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Unmodulated 40 Hz Stimulation as a Therapeutic Strategy for Aging: Improvements in Metabolism, Frailty, and Cognitive Function in Senescence-Accelerated Prone 10 Mice. | LitMetric

AI Article Synopsis

  • Aging populations face challenges like impaired glucose tolerance, muscle weakness, and cognitive decline, which can worsen each other and affect society.
  • Unmodulated 40 Hz (u40Hz) stimulation, which is inaudible, has shown potential to improve cognitive function but needs more study.
  • Research using SAMP-10 mice showed that u40Hz stimulation helped improve glucose tolerance, muscle strength, and reduced frailty, suggesting it may be beneficial for countering age-related declines.

Article Abstract

With aging populations in many countries, including Japan, efforts to mitigate the aging-related decline in physical function have gained importance not only for improving individual quality of life but also for mitigating the effects of this loss of function on society. Impaired glucose tolerance, muscle weakness, and cognitive decline are well-known effects of aging. These interrelated factors can create a vicious cycle because impaired glucose tolerance can accelerate muscle weakness and cognitive decline. Unmodulated 40 Hz (u40Hz) stimulation is imperceptible to the human ear and has been reported to improve cognitive function in humans and mice. However, research on the effects of u40Hz stimulation is still limited. This study aimed to report the effects of u40Hz stimulation on glucose tolerance and muscle strength in senescence-accelerated prone (SAMP)-10 mice, a model of accelerated aging. SAMP-10 mice underwent five weeks of u40Hz stimulation followed by glucose-tolerance tests, cognitive and behavioral assessments, and frailty evaluations. In comparison with the control group, the u40Hz-stimulation group showed mitigation of age-related decline in glucose tolerance, a better frailty index (FI), and notably preserved muscle strength. Microarray analysis of stimulated muscle tissue revealed significant upregulation of β-oxidation genes and genes functioning downstream of peroxisome proliferator-activated receptor gamma, and significant downregulation of clock genes. These findings indicate the beneficial effects of u40Hz stimulation on glucose tolerance, muscle strength, and cognitive function, warranting further research in this area.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11429768PMC
http://dx.doi.org/10.3390/biom14091079DOI Listing

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