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April 19, 2026Cells0 citationsOpen Access

Ultrastructural Signs of High Functional Activity of Neuromuscular Synapses in Aging Rats After Photobiomodulation

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TVTatyana VasyaginaDNDaria NefedovaASAndrey Seliverstov

Key Points

  • To assess the effects of photobiomodulation on neuromuscular junctions and skeletal muscle fibers in aging rats.
  • Applied photobiomodulation to the right m. vastus lateralis muscle of aged male Wistar rats.
  • Utilized light and transmission electron microscopy for analysis.
  • Compared treated muscles with untreated control muscles.
  • Increased number of active zones in the presynaptic membrane after treatment.
  • Elongation of the postsynaptic membrane and reduced synaptic cleft width observed.
  • Observed mitochondrial hyperplasia in presynaptic terminals.
  • Histological changes linked to aging were present in untreated muscles.

Abstract

Aging is characterized by progressive degeneration of neuromuscular junctions (NMJs), which significantly contributes to muscle weakness and the development of sarcopenia. Photobiomodulation (PBM), a non-invasive therapeutic method based on the use of low-intensity light, has shown promising results in mitigating muscle degeneration in both experimental and clinical studies. The aim of this study was to evaluate the ultrastructural effects of photobiomodulation on neuromuscular junctions and skeletal muscle fibers in the m. vastus lateralis muscle of aged rats using light and transmission electron microscopy. Male Wistar rats (18 months old, body weight 650–800 g, n = 10) were subjected to photobiomodulation of the right m. vastus lateralis muscle (650 nm, 6 J/cm2, four consecutive daily sessions of 3 min each). The contralateral left limb served as an untreated control. Muscle samples were analyzed by light and transmission electron microscopy. Histological examination revealed typical age-related changes in control muscles, including variability in muscle fiber diameter, centrally located nuclei, and an increased volume of connective tissue. Ultrastructural analysis confirmed signs of skeletal muscle aging, such as myofibril fragmentation, sarcomere disorganization, lipofuscin accumulation, and tubular aggregate formation. Morphometric analysis of neuromuscular junctions after photobiomodulation showed an increase in the number of active zones on the presynaptic membrane, elongation of the postsynaptic membrane, and a reduction in the width of the synaptic cleft. In addition, mitochondrial hyperplasia was observed in presynaptic terminals, while the total number of synaptic vesicles decreased. These findings indicate a compensatory reorganization of neuromuscular junctions and suggest that photobiomodulation can enhance their functional activity in aged skeletal muscle.

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Cite This Study

Vasyagina et al. (2026) studied this question.

synapsesocial.com/papers/69e4739a010ef96374d8f696https://doi.org/10.3390/cells15080710
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