Activity-Driven Synaptic and Axonal Degeneration in Canine Motor Neuron Disease

Dario I. Carrasco, Mark M. Rich, Qingbo Wang, Timothy C. Cope, Martin J. Pinter

Research output: Contribution to journalArticlepeer-review

Abstract

The role of neuronal activity in the pathogenesis of neurodegenerative disease is largely unknown. In this study, we examined the effects of increasing motor neuron activity on the pathogenesis of a canine version of inherited motor neuron disease (hereditary canine spinal muscular atrophy). Activity of motor neurons innervating the ankle extensor muscle medial gastrocnemius (MG) was increased by denervating close synergist muscles. In affected animals, 4 wk of synergist denervation accelerated loss of motor-unit function relative to control muscles and decreased motor axon conduction velocities. Slowing of axon conduction was greatest in the most distal portions of motor axons. Morphological analysis of neuromuscular junctions (NMJs) showed that these functional changes were associated with increased loss of intact innervation and with the appearance of significant motor axon and motor terminal sprouting. These effects were not observed in the MG muscles of age-matched, normal animals with synergist denervation for 5 wk. The results indicate that motor neuron action potential activity is a major contributing factor to the loss of motor-unit function and degeneration in inherited canine motor neuron disease.

Original languageAmerican English
JournalJournal of Neurophysiology
Volume92
DOIs
StatePublished - Aug 1 2004

Keywords

  • Activity-Driven Synaptic
  • Axonal Degeneration
  • Canine Motor Neuron Disease

Disciplines

  • Medical Cell Biology
  • Medical Neurobiology
  • Medical Physiology
  • Medical Sciences
  • Medicine and Health Sciences
  • Neurosciences
  • Physiological Processes

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