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High-voltage pulsed radiofrequency improves ultrastructure of DRG and enhances spinal microglial autophagy to ameliorate neuropathic pain induced by SNI.

Abstract
Neuropathic pain (NeP) is intractable for which many therapies are ineffective. High-voltage pulsed radiofrequency (HVPRF) on dorsal root ganglion (DRG) is considered an effective treatment for NeP. The aim of this study is to explore the therapeutic voltage for the optimal efficacy of PRF and the underlying mechanisms. The radiofrequency electrode was placed close to the L5 DRG of rats with spared nerve injury (SNI) and emitted current by the corresponding voltage in different groups. Four different voltages (45 V, 65 V, 85 V, and 100 V) of PRF on DRG significantly alleviated the SNI-induced NeP, reduced the levels of activating transcription factor 3 (ATF3) in DRG, improved the ultrastructure of DRG, and promoted autophagy in spinal microglia to varying degrees and partially reversed the increased expression of TNF-α and the reduced expression of IL-10 in spinal cord dorsal horn (SCDH). The beneficial effect of 85V-PRF was superior to those of other three PRF treatments. The underlying mechanisms may be related to repairing the DRG damage and improving the DRG ultrastructure while regulating spinal microglial autophagy and thereby alleviating neuroinflammation.
AuthorsRi Chen, Xueru Xu, Youfen Yu, Yanqin Chen, Chun Lin, Rongguo Liu
JournalScientific reports (Sci Rep) Vol. 14 Issue 1 Pg. 4497 (02 24 2024) ISSN: 2045-2322 [Electronic] England
PMID38402335 (Publication Type: Journal Article)
Copyright© 2024. The Author(s).
Topics
  • Rats
  • Animals
  • Rats, Sprague-Dawley
  • Microglia (metabolism)
  • Ganglia, Spinal (metabolism)
  • Pulsed Radiofrequency Treatment
  • Neuralgia (therapy, metabolism)
  • Trauma, Nervous System (metabolism)
  • Hyperalgesia (metabolism)

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