Small-fiber neuropathy: Expanding the clinical pain universe.

Maurice Sopacua, Janneke G J Hoeijmakers, Ingemar S J Merkies, Giuseppe Lauria, Stephen G Waxman, Catharina G Faber

Journal: Journal of the peripheral nervous system : JPNS 2020;24(1):19-33

PMID: 30569495

Abstract

Small-fiber neuropathy (SFN) is a disorder of thinly myelinated Aδ and unmyelinated C fibers. SFN is clinically dominated by neuropathic pain and autonomic complaints, leading to a significant reduction in quality of life. According to international criteria, the diagnosis is established by the assessment of intraepidermal nerve fiber density and/or quantitative sensory testing. SFN is mainly associated with autoimmune diseases, sodium channel gene variants, diabetes mellitus, and vitamin B12 deficiencies, although in more than one half of patients no etiology can be identified. Recently, gain-of-function variants in the genes encoding for the Na 1.7, Na 1.8 and Na 1.9 sodium channel subunits have been discovered in SFN patients, enlarging the spectrum of underlying conditions. Sodium channel gene variants associated with SFN can lead to a diversity of phenotypes, including different pain distributions and presence or absence of autonomic symptoms. This suggests that SFN is part of a clinical continuum. New assessments might contribute to a better understanding of the cellular and molecular substrates of SFN and might provide improved diagnostic methods and trial designs in the future. Identification of the underlying mechanisms may inform the development of drugs that more effectively address neuropathic pain and autonomic symptoms of SFN.

© 2018 Peripheral Nerve Society.

Address: Department of Neurology, School of Mental Health and Neuroscience, Maastricht University Medical Centre+, Maastricht, The Netherlands.; Department of Neurology, School of Mental Health and Neuroscience, Maastricht University Medical Centre+, Maastricht, The Netherlands.; Department of Neurology, St. Elisabeth Hospital, Willemstad, Curaçao.; Neuroalgology Unit, IRCCS Foundation, "Carlo Besta" Neurological Institute, Milan, Italy.; Department of Biomedical and Clinical Sciences "Luigi Sacco", University of Milan, Milan, Italy.; Department of Neurology, Yale University School of Medicine, New Haven, Connecticut.; Center for Neuroscience and Regeneration Research, VA Connecticut Healthcare System, West Haven, Connecticut.
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