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 >Simultaneous determination of the rates of the TCA cycle, glucose utilization, alpha-ketoglutarate/glutamate exchange, and glutamine synthesis in human brain by NMR.
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Simultaneous determination of the rates of the TCA cycle, glucose utilization, alpha-ketoglutarate/glutamate exchange, and glutamine synthesis in human brain by NMR.

机译:通过NMR同时测定人脑中TCA循环的速率,葡萄糖利用率,α-酮戊二酸/谷氨酸交换和谷氨酰胺合成。

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摘要

13C isotopic tracer data previously obtained by 13C nuclear magnetic resonance in the human brain in vivo were analyzed using a mathematical model to determine metabolic rates in a region of the human neocortex. The tricarboxylic acid (TCA) cycle rate was 0.73 +/- 0.19 mumol min-1 g-1 (mean +/- SD; n = 4). The standard deviation reflects primarily intersubject variation, since individual uncertainties were low. The rate of alpha-ketoglutarate/glutamate exchange was 57 +/- 26 mumol min-1 g-1 (n = 3), which is much greater than the TCA cycle rate; the high rate indicates that alpha-ketoglutarate and glutamate are in rapid exchange and can be treated as a single combined kinetic pool. The rate of synthesis of glutamine from glutamate was 0.47 mumol min-1 g-1 (n = 4), with 95% confidence limits of 0.139 and 3.094 mumol min-1 g-1; individual uncertainties were biased heavily toward high synthesis rates. From the TCA cycle rate the brain oxygen consumption was estimated to be 2.14 +/- 0.48 mumol min-1 g-1 (5.07 +/- 1.14 ml 100 g-1 min-1; n = 4), and the rate of brain glucose consumption was calculated to be 0.37 +/- 0.08 mumol min-1 g-1 (n = 4). The sensitivity of the model to the assumptions made was evaluated, and the calculated values were found to be unchanged as long as the assumptions remained near reported physiological values.
机译:使用数学模型分析先前通过人脑体内13C核磁共振获得的13C同位素示踪数据,以确定人新皮层区域的代谢率。三羧酸(TCA)循环速率为0.73 +/- 0.19摩尔/分钟min-1 g-1(平均值+/- SD; n = 4)。由于个体不确定性较低,因此标准差主要反映了受试者间的差异。 α-酮戊二酸/谷氨酸交换速率为57 +/- 26 mumol min-1 g-1(n = 3),远大于TCA循环速率;高比率表明α-酮戊二酸和谷氨酸处于快速交换状态,可以视为一个单独的组合动力学库。由谷氨酸合成谷氨酰胺的速率为0.47μmol·min-1 g-1(n = 4),95%的置信限为0.139和3.094μmol·min-1 g-1;个人不确定性严重偏向高合成率。根据TCA循环速率,大脑耗氧量估计为2.14 +/- 0.48摩尔·分钟-1 g-1(5.07 +/- 1.14毫升/ 100 g-1分钟-1; n = 4),大脑的消耗量葡萄糖消耗经计算为0.37 +/- 0.08μmolmin-1 g-1(n = 4)。评估了模型对假设的敏感性,只要假设保持在报告的生理值附近,计算值就不会改变。

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