Fibroblast growth factor 21 and dietary macronutrient intake in female mice

•FGF21 administration decreases the consumption of sucrose solution by females.•FGF21 increases the consumption of dietary protein by female mice.•FGF21 acts in neurons to increase protein consumption in females. Fibroblast growth factor- 21 (FGF21) is a metabolic stress hormone that is released fro...

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Veröffentlicht in:Physiology & behavior 2022-12, Vol.257, p.113995-113995, Article 113995
Hauptverfasser: Wu, Chih-Ting, Larson, Karlton R., Goodson, Michael L., Ryan, Karen K.
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Sprache:eng
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Zusammenfassung:•FGF21 administration decreases the consumption of sucrose solution by females.•FGF21 increases the consumption of dietary protein by female mice.•FGF21 acts in neurons to increase protein consumption in females. Fibroblast growth factor- 21 (FGF21) is a metabolic stress hormone that is released from the liver in response to various nutritional challenges. Because of its notable effects to improve metabolic health, including body fat loss, glucose control, and hepatosteatosis, several pharmaceutical analogs of FGF21 are in development for the treatment of metabolic disease. In addition, a small but developing literature clearly demonstrates that FGF21 also controls feeding behavior. Pharmacological administration of FGF21 reduces the consumption of simple sugars and other sweet tastants, and it increases the consumption of dietary proteins in males, suggesting another potential mechanism by which FGF21-treatment could improve metabolic health— by promoting healthy eating. Despite that sex is a key biological variable influencing feeding behavior and macronutrient selection, the current literature to date primarily on males. In this study, we investigated the effect of FGF21 on sucrose intake and macronutrient selection in female mice. Similar to our previous findings in male mice, we report that FGF21 administration decreases the consumption of sucrose solution by females, and that this is offset by increased chow intake. Also in agreement with our previous findings in males, we report that FGF21 increases the consumption of dietary protein by female mice, and this is offset by either reduced carbohydrate or by reduced fat intake. Lastly, we find that the effect of FGF21 to direct macronutrient intake in females depends on its actions in neurons. Overall, our data support a role for FGF21 to direct macronutrient intake in a similar manner in female and male mice.
ISSN:0031-9384
1873-507X
DOI:10.1016/j.physbeh.2022.113995