首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >The Antiepileptic Ketogenic Diet Alters Hippocampal Transporter Levels and Reduces Adiposity in Aged Rats
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The Antiepileptic Ketogenic Diet Alters Hippocampal Transporter Levels and Reduces Adiposity in Aged Rats

机译:抗癫痫酮饮食改变了海马转运蛋白水平并降低了老年大鼠的肥胖

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Nutritional ketosis is induced by high fat/low carbohydrate dietary regimens, which produce high levels of circulating ketone bodies, shifting metabolism away from glucose utilization. While ketogenic diets (KD) were initially introduced to suppress seizures, they are garnering attention for their potential to treat a myriad of neurodegenerative and metabolic disorders that are associated with advanced age. The feasibility and physiological impact of implementing a long-term KD in old animals, however, has not been systematically examined. In this study, young and aged rats consumed a calorically- and nutritionally-matched KD or control diet for 12 weeks. All KD-fed rats maintained higher levels of BHB and lower levels of glucose relative to controls. However, it took the aged rats longer to reach asymptotic levels of BHB compared to young animals. Moreover, KD-fed rats had significantly less visceral white and brown adipose tissue than controls without a loss of lean mass. Interestingly, the KD led to significant alterations in protein levels of hippocampal transporters for monocarboxylates, glucose, and vesicular glutamate and gamma-aminobutyric acid. Most notably, the age-related decline in vesicular glutamate transporter expression was reversed by the KD. These data demonstrate the feasibility and potential benefits of KDs for treating age-associated neural dysfunction.
机译:由高脂肪/低碳水化合物膳食方案诱导营养刺激,产生高水平的循环酮体,将代谢移离葡萄糖利用率。虽然最初引入酮饮食(KD)以抑制癫痫发作,但它们是对治疗与晚期有关的神经变性和代谢障碍的潜力来追加注意力。然而,在旧动物中实施长期KD的可行性和生理影响尚未得到系统地检查。在这项研究中,年轻和老年的大鼠在热量和营养匹配的Kd或控制饮食中消耗了12周。所有KD-Fed大鼠相对于对照组保持较高水平的BHB和较低水平的葡萄糖。然而,与幼小动物相比,它需要老年的大鼠才能达到BHB的渐近水平。此外,KD-FED大鼠的内脏白色和棕色脂肪组织显着较低,而不是对瘦物质丧失的对照。有趣的是,KD导致单羧酸盐,葡萄糖和囊泡谷氨酸和γ-氨基丁酸的海马转运蛋白水平的显着改变。最值得注意的是,Kd逆转了凹凸谷氨酸转运蛋白表达的年龄相关的下降。这些数据证明了KDS治疗年龄相关的神经功能障碍的可行性和潜在益处。

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