Section of Psychoneurobiology, Center of Brain, Behavior and Metabolism, University of Luebeck, Germany.
Metabolism. 2018 Aug;85:90-96. doi: 10.1016/j.metabol.2018.02.013. Epub 2018 Mar 6.
There is evidence that the brain's energy status is lowered in obesity despite of chronic hypercaloric nutrition. The underlying mechanisms are unknown. We hypothesized that the brain of obese people does not appropriately generate energy in response to a hypercaloric supply.
Glucose was intravenously infused in 17 normal weights and 13 obese participants until blood glucose concentrations reached the postprandial levels of 7 mmol/L and 10 mmol/L. Changes in cerebral adenosine triphosphate (ATP) and phosphocreatine (PCr) content were measured by phosphorus magnetic resonance spectroscopy and stress hormonal measures regulating glucose homeostasis were monitored. Because vitamin C is crucial for a proper neuronal energy synthesis we determined circulating concentrations during the experimental testing.
Cerebral high-energy phosphates were increased at blood glucose levels of 7 mmol/L in normal weights, which was completely missing in the obese. Brain energy content moderately raised only at blood glucose levels of 10 mmol/L in obese participants. Vitamin C concentrations generally correlated with the brain energy content at blood glucose concentrations of 7 mmol/L.
Our data demonstrate an inefficient cerebral energy gain upon a glucose load in obese men, which may result from a dysfunctional glucose transport across the blood-brain barrier or a downregulated energy synthesis in mitochondrial oxidation processes. Our finding offers an explanation for the chronic neuroenergetic deficiency and respectively missing satiety perception in obesity.
尽管存在慢性高卡路里营养,肥胖症患者的大脑能量状态仍会降低。其潜在机制尚不清楚。我们假设肥胖人群的大脑在应对高卡路里供应时无法适当地产生能量。
17 名正常体重者和 13 名肥胖参与者静脉输注葡萄糖,直至血糖浓度达到餐后 7mmol/L 和 10mmol/L。通过磷磁共振波谱测量脑三磷酸腺苷 (ATP) 和磷酸肌酸 (PCr) 含量的变化,并监测调节血糖稳态的应激激素措施。因为维生素 C 对适当的神经元能量合成至关重要,所以我们在实验测试期间测定了循环浓度。
在正常体重者中,血糖水平为 7mmol/L 时,大脑高能磷酸增加,但肥胖者完全缺失。在肥胖参与者中,仅在血糖水平为 10mmol/L 时脑能量含量才适度升高。维生素 C 浓度通常与血糖水平为 7mmol/L 时的脑能量含量相关。
我们的数据表明,肥胖男性在葡萄糖负荷时大脑能量获取效率低下,这可能是由于血脑屏障葡萄糖转运功能障碍或线粒体氧化过程中能量合成下调所致。我们的发现为肥胖症中慢性神经能量不足和相应的饱腹感缺失提供了一种解释。