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Research Article | Open Access | Just Accepted

Guanidinoacetic acid alleviates high-fat diet-induced obesity by facilitating brown adipose tissue thermogenesis in middle-aged mice

Xinrui Lia,1Xuying Lia,1Shilong YuaJianchen YanaYuan Sua,b( )Junxing Zhaoa,c( )

a College of Animal Sciences, Shanxi Agricultural University, Taigu 030801, China

b Shanxi Key Laboratory of Animal Genetics Resource Utilization and Breeding, Shanxi Agricultural University, Taigu 030801, China

c Yazhouwan National Laboratory, Sanya 572024, China

1 These authors contributed equally to this work.

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Abstract

Brown adipose tissue (BAT) plays a critical role in maintaining animal body temperature and energy homeostasis. Growing evidence has demonstrated that guanidinoacetic acid (GAA) is a direct precursor of creatine, which may act as a BAT activator to increase whole-body energy expenditure and metabolism. In this context, the objective of the study was to investigate the effect of dietary GAA supplementation on lipid and glucose metabolism, systemic metabolic homeostasis, and thermogenic function of BAT in middle-aged mice with high-fat diet (HFD)-induced obesity, and to attempt to explore its underlying mechanisms. Our results showed that GAA supplementation could effectively alleviate HFD-induced obesity. Glucose tolerance test (GTT), and insulin tolerance test (ITT) indicated that GAA supplementation significantly restored glucose and insulin tolerance, and reversed the serum levels of TG, TC, LDL-C, and HDL-C in HFD-fed mice. Moreover, GAA treatment contributed to energy expenditure, as reflected by the increased oxygen consumption, carbon dioxide production, respiratory exchange ratio, and heat production. In addition, GAA supplementation increased the expression levels of PPARγ and C/EBPα in the BAT. Meanwhile, GAA supplementation significantly facilitated the thermogenic capacity of BAT by upregulating the expression levels of BAT markers (UCP1, PGC-1α, PRDM16, and Cidea), mitochondrial-related gene (Cox7a), and creatine cycle-related genes, including Gamt, Ckb, Alpl, and Slc6a8. Intriguingly, we observed that dietary GAA supplementation could activate the AMPK/Sirt1 signaling pathway and induce DNA demethylation in BAT. Overall, these results suggest that GAA might have potential as a functional food source for enhancing BAT thermogenesis to combat obesity and related disorders.

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Food Science and Human Wellness

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Cite this article:
Li X, Li X, Yu S, et al. Guanidinoacetic acid alleviates high-fat diet-induced obesity by facilitating brown adipose tissue thermogenesis in middle-aged mice. Food Science and Human Wellness, 2025, https://doi.org/10.26599/FSHW.2025.9250688

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Received: 05 January 2025
Revised: 18 February 2025
Accepted: 30 April 2025
Available online: 11 July 2025

© 2025 Beijing Academy of Food Sciences. Publishing services by Tsinghua University Press.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).