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Article

Effects of Turmeric Extract on Age-Related Skeletal Muscle Atrophy in Senescence-Accelerated Mice

1
Health Nutrition, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-0032, Japan
2
Department of Geriatric Medicine, Graduate School of Medicine, The University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-0032, Japan
*
Authors to whom correspondence should be addressed.
Life 2023, 13(4), 941; https://doi.org/10.3390/life13040941
Submission received: 10 February 2023 / Revised: 14 March 2023 / Accepted: 31 March 2023 / Published: 3 April 2023
(This article belongs to the Special Issue Feature Studies in Skeletal Muscle Physiology)

Abstract

Muscle atrophy is one of the main causes of sarcopenia—the age-related loss of skeletal muscle. In this study, we investigated the effect of turmeric (Curcuma longa) extract (TE) supplementation on age-related muscle atrophy in a senescence-accelerated mouse model and explored the underlying mechanisms. Twenty-six-week-old male, senescence-accelerated mouse resistant (SAMR) mice received the AIN-93G basal diet, while twenty-six-week-old male, senescence-accelerated mouse prone 8 (SAMP8) mice received the AIN-93G basal diet or a 2% TE powder-supplemented diet for ten weeks. Our findings revealed that TE supplementation showed certain effects on ameliorating the decrease in body weight, tibialis anterior weight, and mesenteric fat tissue weight in SAMP8 mice. TE improved gene expression in the glucocorticoid receptor-FoxO signaling pathway in skeletal muscle, including redd1, klf15, foxo1, murf1, and mafbx. Furthermore, TE might have the certain potential on improving the dynamic balance between anabolic and catabolic processes by inhibiting the binding of glucocorticoid receptor or FoxO1 to the glucocorticoid response element or FoxO-binding element in the MuRF1 promoter in skeletal muscle, thereby promoting muscle mass and strength, and preventing muscle atrophy and sarcopenia prevention. Moreover, TE may have reduced mitochondrial damage and maintained cell growth and division by downregulating the mRNA expression of the genes mfn2 and tsc2. Thus, the results indicated TE’s potential for preventing age-related muscle atrophy and sarcopenia.
Keywords: turmeric extract; age-related skeletal muscle atrophy; sarcopenia; senescence-accelerated mouse model; GR-FoxO signaling pathway turmeric extract; age-related skeletal muscle atrophy; sarcopenia; senescence-accelerated mouse model; GR-FoxO signaling pathway

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MDPI and ACS Style

Lyu, W.; Kousaka, M.; Jia, H.; Kato, H. Effects of Turmeric Extract on Age-Related Skeletal Muscle Atrophy in Senescence-Accelerated Mice. Life 2023, 13, 941. https://doi.org/10.3390/life13040941

AMA Style

Lyu W, Kousaka M, Jia H, Kato H. Effects of Turmeric Extract on Age-Related Skeletal Muscle Atrophy in Senescence-Accelerated Mice. Life. 2023; 13(4):941. https://doi.org/10.3390/life13040941

Chicago/Turabian Style

Lyu, Weida, Marika Kousaka, Huijuan Jia, and Hisanori Kato. 2023. "Effects of Turmeric Extract on Age-Related Skeletal Muscle Atrophy in Senescence-Accelerated Mice" Life 13, no. 4: 941. https://doi.org/10.3390/life13040941

APA Style

Lyu, W., Kousaka, M., Jia, H., & Kato, H. (2023). Effects of Turmeric Extract on Age-Related Skeletal Muscle Atrophy in Senescence-Accelerated Mice. Life, 13(4), 941. https://doi.org/10.3390/life13040941

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