A new look at painful diabetic neuropathy.

Gordon Sloan, Pallai Shillo, Dinesh Selvarajah, Jing Wu, Iain D Wilkinson, Irene Tracey, Praveen Anand, Solomon Tesfaye

Journal: Diabetes research and clinical practice 2018;144():177-191

PMID: 30201394

Abstract

The prevalence of diabetes mellitus and its chronic complications continue to increase alarmingly. Consequently, the massive expenditure on diabetic distal symmetrical polyneuropathy (DSPN) and its sequelae, will also likely rise. Up to 50% of patients with diabetes develop DSPN, and about 20% develop neuropathic pain (painful-DSPN). Painful-DSPN can cast a huge burden on sufferers' lives with increased rates of unemployment, mental health disorders and physical co-morbidities. Unfortunately, due to limited understanding of the mechanisms leading to painful-DSPN, current treatments remain inadequate. Recent studies examining the pathophysiology of painful-DSPN have identified maladaptive alterations at the level of both the peripheral and central nervous systems. Additionally, genetic studies have suggested that patients with variants of voltage gated sodium channels may be more at risk of developing neuropathic pain in the presence of a disease trigger such as diabetes. We review the recent advances in genetics, skin biopsy immunohistochemistry and neuro-imaging, which have the potential to further our understanding of the condition, and identify targets for new mechanism based therapies.

Copyright © 2018 Elsevier B.V. All rights reserved.

Address: Diabetes Research Unit, Sheffield Teaching Hospitals NHS Foundation Trust & Academic Unit of Radiology, University of Sheffield, Sheffield, United Kingdom.; Department of Endocrinology, Xiangya Hospital, Central South University, Changsha, Hunan, China.; FMRIB, Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, United Kingdom.; Peripheral Neuropathy Unit, Centre for Clinical Translation, Imperial College London, Hammersmith Hospital, London, United Kingdom.; Diabetes Research Unit, Sheffield Teaching Hospitals NHS Foundation Trust & Academic Unit of Radiology, University of Sheffield, Sheffield, United Kingdom. Electronic address: [email protected].
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