4.7 Article

Misdirection of regenerating motor axons after nerve injury and repair in the rat sciatic nerve model

期刊

EXPERIMENTAL NEUROLOGY
卷 211, 期 2, 页码 339-350

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.expneurol.2007.12.023

关键词

aberrant reinnervation; accuracy of regeneration; ankle motion analysis; double labeling; sequential retrograde tracing

资金

  1. NIBIB NIH HHS [EB002390, R01 EB002390, R01 EB002390-04] Funding Source: Medline
  2. NINDS NIH HHS [NS40471, NS36797, R01 NS040471, R01 NS036797] Funding Source: Medline

向作者/读者索取更多资源

Misdirection of regenerating axons is one of the factors that can explain the poor results often found after nerve injury and repair. In this study, we quantified the degree of misdirection and the effect on recovery of function after different types of nerve injury and repair in the rat sciatic nerve model; crush injury, direct coaptation, and autograft repair. Sequential tracing with retrograde labeling of the peroneal nerve before and 8 weeks after nerve injury and repair was performed to quantify the accuracy of motor axon regeneration. Digital video analysis of ankle motion was used to investigate the recovery of function. In addition, serial compound action potential recordings and nerve and muscle morphometry were performed. In our study, accuracy of motor axon regeneration was found to be limited; only 71% (+/- 4.9%) of the peroneal motoneurons were correctly directed 2 months after sciatic crush injury, 42% (+/- 4.2%) after direct coaptation, and 25% (+/- 6.6%) after autograft repair. Recovery of ankle motion was incomplete after all types of nerve injury and repair and demonstrated a disturbed balance of ankle plantar and dorsiflexion. The number of motoneurons from which axons had regenerated was not significantly different from normal. The number of myelinated axons was significantly increased distal to the site of injury. Misdirection of regenerating motor axons is a major factor in the poor recovery of nerves that innervate different muscles. The results of this study can be used as basis for developing new nerve repair techniques that may improve the accuracy of regeneration. (c) 2008 Elsevier Inc. All rights reserved.

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