4HH, UK; d.j.kanencl.ac.uk

Abstract

Objective: To investigate the direct effect of joint innervation on immune mediated joint inflammation in a patient with psoriatic arthritis (PsA).

Case report: The patient developed arthritis mutilans in all digits of both hands with the exception of the left 4th finger, which had prior sensory denervation following traumatic nerve dissection. Plain radiography, ultrasonography and nerve conduction studies of the hands confirmed the absence of articular disease and sensory innervation in the left 4th digit.

Methods: This relationship between joint innervation and joint inflammation was investigated experimentally by prior surgical sensory denervation of the medial aspect of the knee in six Wistar rats in which carrageenan induced arthritis was subsequently induced. Prior sensory denervation—with preservation of muscle function—prevented the development of inflammatory arthritis in the denervated knee.

Discussion: Observations in human and animal inflammatory arthritis suggest that regulatory neuroimmune pathways in the joint are an important mechanism that modulates the clinical expression of inflammatory arthritis.

  • DIP, distal interphalangeal
  • MCP, metacarpophalangeal
  • PIP, proximal interphalangeal
  • PsA, psoriatic arthritis
  • psoriatic arthritis
  • denervation
  • laser Doppler
  • ultrasound
  • nerve conduction

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