Nutrients

Rutin helps maintain muscle energy function and lowers cell damage to protect against aging caused by D-galactose in lab and animal studies

Updated

Abstract

Essence

Rutin may blunt D-gal-induced skeletal muscle aging signals by improving circadian, oxidative-stress, and mitochondrial measures.

Evidence

This preclinical in vitro and mouse study tested rutin in D-gal-aged C2C12 myotubes and C57BL/6 mice, measuring circadian gene rhythms, oxidative stress, mitochondrial function, and muscle performance.

Caveat

The in vivo gains were model-based, strongest around night timing, and did not include altered muscle fiber-type distribution or human outcomes.

Simplified

Key numbers

56.3%
Increase in Myotube Formation
Percentage of myotube-positive cells with rutin treatment vs. D-gal group.
37.0%
Decrease in SA-β-gal Positive Cells
Proportion of senescence-associated β-galactosidase positive cells with rutin treatment vs. D-gal group.

Full Text

What this is

  • Rutin, a natural flavonoid, shows potential in mitigating skeletal muscle aging.
  • It enhances circadian rhythms, reduces oxidative stress, and improves mitochondrial function.
  • The study investigates both in vitro and in vivo effects of rutin on muscle health.

Essence

  • Rutin supplementation improves muscle differentiation, reduces oxidative stress, and enhances mitochondrial function in aging muscle cells, both in vitro and in vivo.

Key takeaways

  • Rutin restored myotube formation in C2C12 cells from 23.8% in D-gal group to 56.3% with treatment, indicating improved differentiation.
  • In vivo, rutin enhanced muscle performance, particularly during the active phase, and partially restored circadian rhythmicity of core clock genes.

Caveats

  • The study did not explore all aging-related processes, such as autophagy and inflammation, which are critical for muscle health.
  • Only two time points were used for in vivo assessments, which may not fully capture circadian rhythms.

Definitions

  • Sarcopenia: Progressive loss of skeletal muscle mass and function, associated with aging and frailty.

Simplified

Funding

Competing interests

No financial or personal ties reported.
PubMed

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