Scinovex
review Open AccessTop 1% cited

Central sensitization: Implications for the diagnosis and treatment of pain

Pain · 2010 · Vol. 152(3) · pp. S2–S15
Clifford J. Woolf

Abstract

Nociceptor inputs can trigger a prolonged but reversible increase in the excitability and synaptic efficacy of neurons in central nociceptive pathways, the phenomenon of central sensitization. Central sensitization manifests as pain hypersensitivity, particularly dynamic tactile allodynia, secondary punctate or pressure hyperalgesia, aftersensations, and enhanced temporal summation. It can be readily and rapidly elicited in human volunteers by diverse experimental noxious conditioning stimuli to skin, muscles or viscera, and in addition to producing pain hypersensitivity, results in secondary changes in brain activity that can be detected by electrophysiological or imaging techniques. Studies in clinical cohorts reveal changes in pain sensitivity that have been interpreted as revealing an important contribution of central sensitization to the pain phenotype in patients with fibromyalgia, osteoarthritis, musculoskeletal disorders with generalized pain hypersensitivity, headache, temporomandibular joint disorders, dental pain, neuropathic pain, visceral pain hypersensitivity disorders and post-surgical pain. The comorbidity of those pain hypersensitivity syndromes that present in the absence of inflammation or a neural lesion, their similar pattern of clinical presentation and response to centrally acting analgesics, may reflect a commonality of central sensitization to their pathophysiology. An important question that still needs to be determined is whether there are individuals with a higher inherited propensity for developing central sensitization than others, and if so, whether this conveys an increased risk in both developing conditions with pain hypersensitivity, and their chronification. Diagnostic criteria to establish the presence of central sensitization in patients will greatly assist the phenotyping of patients for choosing treatments that produce analgesia by normalizing hyperexcitable central neural activity. We have certainly come a long way since the first discovery of activity-dependent synaptic plasticity in the spinal cord and the revelation that it occurs and produces pain hypersensitivity in patients. Nevertheless, discovering the genetic and environmental contributors to and objective biomarkers of central sensitization will be highly beneficial, as will additional treatment options to prevent or reduce this prevalent and promiscuous form of pain plasticity.

Pain Mechanisms and TreatmentsFibromyalgia and Chronic Fatigue Syndrome ResearchPain Management and Placebo EffectMedicineSensitizationHyperalgesiaNociceptorAllodyniaFibromyalgiaNociceptionCentral sensitizationReferred painChronic pain

MeSH terms

AnimalsHumansHyperalgesiaModels, NeurologicalNeuronal PlasticityPainSpinal CordPain Management

Funding

  • National Institutes of Health
Citations
4,386
FWCI
71.60
field-weighted impact
References
290
Percentile
100%
vs. same field & year
Citations per year
Cited by
Painful Temporomandibular Disorder
Journal of Dental Research · 2016 · 611 citations
Ketamine for chronic pain: risks and benefits
British Journal of Clinical Pharmacology · 2013 · 486 citations
Glia and pain: Is chronic pain a gliopathy?
Pain · 2013 · 1,164 citations
Neuropathic Pain: Principles of Diagnosis and Treatment
Mayo Clinic Proceedings · 2015 · 528 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.