ArticleBMC biology2022
Functional regeneration of the murine neuromuscular synapse relies on long-lasting morphological adaptations.
Article in BMC biology, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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Who cites it
19 citing papers in PubMed, 20 citations in OpenAlex.
- Targeted knockdown of Smn in muscle stem cells induces non-cell autonomous loss of motor neurons.Brain : a journal of neurology · 2026Article
- The fate of the neuromuscular junction in peripheral nerve injury - current understanding and future research aims: A scoping review.JPRAS open · 2026Review
- Junctions in Jeopardy: the neuromuscular junction is a selective pathological target in Charcot-Marie-Tooth disease.Mammalian genome : official journal of the International Mammalian Genome Society · 2026Review
- p75 neurotrophin receptor preserves neuromuscular synapse stability and muscle strength during aging.npj aging · 2026Article
- Lysophosphatidic acid mediates skeletal muscle fibrosis in denervation via activation of YAP/TAZ.JCI insight · 2026Article
- Early postsynaptic instability and acetylcholine receptor compartmentalization precede neuromuscular synapse dismantling.Communications biology · 2026Article
- Spatiotemporal Remodeling of Presynaptic Terminals in Human Neuromuscular Junctions.International journal of molecular sciences · 2026Article
- New Insights into Neuromuscular Junction Biology: Evidence from Human and Animal Research.International journal of molecular sciences · 2026Review
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- Disease mutation in gigaxonin-E3 ligase recapitulates giant axonal neuropathy in mice.Acta neuropathologica communications · 2025Article
- The multimodal transcriptional response of denervated skeletal muscle involves regulation ofProceedings of the National Academy of Sciences of the United States of America · 2025Article
- Is TREM2 a Stretch: Implications of TREM2 Along Spinal Cord Circuits in Health, Aging, Injury, and Disease.Cells · 2025Review
- Distal electrical stimulation enhances neuromuscular reinnervation and satellite cell differentiation for functional recovery.Stem cell research & therapy · 2025Article
- Regeneration of neuromuscular synapses after acute and chronic denervation by inhibiting the gerozyme 15-prostaglandin dehydrogenase.Science translational medicine · 2023Article
- Blocking insulin-like growth factor 1 receptor signaling pathway inhibits neuromuscular junction regeneration after botulinum toxin-A treatment.Cell death & disease · 2023Article
- Impaired motor unit recovery and maintenance in a knock-in mouse model of ALS-associated Kif5a variant.Neurobiology of disease · 2023Article
- Impaired communication at the neuromotor axis during Degenerative Cervical Myelopathy.Frontiers in cellular neuroscience · 2023Article
- Histological Methods to Assess Skeletal Muscle Degeneration and Regeneration in Duchenne Muscular Dystrophy.International journal of molecular sciences · 2022Review
Corrections and comments
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Authors and funding
5 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundIn a broad variety of species, muscle contraction is controlled at the neuromuscular junction (NMJ), the peripheral synapse composed of a motor nerve terminal, a muscle specialization, and non-myelinating terminal Schwann cells. While peripheral nerve damage leads to successful NMJ reinnervation in animal models, muscle fiber reinnervation in human patients is largely inefficient. Interestingly, some hallmarks of NMJ denervation and early reinnervation in murine species, such as fragmentation and poly-innervation, are also phenotypes of aged NMJs or even of unaltered conditions in other species, including humans. We have reasoned that rather than features of NMJ decline, such cellular responses could represent synaptic adaptations to accomplish proper functional recovery. Here, we have experimentally tackled this idea through a detailed comparative study of the short- and long-term consequences of irreversible (chronic) and reversible (partial) NMJ denervation in the convenient cranial levator auris longus muscle.
resultsOur findings reveal that irreversible muscle denervation results in highly fragmented postsynaptic domains and marked ectopic acetylcholine receptor clustering along with significant terminal Schwann cells sprouting and progressive detachment from the NMJ. Remarkably, even though reversible nerve damage led to complete reinnervation after 11 days, we found that more than 30% of NMJs are poly-innervated and around 65% of postsynaptic domains are fragmented even 3 months after injury, whereas synaptic transmission is fully recovered two months after nerve injury. While postsynaptic stability was irreversibly decreased after chronic denervation, this parameter was only transiently affected by partial NMJ denervation. In addition, we found that a combination of morphometric analyses and postsynaptic stability determinations allows discriminating two distinct forms of NMJ fragmentation, stable-smooth and unstable-blurred, which correlate with their regeneration potential.
conclusionsTogether, our data unveil that reversible nerve damage imprints a long-lasting reminiscence in the NMJ that results in the rearrangement of its cellular components. Instead of being predictive of NMJ decline, these traits may represent an efficient adaptive response for proper functional recovery. As such, these features are relevant targets to be considered in strategies aimed to restore motor function in detrimental conditions for peripheral innervation.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.