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断头后正常和缺氧大鼠脑内葡萄糖代谢的能量利用及某些中间产物的变化

Energy utilization and changes in some intermediates of glucose metabolism in normal and hypoxic rat brain after decapitation.

作者信息

Zalewska T, Domanska-Janik K

出版信息

Resuscitation. 1979;7(3-4):199-205. doi: 10.1016/0300-9572(79)90026-1.

Abstract

Energy metabolism was studied in the cerebral cortex of rats during and after hypoxia induced by breathing a gas mixture of 7% O2 in N2 for 2 h. Cortical energy stores (2ATP + ADP + phosphocreatine) remained unchanged after hypoxic treatment. Lactate rose over four-fold. Pyruvate, glucose and glucose 6-phosphate concentrations also increased significantly. Metabolic activity in the cortex expressed as the utilization of high-energy phosphates 5, 10 and 30 s after decapitation was decreased by 30% after hypoxia and remained lowered for 3 h during recovery. This was accompanied by elevated glucose consumption and lactate production, suggesting that the maintenance of the energy balance after hypoxia was partly due to activation of the glycolytic pathway. During the recovery period, these metabolic abnormalities returned towards control values, but, after 6 h of recovery the high-energy phosphate utilization increased transitorily above the control values.

摘要

在大鼠吸入含7%氧气的氮气混合气体2小时所诱导的缺氧期间及之后,对其大脑皮层的能量代谢进行了研究。缺氧处理后,皮层能量储备(2ATP + ADP + 磷酸肌酸)保持不变。乳酸增加了四倍多。丙酮酸、葡萄糖和6-磷酸葡萄糖的浓度也显著升高。以断头后5、10和30秒时高能磷酸盐的利用率来表示的皮层代谢活性,在缺氧后降低了30%,并且在恢复过程中持续3小时保持较低水平。这伴随着葡萄糖消耗和乳酸生成的增加,表明缺氧后能量平衡的维持部分归因于糖酵解途径的激活。在恢复期间,这些代谢异常恢复到对照值,但在恢复6小时后,高能磷酸盐利用率短暂升高超过对照值。

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