Advanced Research Center for Geriatric and Gerontology, Akita University, Akita 010-8543, Japan.
Department of Occupational Therapy, Graduate School of Medicine, Akita University, Akita 010-8543, Japan.
Biomolecules. 2024 Aug 28;14(9):1079. doi: 10.3390/biom14091079.
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.
随着许多国家(包括日本)人口老龄化,减轻与衰老相关的身体功能下降的努力变得尤为重要,不仅可以提高个人的生活质量,还可以减轻功能丧失对社会的影响。糖耐量受损、肌肉无力和认知能力下降是众所周知的衰老影响。这些相互关联的因素可能会形成恶性循环,因为糖耐量受损会加速肌肉无力和认知能力下降。未调制的 40Hz(u40Hz)刺激对人耳不可察觉,并且已被报道可改善人类和小鼠的认知功能。然而,关于 u40Hz 刺激的研究仍然有限。本研究旨在报告 u40Hz 刺激对加速衰老易感(SAMP)-10 小鼠葡萄糖耐量和肌肉力量的影响,SAMP-10 小鼠接受了五周的 u40Hz 刺激,随后进行了葡萄糖耐量测试、认知和行为评估以及脆弱性评估。与对照组相比,u40Hz 刺激组的葡萄糖耐量下降得到缓解,脆弱性指数(FI)更好,肌肉力量明显保存。刺激肌肉组织的微阵列分析显示,β氧化基因和过氧化物酶体增殖物激活受体γ下游功能基因显著上调,时钟基因显著下调。这些发现表明 u40Hz 刺激对葡萄糖耐量、肌肉力量和认知功能有益,值得在该领域进一步研究。