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January 1, 2025Nanoscale

Viscoelastic and conductive nerve guidance conduits for peripheral nerve repair

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Authors

HYHaiyan YinYHYangnan HuHCHong Cheng

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Overview

Engineering scaffolds improved nerve regeneration in a rat sciatic nerve injury model, suggesting new treatment options.

Key Points

  • Nerve guidance conduits supported cell growth and neurite extension, indicating effective nerve repair.
  • The GM30/90-ACNT scaffolds exhibited viscoelastic properties similar to native nerve tissues, enhancing their functionality.
  • Aligned carbon nanotubes were incorporated into gelatin methacryloyl to fabricate improved nerve conduits.
  • These findings imply that enhanced scaffold properties could lead to better outcomes in peripheral nerve injury treatments.

Cite This Study

Yin et al. (2025) studied this question.

synapsesocial.com/papers/68af494dad7bf08b1ead4d1fhttps://doi.org/10.1039/d5nr00742a
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Also Consider

Synapse has enriched 3 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Biomimetic Architectures for Peripheral Nerve Repair: A Review of Biofabrication Strategies2018 · 161 citations
  2. 2MR elastography detection of early viscoelastic response of the murine hippocampus to amyloid β accumulation and neuronal cell loss due to Alzheimer's disease2017 · 73 citations
  3. 3Static–Dynamic Profited Viscoelastic Hydrogels for Motor-Clutch-Regulated Neurogenesis2021 · 40 citations