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Soy Isoflavones Ameliorate Fatty Acid Metabolism of Visceral Adipose Tissue by Increasing the AMPK Activity in Male Rats with Diet-Induced Obesity (DIO).

Jinlong Tan | Chao Huang | Qihui Luo | Wentao Liu | Dongjing Cheng | Yifan Li | Yu Xia | Chao Li | Li Tang | Jing Fang | Kangcheng Pan | Yangping Ou | Anchun Cheng | Zhengli Chen
Molecules (Basel, Switzerland) | 2019

Soy isoflavones are natural active ingredients of soy plants that are beneficial to many metabolic diseases, especially obesity. Many studies have reported that obesity is closely related to visceral fatty acid metabolism, but the effect has not been well defined. In this study, we show that soy isoflavones improve visceral fatty acid metabolism in diet-induced obese male rats, which was indicated by reduced body weight and visceral fat cell area, as well as suppressed visceral fat synthesis and accelerated fat hydrolysis. We also found that common components of soy isoflavones, daidzein and genistein, were able to inhibit the lipid accumulation process in 3T3-L1 cells. Moreover, we showed that soy isoflavones can promote on AMP-activated protein kinase (AMPK) activity both in vivo and in vitro, which may be implicated in lipid metabolism regulation of soy isoflavones. Our study demonstrates the potential of soy isoflavones as a mechanism for regulating lipid homeostasis in visceral adipose tissue, proven to be beneficial for obesity treatment.

Pubmed ID: 31374939

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Novus Biologicals (tool)

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Cell line 3T3-L1 is a Spontaneously immortalized cell line with a species of origin Mus musculus (Mouse)

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