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Updated: Jul 16, 2026

Dissection of Single Skeletal Muscle Fibers for Immunofluorescent and Morphometric Analyses of Whole-Mount Neuromuscular Junctions
Published on: August 14, 2021
Alterations in the permeability of dystrophic fibers during neuromuscular junction development
Maria Julia Marques1, Cintia Yuri Matsumura, H Santo Neto
1Departamento de Anatomia, Instituto de Biologia, Universidade Estadual de Campinas, Campinas, São Paulo 13083-970, Brazil. marques@unicamp.br
Abstract:
In the mdx mice, lack of dystrophin leads to increases in calcium influx and myonecrosis, followed by muscle regeneration. Synapse elimination is faster in mdx than in controls, suggesting that increases in calcium influx during development could be involved. In the present study, we evaluated whether dystrophic fibers display changes in permeability to Evans Blue Dye (EBD) during development of the neuromuscular junction. EBD is a sensitive label for the early detection of increased myofiber permeability and sarcolemmal damage. After intraperitoneal injection of EBD, sternomastoid (STN) and tibialis anterior (T. anterior) muscles were analyzed with fluorescence microscopy. At 01, 07 and 14 days of age, STN and TA mdx myofibers were not stained with EBD. At 21 days of age, positive labeling of TA and STN mdx myofibers was seen, suggesting permeability modification and myonecrosis. Adult muscles showed a decrease (T. anterior) or no changes (STN) in the amount of EBD-positive fibers. These results suggest that there is no sarcolemmal damage detected by EBD during development of dystrophic neuromuscular junctions and other factors may contribute to the earlier synapse elimination seen in dystrophic muscle.
Insights
In mdx mice, Evans Blue Dye (EBD) staining indicated myofiber permeability and myonecrosis at 21 days, but not earlier. This suggests sarcolemmal damage is not the primary cause of early synapse elimination in muscular dystrophy.
Area of Science:
- Muscle Physiology
- Neuromuscular Biology
- Duchenne Muscular Dystrophy Research
Background:
- Duchenne muscular dystrophy (DMD) in mdx mice involves dystrophin deficiency, leading to increased calcium influx, myonecrosis, and faster synapse elimination.
- The role of myofiber membrane permeability and sarcolemmal damage in the developmental aspects of neuromuscular junctions in DMD is not fully understood.
Purpose of the Study:
- To investigate changes in myofiber permeability using Evans Blue Dye (EBD) in mdx mice during neuromuscular junction development.
- To determine if increased sarcolemmal permeability correlates with the accelerated synapse elimination observed in dystrophic muscle.
Main Methods:
- Intraperitoneal injection of Evans Blue Dye (EBD) in mdx and control mice at various developmental time points (1, 7, 14, and 21 days, and adult).
- Analysis of sternomastoid (STN) and tibialis anterior (T. anterior) muscles using fluorescence microscopy to detect EBD-positive myofibers.
- Correlation of EBD labeling with developmental stages of the neuromuscular junction.
Main Results:
- No EBD staining was observed in mdx myofibers at 1, 7, or 14 days of age.
- Positive EBD labeling, indicating myofiber permeability and myonecrosis, was detected in mdx tibialis anterior and sternomastoid muscles at 21 days of age.
- Adult mdx muscles showed decreased (T. anterior) or unchanged (STN) EBD-positive fibers compared to younger stages.
Conclusions:
- Evans Blue Dye staining does not detect sarcolemmal damage during the early development of neuromuscular junctions in mdx mice.
- The observed myofiber permeability and myonecrosis at 21 days suggest a developmental window of membrane instability.
- These findings imply that factors other than sarcolemmal damage detectable by EBD likely contribute to the accelerated synapse elimination in dystrophic muscle.
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