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Open AccessJournal ArticleDOI

Effects of Chitosan-Zinc Oxide Nanocomposite Conduit on Transected Sciatic Nerve: An Animal Model Study

TLDR
Chitosan-zinc oxide nanocomposite conduit resulted in acceleration of functional recovery and quantitative morphometric indices of sciatic nerve.
Abstract
Objective: To determine the effects of chitosan-zinc oxide nanocomposite conduit on transected sciatic nerve in animal model of rat Methods: Sixty male White Wistar rats were used in this study A 10-mm sciatic nerve defect was bridged using a chitosan-zinc oxide nanocomposite conduit (CZON) filled with phosphate buffered saline In chitosan group (CHIT) the chitosan conduit was filled with phosphate buffered saline solution In sham-operated group (SHAM), sciatic nerve was exposed and manipulated In transected group (TC), left sciatic nerve was transected and nerve cut ends were fixed in the adjacent muscle The regenerated fibers were studied within 12 weeks after surgery Results: The behavioral and functional tests confirmed faster recovery of the regenerated axons in CZON group compared to Chitosan group ( p< 005) The mean ratios of gastrocnemius muscles weight were measured There was statistically significant difference between the muscle weight ratios of CZON and Chitosan groups ( p< 005) Morphometric indices of regenerated fibers showed number and diameter of the myelinated fibers were significantly higher in CZON than in Chitosan In immuohistochemistry, the location of reactions to S-100 in CZON was clearly more positive than Chitosan group Conclusion: Chitosan-zinc oxide nanocomposite conduit resulted in acceleration of functional recovery and quantitative morphometric indices of sciatic nerve

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Nanotechnology in peripheral nerve repair and reconstruction.

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The Role of Dietary Nutrients in Peripheral Nerve Regeneration.

TL;DR: In this paper, the authors comprehensively review the possible role of different nutrients in maintaining a healthy peripheral nervous system and their possible role in supporting the process of peripheral nerve regeneration, and suggest that a tailored dietary plan supplied to a patient following nerve injury could play a non-negotiable role in accelerating and promoting the process.
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Numerous nanoparticles as drug delivery system to control secondary immune response and promote spinal cord injury regeneration

- 01 Jan 2022 - 
TL;DR: Nanoparticles are emerging in the field of biomedicine and gained attention as drug carriers, imaging, mediator for supportive chemical and accelerating the immunes cells as discussed by the authors .
Journal ArticleDOI

Numerous nanoparticles as drug delivery system to control secondary immune response and promote spinal cord injury regeneration

TL;DR: Nanoparticles are emerging in the field of biomedicine and gained attention as drug carriers, imaging, mediator for supportive chemical and accelerating the immunes cells.
Book ChapterDOI

Bioactive nanomaterials/chitosan composites as scaffolds for tissue regeneration

TL;DR: The present chapter discusses the recent advancements of chitosan-based scaffolds incorporated with bioactive nanomaterials and their unique properties for the successful regeneration of various tissues.
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