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The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps.

Publication ,  Journal Article
Kim, Y-T; Haftel, VK; Kumar, S; Bellamkonda, RV
Published in: Biomaterials
July 2008

Peripheral nerve regeneration across long nerve gaps is clinically challenging. Autografts, the standard of therapy, are limited by availability and other complications. Here, using rigorous anatomical and functional measures, we report that aligned polymer fiber-based constructs present topographical cues that facilitate the regeneration of peripheral nerves across long nerve gaps. Significantly, aligned but not randomly oriented fibers elicit regeneration, establishing that topographical cues can influence endogenous nerve repair mechanisms in the absence of exogenous growth promoting proteins. Axons regenerated across a 17 mm nerve gap, reinnervated muscles, and reformed neuromuscular junctions. Electrophysiological and behavioral analyses revealed that aligned but not randomly oriented constructs facilitated both sensory and motor nerve regeneration, significantly improved functional outcomes. Additionally, a quantitative comparison of DRG outgrowth in vitro and nerve regeneration in vivo on aligned and randomly oriented fiber films clearly demonstrated the significant role of sub-micron scale topographical cues in stimulating endogenous nerve repair mechanisms.

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Published In

Biomaterials

DOI

EISSN

1878-5905

ISSN

0142-9612

Publication Date

July 2008

Volume

29

Issue

21

Start / End Page

3117 / 3127

Related Subject Headings

  • Tissue Engineering
  • Schwann Cells
  • S100 Proteins
  • Rats
  • Polymers
  • Peripheral Nerves
  • Neuromuscular Junction
  • Neurites
  • Nerve Regeneration
  • Muscle, Skeletal
 

Citation

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Kim, Y.-T., Haftel, V. K., Kumar, S., & Bellamkonda, R. V. (2008). The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps. Biomaterials, 29(21), 3117–3127. https://doi.org/10.1016/j.biomaterials.2008.03.042
Kim, Young-Tae, Valerie K. Haftel, Satish Kumar, and Ravi V. Bellamkonda. “The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps.Biomaterials 29, no. 21 (July 2008): 3117–27. https://doi.org/10.1016/j.biomaterials.2008.03.042.
Kim Y-T, Haftel VK, Kumar S, Bellamkonda RV. The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps. Biomaterials. 2008 Jul;29(21):3117–27.
Kim, Young-Tae, et al. “The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps.Biomaterials, vol. 29, no. 21, July 2008, pp. 3117–27. Epmc, doi:10.1016/j.biomaterials.2008.03.042.
Kim Y-T, Haftel VK, Kumar S, Bellamkonda RV. The role of aligned polymer fiber-based constructs in the bridging of long peripheral nerve gaps. Biomaterials. 2008 Jul;29(21):3117–3127.
Journal cover image

Published In

Biomaterials

DOI

EISSN

1878-5905

ISSN

0142-9612

Publication Date

July 2008

Volume

29

Issue

21

Start / End Page

3117 / 3127

Related Subject Headings

  • Tissue Engineering
  • Schwann Cells
  • S100 Proteins
  • Rats
  • Polymers
  • Peripheral Nerves
  • Neuromuscular Junction
  • Neurites
  • Nerve Regeneration
  • Muscle, Skeletal