首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Compartmentalised energy metabolism supporting glutamatergic neurotransmission in response to increased activity in the rat cerebral cortex: A C-13 MRS study in vivo at 14.1 T
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Compartmentalised energy metabolism supporting glutamatergic neurotransmission in response to increased activity in the rat cerebral cortex: A C-13 MRS study in vivo at 14.1 T

机译:间隔能量代谢支持谷氨酸能神经传递,以响应大鼠大脑皮层活动的增加:在14.1 T时进行的C-13 MRS体内研究

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摘要

Many tissues exhibit metabolic compartmentation. In the brain, while there is no doubt on the importance of functional compartmentation between neurons and glial cells, there is still debate on the specific regulation of pathways of energy metabolism at different activity levels. Using C-13 magnetic resonance spectroscopy (MRS) in vivo, we determined fluxes of energy metabolism in the rat cortex under alpha-chloralose anaesthesia at rest and during electrical stimulation of the paws. Compared to resting metabolism, the stimulated rat cortex exhibited increased glutamate-glutamine cycle (+67 nmol/g/min,+95%, P< 0.001) and tricarboxylic (TCA) cycle rate in both neurons (+62 nmol/g/min,+12%, P< 0.001) and astrocytes (+68 nmol/g/min,+22%, P = 0.072). A minor, non-significant modification of the flux through pyruvate carboxylase was observed during stimulation (+5 nmol/g/min,+8%). Altogether, this increase in metabolism amounted to a 15% (67 nmol/g/min, P< 0.001) increase in CMRglc(ox), i. e. the oxidative fraction of the cerebral metabolic rate of glucose. In conclusion, stimulation of the glutamate-glutamine cycle under alpha-chloralose anaesthesia is associated to similar enhancement of neuronal and glial oxidative metabolism.
机译:许多组织表现出代谢区室。在大脑中,毫无疑问,神经元和神经胶质细胞之间功能区隔的重要性,但在不同活动水平下能量代谢途径的具体调节仍存在争议。在体内使用C-13磁共振波谱(MRS),我们确定了在静息时和在电刺激足爪的过程中,在α-氯醛麻醉下大鼠皮层中能量代谢的通量。与静息代谢相比,受刺激的大鼠皮层在两个神经元中均表现出增加的谷氨酸-谷氨酰胺循环(+67 nmol / g / min,+ 95%,P <0.001)和三羧酸(TCA)循环速率(+62 nmol / g / min)。 ,+ 12%,P <0.001)和星形胶质细胞(+ 68nmol / g / min,+ 22%,P = 0.072)。在刺激过程中观察到通过丙酮酸羧化酶的通量有轻微的非显着变化(+5 nmol / g / min,+ 8%)。总的来说,这种新陈代谢的增加等于CMRglc(ox)的增加15%(67 nmol / g / min,P <0.001),即。 e。葡萄糖脑代谢率的氧化部分。总之,在α-氯代葡萄糖麻醉下刺激谷氨酸-谷氨酰胺循环与神经元和神经胶质氧化代谢的类似增强有关。

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