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Neuromodulation for Peripheral Nerve Regeneration: Systematic Review of Mechanisms and In Vivo Highlights

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Neuromodulation for Peripheral Nerve Regeneration: Systematic Review of Mechanisms and In Vivo Highlights

Biomedicines
2023 Apr 10;11(4):1145. doi: 10.3390/biomedicines11041145
Author
Max Y Jin , Tristan E Weaver , Adam Farris , Mayank Gupta , Alaa Abd-Elsayed
Editor: Stefania Raimondo
Author Information

1Department of Anesthesiology, University of Wisconsin-Madison, Madison, WI 53706, USA

2Department of Anesthesiology, The Ohio State University Wexner Medical Center, Columbus, OH 43214, USA

3Kansas Pain Management & Neuroscience Research Center, Overland Park, KS 66210, USA

Correspondence: alaaawny@hotmail.com;
Tel.: +1-608-263-8100

Article notes
Received 2023 Feb 12; Revised 2023 Mar 24; Accepted 2023 Apr 7; Collection date 2023 Apr.
Copyright and License information
© 2023 by the authors.
Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).

PMC Copyright notice

PMCID: PMC10135453 PMID: 37189763

Abstract

While denervation can occur with aging, peripheral nerve injuries are debilitating and often leads to a loss of function and neuropathic pain. Although injured peripheral nerves can regenerate and reinnervate their targets, this process is slow and directionless. There is some evidence supporting the use of neuromodulation to enhance the regeneration of peripheral nerves. This systematic review reported on the underlying mechanisms that allow neuromodulation to aid peripheral nerve regeneration and highlighted important in vivo studies that demonstrate its efficacy. Studies were identified from PubMed (inception through September 2022) and the results were synthesized qualitatively. Included studies were required to contain content related to peripheral nerve regeneration and some form of neuromodulation. Studies reporting in vivo highlights were subject to a risk of bias assessment using the Cochrane Risk of Bias tool. The results of 52 studies indicate that neuromodulation enhances natural peripheral nerve regeneration processes, but still requires other interventions (e.g., conduits) to control the direction of reinnervation. Additional human studies are warranted to verify the applicability of animal studies and to determine how neuromodulation can be optimized for the greatest functional restoration.

Keywords:

peripheral nerve injury, peripheral nerve regeneration, mechanisms, neuromodulation