Author(s): Mylius V, Brebbermann J, Dohmann H, Engau I, Oertel WH, et al.
Pain sensitivity in Parkinson's disease is known to be altered in an L-dopa-dependent manner with increased spinal nociception and experimental pain perception in the medication-defined "off" state. As Parkinson's disease-related pain can be an early symptom in Parkinson's disease, the present study aimed to investigate experimental pain sensitivity and spinal nociception during clinical progression. The nociceptive flexion reflex as a marker of spinal nociception as well as electrical and heat pain thresholds were assessed during the medication-defined "off" state in 29 patients with Parkinson's disease divided into 3 severity groups (according to their Unified Parkinson's Disease Rating Scale motor score) and compared with 27 healthy elderly subjects. Parkinson's disease-related pain was also quantified. Data provided evidence that spinal nociception and pain sensitivity are preserved during the early phase of Parkinson's disease. Following increased spinal nociception (F(1,36) = 6.838, P = .013), experimental thermal and electrical pain sensitivity were augmented during the course of Parkinson's disease (F(1,34) = 5.397, P = .014; F(1,34) = 6.038, P = 0.053), whereas spinal nociception further increased (F(1,34) = 5.397, P < .001). Increased experimental pain sensitivity was observed in patients exhibiting Parkinson's disease-related pain. Spinal alterations either on the local level or induced by diminished dopaminergic descending inhibition probably led to increased pain sensitivity in later stages. Because Parkinson's disease-related pain is correlated with experimental pain sensitivity these 2 observations likely reflect a causal relation.
Referred From: https://www.ncbi.nlm.nih.gov/pubmed/21766333
Author(s): Lee MA, Walker RW, Hildreth TJ, Prentice WM
Author(s): Bair MJ, Robinson RL, Katon W, Kroenke K
Author(s): McWilliams LA, Cox BJ, Enns MW
Author(s): Hanagasi HA, Akat S, Gurvit H, Yazici J, Emre M
Author(s): Nieoullon A
Author(s): Schneier FR, Liebowitz MR, Abi-Dargham A, Zea-Ponce Y, Lin SH, et al.
Author(s): Roh JH, Kim BJ, Jang JH, Seo WK, Lee SH, et al.
Author(s): Hara T, Hirayama M, Mizutani Y, Hama T, Hori N, et al.
Author(s): Erro R, Santangelo G, Picillo M, Vitale C, Amboni M, et al.
Author(s): Hughes AJ, Daniel SE, Kilford L, Lees AJ
Author(s): Fahn S; Parkinson Study Group
Author(s): Nie K, Zhang Y, Wang L, Zhao J, Huang Z, et al.
Author(s): Chaudhuri KR, Martinez-Martin P, Schapira AH, Stocchi F, Sethi K, et al.
Author(s): Melzack R
Author(s): Cleeland CS, Ryan KM
Author(s): Smeding HM, Esselink RA, Schmand B, Koning-Haanstra M, Nijhuis I, et al.
Author(s): Ford B
Author(s): Airavaara M, Harvey BK, Voutilainen MH, Shen H, Chou J, et al.
Author(s): Ha AD, Jankovic J
Author(s): Santos-García D, Abella-Corral J, Aneiros-Díaz Á, Santos-Canelles H, Llaneza-González MA, et al.
Author(s): Yong MH, Allen JC Jr, Prakash KM, Tan EK
Author(s): Jarcho JM, Mayer EA, Jiang ZK, Feier NA, London ED
Author(s): Nutt JG
Author(s): Lim SY, Farrell MJ, Gibson SJ, Helme RD, Lang AE, et al.
Author(s): Romenets SR, Wolfson C, Galatas C, Pelletier A, Altman R, et al.
Author(s): Raudino F