Key result
Axon-reflex-based tests of sudomotor, vasomotor, and pilomotor function allow specific assessment of postganglionic small nerve fiber integrity, though clinical utility is currently limited by technical demands.
Why the study?
Detection of autonomic small nerve fiber pathology facilitates early diagnosis and treatment of neuropathies, but few techniques are available to quantify axon-reflex responses and many are limited by technical demands or lack of validated protocols.
This review summarizes current techniques for assessing cutaneous axon-reflex responses to evaluate the functional integrity of autonomic small nerve fibers, which may facilitate early diagnosis of autonomic neuropathies.
May aid early detection of autonomic neuropathies and synucleinopathies; leaves open standardization and prospective validation before clinical adoption.
Cutaneous autonomic small nerve fibers encompass unmyelinated C-fibers and thinly myelinated Aδ-fibers, which innervate dermal vessels (vasomotor fibers), sweat glands (sudomotor fibers), and hair follicles (pilomotor fibers). Analysis of their integrity can capture early pathology in autonomic neuropathies such as diabetic autonomic neuropathy or peripheral nerve inflammation due to infectious and autoimmune diseases. Furthermore, intraneural deposition of alpha-synuclein in synucleinopathies such as Parkinson's disease can lead to small fiber damage. Research indicated that detection and quantitative analysis of small fiber pathology might facilitate early diagnosis and initiation of treatment. While autonomic neuropathies show substantial etiopathogenetic heterogeneity, they have in common impaired functional integrity of small nerve fibers. This impairment can be evaluated by quantitative analysis of axonal responses to iontophoretic application of adrenergic or cholinergic agonists to the skin. The axon-reflex can be elicited in cholinergic sudomotor fibers to induce sweating and in cholinergic vasomotor fibers to induce vasodilation. Currently, only few techniques are available to quantify axon-reflex responses, the majority of which is limited by technical demands or lack of validated analysis protocols. Function of vasomotor small fibers can be analyzed using laser Doppler flowmetry, laser Doppler imaging, and laser speckle contrast imaging. Sudomotor function can be assessed using quantitative sudomotor axon-reflex test, silicone imprints, and quantitative direct and indirect testing of sudomotor function. More recent advancements include analysis of piloerection (goose bumps) following stimulation of adrenergic small fibers using pilomotor axon-reflex test. We provide a review of the current literature on axon-reflex tests in cutaneous autonomic small fibers.
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Hijazi et al. (2020) conducted a review in Autonomic small nerve fiber neuropathy. Axon-reflex tests (vasomotor, sudomotor, pilomotor) was evaluated. Axon-reflex-based tests of sudomotor, vasomotor, and pilomotor function allow specific assessment of postganglionic small nerve fiber integrity, though clinical utility is currently limited by technical demands.
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