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February 27, 2026Frontiers in Surgery1 citationsOpen Access

The neuromuscular junction: a critical component of functional recovery after peripheral nerve injury

WMWhitney E. MuhlesteinMMMark A. Mahan

Key Points

  • To explore the role of the neuromuscular junction in functional recovery following peripheral nerve injury.
  • Reviewed existing literature on neuromuscular junction anatomy and physiology.
  • Examined changes in neuromuscular junctions post-injury.
  • Identified knowledge gaps regarding nerve regeneration and neuromuscular junction function.
  • Neuromuscular junctions fail to recover fully after about 18 months of denervation.
  • Delayed axon regeneration limits recovery chances and intervention options.
  • Identified opportunities for NMJ-focused therapeutic strategies.

Abstract

Peripheral nerve injury can result in potentially devastating neurological deficits and often disproportionately impacts young workers. Recovery of motor function after peripheral nerve injury requires the regeneration of the nerve from the site of injury to the neuromuscular junction (NMJ), where signals must be transduced effectively across the synapse, resulting in target muscle contraction. For reasons that are not fully understood, after about 18 months of denervation, functional NMJs fail to recapitulate. This, in combination with the slow velocity of axon regeneration, significantly limits both the window of opportunity for intervention and surgical reconstruction options. Here, we review what is currently known with respect to NMJ physiology, anatomy, development, and changes after injury. We also highlight knowledge gaps and opportunities for study with the goal of developing novel, NMJ-focused avenues of treatment for patients after peripheral nerve injury.

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Cite This Study

Muhlestein et al. (2026) studied this question.

synapsesocial.com/papers/69a1344fed1d949a99abe246https://doi.org/10.3389/fsurg.2026.1746207
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