Contributions of individual satellite cells to muscle regeneration assessed using a confetti mouse model
Heemskerk, H.; Jagannathan, N. S.; Nasir, N. J. M.; Nguyen, B. P.; Sacadevan, K.; Matsudaira, P.; So, P. T.; Tucker-Kellogg, L.
Show abstract
Insufficient regeneration is implicated in muscle pathologies, but much remains unknown about the regenerative output of individual muscle stem cells, called satellite cells (SCs). Prior work showed that individual SCs contribute to regeneration of more than one muscle fiber ("fiber-crossing") after full-muscle damage. We investigated whether fiber-crossing also occurred in peripheral regions of a localized muscle injury. To assess fiber-crossing with a minimum number of mice, we used lineage tracing with confetti fluorescence, and developed a novel stochastic modeling method to interpret the ambiguity of multi-color fluorescent lineage tags. Microscopy of the regenerated muscle showed that adjacent fibers often expressed the same-colored tags. Computational analysis concluded that the observed color patches would be extremely unlikely to occur by chance unless SCs contributed myonuclei to multiple adjacent fibers (26-33% of SCs contributing to at most 1-2 additional fibers). Interestingly, these results were similar across the different regions studied, suggesting that severe destruction is not required for fiber-crossing. Our method to assess fiber-crossing may be useful for future study of gene and cell therapies that use fiber-crossing to aid muscle regeneration.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Endothelial cell signature in muscle stem cells validated by VEGFA-FLT1-AKT1 axis promoting survival of muscle stem cell 94%
- Muscle-resident mesenchymal progenitors sense and repair peripheral nerve injury via the GDNF-BDNF axis 94%
- A transcriptome atlas of leg muscles from healthy human volunteers reveals molecular and cellular signatures associated with muscle location 93%
Similar papers in this journal
- Displaced myonuclei are attributable to both resident myonuclear migration and stem cell fusion during mechanical loading in adult skeletal muscle 94%
- Sox11 is enriched in myogenic progenitors but dispensable for development and regeneration of skeletal muscle. 93%
- Dynamics of myogenic differentiation using a novel Myogenin knock-in reporter mouse 92%
Similar papers in this journal
- Single-cell analysis of the muscle stem cell hierarchy identifies heterotypic communication signals involved in skeletal muscle regeneration 96%
- Heterogeneity of satellite cells implicates DELTA1/ NOTCH2 signaling in self-renewal 95%
- Fibroblast diversification is an embryonic process dependent on muscle contraction 94%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.