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Ketosis proportionately spares glucose utilization in brain

机译:酮症会相应地节省大脑中的葡萄糖利用

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摘要

The brain is dependent on glucose as a primary energy substrate, but is capable of utilizing ketones such as β-hydroxybutyrate and acetoacetate, as occurs with fasting, starvation, or chronic feeding of a ketogenic diet. The relationship between changes in cerebral metabolic rates of glucose (CMRglc) and degree or duration of ketosis remains uncertain. To investigate if CMRglc decreases with chronic ketosis, 2-[18F]fluoro-2-deoxy-D-glucose in combination with positron emission tomography, was applied in anesthetized young adult rats fed 3 weeks of either standard or ketogenic diets. Cerebral metabolic rates of glucose (μmol/min per 100 g) was determined in the cerebral cortex and cerebellum using Gjedde–Patlak analysis. The average CMRglc significantly decreased in the cerebral cortex (23.0±4.9 versus 32.9±4.7) and cerebellum (29.3±8.6 versus 41.2±6.4) with increased plasma ketone bodies in the ketotic rats compared with standard diet group. The reduction of CMRglc in both brain regions correlates linearly by ∼9% for each 1 mmol/L increase of total plasma ketone bodies (0.3 to 6.3 mmol/L). Together with our meta-analysis, these data revealed that the degree and duration of ketosis has a major role in determining the corresponding change in CMRglc with ketosis.
机译:大脑依赖葡萄糖作为主要能量底物,但是能够像空腹,饥饿或长期喂食生酮饮食时那样利用酮,例如β-羟基丁酸酯和乙酰乙酸酯。葡萄糖的脑代谢率(CMRglc)的变化与酮症程度或持续时间之间的关系仍然不确定。为了研究CMRglc是否随着慢性酮症而降低,将2-[ 18 F]氟-2-脱氧-D-葡萄糖与正电子发射断层扫描相结合,应用于麻醉的成年幼鼠,每只老鼠喂养3周标准或生酮饮食。使用Gjedde–Patlak分析法测定大脑皮层和小脑中葡萄糖的脑新陈代谢速率(每100μgμmol/ min)。与标准饮食组相比,酮症大鼠血浆酮体增加,平均大脑皮层(23.0±4.9对32.9±4.7)和小脑(29.3±8.6对41.2±6.4)的CMRglc显着降低。总血浆酮体每增加1 mmol / L(0.3至6.3 mmol / L),两个脑区CMRglc的减少呈线性相关约9%。连同我们的荟萃分析,这些数据表明,酮症的程度和持续时间在确定伴有酮症的CMRglc的相应变化中起着重要作用。

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