Literature DB >> 17005023

Bioengineered nerve regeneration and muscle reinnervation.

Paul J Kingham1, Giorgio Terenghi.   

Abstract

The peripheral nervous system has the intrinsic capacity to regenerate but the reinnervation of muscles is often suboptimal and results in limited recovery of function. Injuries to nerves that innervate complex organs such as the larynx are particularly difficult to treat. The many functions of the larynx have evolved through the intricate neural regulation of highly specialized laryngeal muscles. In this review, we examine the responses of nerves and muscles to injury, focusing on changes in the expression of neurotrophic factors, and highlight differences between the skeletal limb and laryngeal muscle systems. We also describe how artificial nerve conduits have become a useful tool for delivery of neurotrophic factors as therapeutic agents to promote peripheral nerve repair and might eventually be useful in the treatment of laryngeal nerve injury.

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Year:  2006        PMID: 17005023      PMCID: PMC2100355          DOI: 10.1111/j.1469-7580.2006.00623.x

Source DB:  PubMed          Journal:  J Anat        ISSN: 0021-8782            Impact factor:   2.610


  150 in total

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Journal:  Tissue Eng       Date:  2000-04

2.  The neurotrophin receptors, trkB and p75, differentially regulate motor axonal regeneration.

Authors:  J G Boyd; T Gordon
Journal:  J Neurobiol       Date:  2001-12

3.  Collagen filaments as a scaffold for nerve regeneration.

Authors:  S Yoshii; M Oka
Journal:  J Biomed Mater Res       Date:  2001-09-05

4.  Spatiotemporal patterns of expression of NGF and the low-affinity NGF receptor in rat embryos suggest functional roles in tissue morphogenesis and myogenesis.

Authors:  E F Wheeler; M Bothwell
Journal:  J Neurosci       Date:  1992-03       Impact factor: 6.167

5.  Effects of ciliary neurotrophic factor (CNTF) on protein turnover in cultured muscle cells.

Authors:  M C Wang; N E Forsberg
Journal:  Cytokine       Date:  2000-01       Impact factor: 3.861

6.  Axotomy upregulates the anterograde transport and expression of brain-derived neurotrophic factor by sensory neurons.

Authors:  J R Tonra; R Curtis; V Wong; K D Cliffer; J S Park; A Timmes; T Nguyen; R M Lindsay; A Acheson; P S DiStefano
Journal:  J Neurosci       Date:  1998-06-01       Impact factor: 6.167

7.  Molecular cloning and expression of brain-derived neurotrophic factor.

Authors:  J Leibrock; F Lottspeich; A Hohn; M Hofer; B Hengerer; P Masiakowski; H Thoenen; Y A Barde
Journal:  Nature       Date:  1989-09-14       Impact factor: 49.962

8.  Neurotrophin 4/5 is required for the normal development of the slow muscle fiber phenotype in the rat soleus.

Authors:  Dario I Carrasco; Arthur W English
Journal:  J Exp Biol       Date:  2003-07       Impact factor: 3.312

9.  GDNF is regulated in an activity-dependent manner in rat skeletal muscle.

Authors:  Erica A Wehrwein; Eric M Roskelley; John M Spitsbergen
Journal:  Muscle Nerve       Date:  2002-08       Impact factor: 3.217

10.  The macrophage response to central and peripheral nerve injury. A possible role for macrophages in regeneration.

Authors:  V H Perry; M C Brown; S Gordon
Journal:  J Exp Med       Date:  1987-04-01       Impact factor: 14.307

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  24 in total

1.  Regeneration of reinnervated rat soleus muscle is accompanied by fiber transition toward a faster phenotype.

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2.  Acceleration of peripheral nerve regeneration through asymmetrically porous nerve guide conduit applied with biological/physical stimulation.

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3.  Repetitive Peripheral Magnetic Stimulation (rPMS) in Subjects With Lumbar Radiculopathy: An Electromyography-guided Prospective, Randomized Study.

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Journal:  In Vivo       Date:  2021 Jan-Feb       Impact factor: 2.155

4.  A New Preparation Method for Anisotropic Silk Fibroin Nerve Guidance Conduits and Its Evaluation In Vitro and in a Rat Sciatic Nerve Defect Model.

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Journal:  Tissue Eng Part C Methods       Date:  2015-05-18       Impact factor: 3.056

5.  Negative neuromuscular and functional repercussion of forced swimming after axonotmesis.

Authors:  Júlia Araújo de Moura; Jaqueline de Morais; Samara Maria Neves Barbosa; Marcílio Coelho Ferreira; Ivo Vieira de Sousa Neto; Hércules Ribeiro Leite; Murilo Xavier Oliveira; Thaís Peixoto Gaiad; Ana Paula Santos
Journal:  J Exerc Rehabil       Date:  2022-06-27

6.  Effects of acute selective pudendal nerve electrical stimulation after simulated childbirth injury.

Authors:  Hai-Hong Jiang; Bradley C Gill; Charuspong Dissaranan; Massarat Zutshi; Brian M Balog; Danli Lin; Margot S Damaser
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7.  Evidence of innervation following extracellular matrix scaffold-mediated remodelling of muscular tissues.

Authors:  Vineet Agrawal; Bryan N Brown; Allison J Beattie; Thomas W Gilbert; Stephen F Badylak
Journal:  J Tissue Eng Regen Med       Date:  2009-12       Impact factor: 3.963

8.  Self-aligned myofibers in 3D bioprinted extracellular matrix-based construct accelerate skeletal muscle function restoration.

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9.  Identification of potential microRNAs and KEGG pathways in denervation muscle atrophy based on meta-analysis.

Authors:  Xinyi Gu; Bo Jin; Zhidan Qi; Xiaofeng Yin
Journal:  Sci Rep       Date:  2021-06-30       Impact factor: 4.379

10.  Neurturin enhances the recovery of erectile function following bilateral cavernous nerve crush injury in the rat.

Authors:  Tom F Lue; Anthony J Bella; Thomas M Fandel; Kavirach Tantiwongse; William O Brant; Robert D Klein; Carlos A Garcia
Journal:  J Brachial Plex Peripher Nerve Inj       Date:  2007-03-06
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