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酮体对体内基础及活动依赖型神经元氧化的贡献。

The contribution of ketone bodies to basal and activity-dependent neuronal oxidation in vivo.

作者信息

Chowdhury Golam M I, Jiang Lihong, Rothman Douglas L, Behar Kevin L

机构信息

Department of Psychiatry, The Anlyan Center, Magnetic Resonance Research Center, Yale University School of Medicine, New Haven, Connecticut, USA.

Department of Diagnostic Radiology, The Anlyan Center, Magnetic Resonance Research Center, Yale University School of Medicine, New Haven, Connecticut, USA.

出版信息

J Cereb Blood Flow Metab. 2014 Jul;34(7):1233-42. doi: 10.1038/jcbfm.2014.77. Epub 2014 Apr 30.

Abstract

The capacity of ketone bodies to replace glucose in support of neuronal function is unresolved. Here, we determined the contributions of glucose and ketone bodies to neocortical oxidative metabolism over a large range of brain activity in rats fasted 36 hours and infused intravenously with [2,4-(13)C₂]-D-β-hydroxybutyrate (BHB). Three animal groups and conditions were studied: awake ex vivo, pentobarbital-induced isoelectricity ex vivo, and halothane-anesthetized in vivo, the latter data reanalyzed from a recent study. Rates of neuronal acetyl-CoA oxidation from ketone bodies (V(acCoA-kbN)) and pyruvate (V(pdhN)), and the glutamate-glutamine cycle (V(cyc)) were determined by metabolic modeling of (13)C label trapped in major brain amino acid pools. V(acCoA-kbN) increased gradually with increasing activity, as compared with the steeper change in tricarboxylic acid (TCA) cycle rate (V(tcaN)), supporting a decreasing percentage of neuronal ketone oxidation: ∼100% (isoelectricity), 56% (halothane anesthesia), 36% (awake) with the BHB plasma levels achieved in our experiments (6 to 13 mM). In awake animals ketone oxidation reached saturation for blood levels >17 mM, accounting for 62% of neuronal substrate oxidation, the remainder (38%) provided by glucose. We conclude that ketone bodies present at sufficient concentration to saturate metabolism provides full support of basal (housekeeping) energy needs and up to approximately half of the activity-dependent oxidative needs of neurons.

摘要

酮体能否替代葡萄糖以支持神经元功能仍未明确。在此,我们测定了在禁食36小时并静脉输注[2,4-(13)C₂]-D-β-羟基丁酸(BHB)的大鼠中,葡萄糖和酮体对大范围脑活动下新皮质氧化代谢的贡献。研究了三组动物及其状态:清醒离体、戊巴比妥诱导的离体等电位状态以及氟烷麻醉的活体状态,后者的数据是对近期一项研究的重新分析。通过对被困于主要脑氨基酸池中的(13)C标记进行代谢建模,确定了来自酮体(V(acCoA-kbN))和丙酮酸(V(pdhN))的神经元乙酰辅酶A氧化速率以及谷氨酸-谷氨酰胺循环(V(cyc))。与三羧酸(TCA)循环速率(V(tcaN))更陡峭的变化相比,V(acCoA-kbN)随着活动增加而逐渐升高,这支持了神经元酮体氧化百分比的降低:在我们实验中达到的BHB血浆水平(6至13 mM)下,约为100%(等电位状态)、56%(氟烷麻醉)、36%(清醒)。在清醒动物中,当血酮水平>17 mM时,酮体氧化达到饱和,占神经元底物氧化的62%,其余部分(38%)由葡萄糖提供。我们得出结论,浓度足以使代谢饱和的酮体能够完全支持基础(维持)能量需求以及神经元约一半的活动依赖性氧化需求。

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