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Low-carbohydrate and high-protein diet may impair working memory via downregulation of hypothalamic T1R3 in mice
Takeru Shima1,2
1Department of Health and Physical Education, Cooperative Faculty of Education, Gunma University, Maebashi, Gunma, Japan.
Abstract:
BackgroundLow-carbohydrate, high-protein (LC-HP) diet declines working memory function in wild-type mice. Since the glucose sensor T1R3 is critical for cognitive function, it was unknown whether the LC-HP diet-induced memory declines involve altered brain T1R3 levels.AimTo examine the involvement of central T1R3 in LC-HP diet-induced memory declines.MethodsNine-week-old male C57BL/6J mice were assigned to either an LC-HP diet (25.1% carbohydrate, 57.2% protein, 17.7% fat) or a control diet (58.9% carbohydrate, 24.0% protein, 17.1% fat). Another set of standard-diet-fed mice received either hypothalamic T1r3 small interfering RNA (siRNA) or a negative control delivered via the osmotic pump. After four weeks, all mice underwent a Y-maze test, and T1r3 messenger RNA (mRNA) expression analysis in the hippocampus and hypothalamus.ResultsThe LC-HP diet declined working memory and hypothalamic T1r3 mRNA levels by about 27% (p < 0.01 and p < 0.05, respectively). Furthermore, hypothalamic T1r3-siRNA administration led to working memory deficits (p < 0.05).ConclusionHypothalamic T1R3 might be involved in LC-HP diet-induced working memory decline.
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