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Updated: Oct 9, 2025

Dosage-Adjusted Resistance Training in Mice with a Reduced Risk of Muscle Damage
Published on: August 31, 2022
Offspring from trained male mice inherit improved muscle mitochondrial function through PPAR co-repressor modulation
Ricardo Freitas-Dias1, Tanes I Lima2, Jose Maria Costa-Junior2
1Obesity and Comorbidities Research Center (OCRC), Department of Functional and Structural Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, SP, Brazil; Department of Physical Therapy, Laboratory of Exercise Physiology, University of Pernambuco, Petrolina, PE, Brazil.
Abstract:
Aim Investigate whether inheritance of improved skeletal muscle mitochondrial function and its association with glycemic control are multigenerational benefits of exercise.
Main Methods:
Male Swiss mice were subjected to 8 weeks of endurance training and mated with untrained females.
Key Findings:
Trained fathers displayed typical endurance training-induced adaptations. Remarkably, offspring from trained fathers also exhibited higher endurance performance, mitochondrial oxygen consumption, glucose tolerance and insulin sensitivity. However, PGC-1α expression was not increased in the offspring. In the offspring, the expression of the co-repressor NCoR1 was reduced, increasing activation of PGC-1α target genes. These effects correlated with higher DNA methylation at the NCoR1 promoter in both, the sperm of trained fathers and in the skeletal muscle of their offspring.
Significance:
Higher skeletal muscle mitochondrial function is inherited by epigenetic de-activation of a key PGC-1α co-repressor.
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