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动脉内注射[13C]葡萄糖团注后大脑谷氨酸的延迟标记:豚鼠脑糖原储备有氧代谢的证据。

Delayed labelling of brain glutamate after an intra-arterial [13C]glucose bolus: evidence for aerobic metabolism of guinea pig brain glycogen store.

作者信息

Griffin J L, Rae C, Radda G K, Matthews P M

机构信息

MRC Biochemical and Clinical Magnetic Resonance Unit, Department of Biochemistry, South Parks Rd, Oxford OX1 3QU, UK.

出版信息

Biochim Biophys Acta. 1999 Jul 8;1450(3):297-307. doi: 10.1016/s0167-4889(99)00067-1.

Abstract

Glycogen in glial cells is the largest store of glucose equivalents in the brain. Here we describe evidence that brain glycogen contributes to aerobic energy metabolism of the guinea pig brain in vivo. Five min after an intra-arterial bolus injection of d-[U-14C]glucose, 28+/-11% of the radioactivity in brain tissue was associated with the glycogen fraction, indicating that a significant proportion of labelled glucose taken up by the brain is converted to glycogen shortly after bolus infusion. Incorporation of 13C-label into lactate generated by brains made ischaemic after d-[1-13C]glucose injection confirms that these glucose equivalents can be mobilised for anaerobic glucose metabolism. Aerobic metabolism was monitored by following the time course of 13C-incorporation into glutamate in guinea pig cortex and cerebellum in vivo. After an intra-arterial bolus injection of d-[1-13C]glucose, glutamate labelling reached a maximum 40-60 min after injection, suggesting that a slowly metabolised pool of labelled glucose equivalents was present. As the concentration of 13C-labelled glucose in blood was shown to decrease below detectable levels within 5 min of bolus injection, this late phase of glutamate labelling must occur with mobilisation of a brain storage pool of labelled glucose equivalents. We interpret this as evidence that glucose equivalents in glycogen may contribute to energy metabolism in the aerobic guinea pig brain.

摘要

神经胶质细胞中的糖原是大脑中葡萄糖等价物的最大储存库。在此,我们描述了大脑糖原在体内对豚鼠大脑有氧能量代谢有贡献的证据。在动脉内推注d-[U-14C]葡萄糖5分钟后,脑组织中28±11%的放射性与糖原部分相关,这表明推注后不久大脑摄取的相当一部分标记葡萄糖会转化为糖原。在注射d-[1-13C]葡萄糖后,对缺血大脑产生的乳酸中13C标记的掺入情况进行监测,证实这些葡萄糖等价物可用于无氧葡萄糖代谢。通过追踪13C掺入豚鼠体内皮质和小脑谷氨酸的时间进程来监测有氧代谢。在动脉内推注d-[1-13C]葡萄糖后,谷氨酸标记在注射后40 - 60分钟达到最大值,这表明存在一个代谢缓慢的标记葡萄糖等价物池。由于推注后5分钟内血液中13C标记葡萄糖的浓度降至可检测水平以下,谷氨酸标记的这个后期阶段必定是在标记葡萄糖等价物的大脑储存池动员的情况下发生的。我们将此解释为糖原中的葡萄糖等价物可能有助于有氧豚鼠大脑能量代谢的证据。

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