Magnetic resonance imaging as a biomarker in diabetic and HIV-associated peripheral neuropathy: A systematic review-based narrative
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Author(s)
Type
Journal Article
Abstract
Background: Peripheral neuropathy can be caused by diabetes mellitus and HIV infection, and often leaves patients with treatment-resistant neuropathic pain. To better treat this condition, we need greater understanding of the pathogenesis, as well as objective biomarkers to predict treatment response. Magnetic resonance imaging (MRI) has a firm place as a biomarker for diseases of the central nervous system (CNS), but until recently has had little role for disease of the peripheral nervous system. Objectives: To review the current state-of-the-art of peripheral nerve MRI in diabetic and HIV symmetrical polyneuropathy. We used systematic literature search methods to identify all studies currently published, using this as a basis for a narrative review to discuss major findings in the literature. We also assessed risk of bias, as well as technical aspects of MRI and statistical analysis. Methods: Protocol was pre-registered on NIHR PROSPERO database. MEDLINE, Web of Science and EMBASE databases were searched from 1946 to 15th August 2020 for all studies investigating either diabetic or HIV neuropathy and MRI, focusing exclusively on studies investigating symmetrical polyneuropathy. The NIH quality assessment tool for observational and cross-sectional cohort studies was used for risk of bias assessment. Results: The search resulted in 18 papers eligible for review, 18 for diabetic neuropathy and 0 for HIV neuropathy. Risk of bias assessment demonstrated that studies generally lacked explicit sample
size justifications, and some may be underpowered. Whilst most studies made efforts to balance groups for confounding variables (age, gender, BMI, disease duration), there was lack of consistency
between studies. Overall, the literature provides convincing evidence that DPN is associated with
larger nerve cross sectional area, T2-weighted hyperintense and hypointense lesions, evidence of nerve oedema on Dixon imaging, decreased fractional anisotropy and increased apparent diffusion coefficient compared with controls. Analysis to date is largely restricted to the sciatic nerve or its branches. Conclusions: There is emerging evidence that various structural MR metrics may be useful as biomarkers in diabetic polyneuropathy, and technique to other forms of peripheral neuropathy, including HIV neuropathy, would be of value.
size justifications, and some may be underpowered. Whilst most studies made efforts to balance groups for confounding variables (age, gender, BMI, disease duration), there was lack of consistency
between studies. Overall, the literature provides convincing evidence that DPN is associated with
larger nerve cross sectional area, T2-weighted hyperintense and hypointense lesions, evidence of nerve oedema on Dixon imaging, decreased fractional anisotropy and increased apparent diffusion coefficient compared with controls. Analysis to date is largely restricted to the sciatic nerve or its branches. Conclusions: There is emerging evidence that various structural MR metrics may be useful as biomarkers in diabetic polyneuropathy, and technique to other forms of peripheral neuropathy, including HIV neuropathy, would be of value.
Date Issued
2021-09-21
Date Acceptance
2021-08-17
Citation
Frontiers in Neuroscience, 2021, 15
ISSN
1662-453X
Publisher
Frontiers Media
Journal / Book Title
Frontiers in Neuroscience
Volume
15
Copyright Statement
© 2021 Evans, Wade, Hohenschurz-Schmidt, Lally, Ugwudike, Shah, Bangerter, Sharp and Rice. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
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Sponsor
National Institute for Health Research
UK DRI Ltd
Grant Number
NIHR-RP-011-048
'CR & T IMP'
Subjects
Science & Technology
Life Sciences & Biomedicine
Neurosciences
Neurosciences & Neurology
peripheral nerve
magnetic resonance imaging
diabetes
HIV
neuropathy
AREA REFERENCE VALUES
SENSORY NEUROPATHY
MR NEUROGRAPHY
MEDIAN NERVE
TIBIAL NERVE
RISK-FACTORS
SKIN BIOPSY
POLYNEUROPATHY
ULTRASOUND
HYDRATION
HIV
diabetes
magnetic resonance imaging
neuropathy
peripheral nerve
1109 Neurosciences
1701 Psychology
1702 Cognitive Sciences
Publication Status
Published
Article Number
ARTN 727311