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采用双同位素程序通过稳态动力学评估全脑谷氨酸代谢:加巴喷丁的作用。

Whole-brain glutamate metabolism evaluated by steady-state kinetics using a double-isotope procedure: effects of gabapentin.

作者信息

Xu Y, Oz G, LaNoue K F, Keiger C J, Berkich D A, Gruetter R, Hutson S H

机构信息

Departments of Cellular and Molecular Physiology, Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.

出版信息

J Neurochem. 2004 Sep;90(5):1104-16. doi: 10.1111/j.1471-4159.2004.02576.x.

Abstract

Cerebral rates of anaplerosis are known to be significant, yet the rates measured in vivo have been debated. In order to track glutamate metabolism in brain glutamatergic neurons and brain glia, for the first time unrestrained awake rats were continuously infused with a combination of H14CO3- and [1 - 13C]glucose in over 50 infusions ranging from 5 to 60 min. In whole-brain extracts from these animals, the appearance of 14C in brain glutamate and glutamine and appearance of 13C in the C-4 position of glutamate and glutamine were measured as a function of time. The rate of total neuronal glutamate turnover, the anaplerotic rate of synthesis of glutamine and glutamate from H14CO3-, flux through the glutamate/glutamine cycle, and a minimum estimate of whole-brain anaplerosis was obtained. The rate of synthesis of 14C-glutamate from H14CO3- was 1.29 +/- 0.11 nmoles/min/mg protein, whereas the rate of synthesis of 14C-glutamine was 1.48 +/- 0.10 nmoles/min/mg protein compared to total glutamate turnover of 9.39 +/- 0.73 nmoles/min/mg protein. From the turnover rate of glutamine, an upper limit for flux through the glutamate/glutamine cycle was estimated at 4.6 nmoles/min/mg protein. Synthesis of glutamine from H14CO3- was substantial, amounting to 32% of the glutamate/glutamine cycle. These rates were not significantly affected by a single injection of 100 mg/kg of the antiepileptic drug gabapentin. In contrast, acute administration of gabapentin significantly lowered incorporation of H14CO3- into glutamate and glutamine in excised rat retinas, suggesting metabolic effects of gabapentin may require chronic treatment and/or are restricted to brain areas enriched in target enzymes such as the cytosolic branched chain aminotransferase. We conclude that the brain has a high anaplerotic activity and that the combination of two tracers with different precursors affords unique insights into the compartmentation of cerebral metabolism.

摘要

已知大脑中回补反应的速率相当可观,但体内测量的速率一直存在争议。为了追踪大脑谷氨酸能神经元和神经胶质细胞中的谷氨酸代谢,首次对无束缚的清醒大鼠连续输注H14CO3-和[1 - 13C]葡萄糖的组合,进行了50多次输注,时长从5分钟到60分钟不等。在这些动物的全脑提取物中,测量了脑谷氨酸和谷氨酰胺中14C的出现情况以及谷氨酸和谷氨酰胺C-4位置上13C的出现情况,并将其作为时间的函数。获得了总的神经元谷氨酸周转速率、由H14CO3-合成谷氨酰胺和谷氨酸的回补速率、通过谷氨酸/谷氨酰胺循环的通量以及全脑回补反应的最小估计值。由H14CO3-合成14C-谷氨酸的速率为1.29±0.11纳摩尔/分钟/毫克蛋白质,而合成14C-谷氨酰胺的速率为1.48±0.10纳摩尔/分钟/毫克蛋白质,与之相比,总的谷氨酸周转速率为9.39±0.73纳摩尔/分钟/毫克蛋白质。根据谷氨酰胺的周转速率,估计通过谷氨酸/谷氨酰胺循环的通量上限为4.6纳摩尔/分钟/毫克蛋白质。由H14CO3-合成谷氨酰胺的量相当可观,占谷氨酸/谷氨酰胺循环的32%。单次注射100毫克/千克的抗癫痫药物加巴喷丁对这些速率没有显著影响。相比之下,急性给予加巴喷丁显著降低了H14CO3-掺入切除的大鼠视网膜中的谷氨酸和谷氨酰胺,这表明加巴喷丁的代谢作用可能需要长期治疗和/或仅限于富含靶酶(如胞质支链氨基转移酶)的脑区。我们得出结论,大脑具有很高的回补活性,并且两种具有不同前体的示踪剂的组合为深入了解脑代谢的区室化提供了独特的见解。

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