Publication | Open Access
Dissecting Murine Muscle Stem Cell Aging through Regeneration Using Integrative Genomic Analysis
78
Citations
76
References
2020
Year
Regenerative MedicineMechanobiologyEmbryonic Stem CellDevelopmental BiologyProgressive LossEngineeringSkeletal MuscleMedicineAdult Stem CellStem Cell ResearchCardiac RegenerationMuscle Stem CellsStem-cell TherapyCellular SenescenceSystems BiologyStem CellsCell BiologyCell Specialization
During aging, there is a progressive loss of volume and function in skeletal muscle that impacts mobility and quality of life. The repair of skeletal muscle is regulated by tissue-resident stem cells called satellite cells (or muscle stem cells [MuSCs]), but in aging, MuSCs decrease in numbers and regenerative capacity. The transcriptional networks and epigenetic changes that confer diminished regenerative function in MuSCs as a result of natural aging are only partially understood. Herein, we use an integrative genomics approach to profile MuSCs from young and aged animals before and after injury. Integration of these datasets reveals aging impacts multiple regulatory changes through significant differences in gene expression, metabolic flux, chromatin accessibility, and patterns of transcription factor (TF) binding activities. Collectively, these datasets facilitate a deeper understanding of the regulation tissue-resident stem cells use during aging and healing.
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