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腺苷酸环化酶系统与脑能量状态。

Adenyl cyclase system and cerebral energy state.

作者信息

Benzi G, Villa R F

出版信息

J Neurol Neurosurg Psychiatry. 1976 Jan;39(1):77-83. doi: 10.1136/jnnp.39.1.77.

Abstract

The energy charge potential of the cerebral adenylate system, the cerebral lactate: pyruvate system, and the cerebral glycogen level were used to characterize the cerebral energy state of the brain. Cerebral adenyl cyclase activity and cyclic AMP concentrations were investigated to evaluate their possible influence on the regulatory processes in brain metabolism. These biochemical parameters were evaluated on the cortical motor area of the brain of the beagle dog in hypovolaemic hypotension during acute hypoxia (obtained by altering the composition of the inhalation mixture) and during the post-hypoxic recovery (three minutes after the restoration of normal ventilation). This experimental model of acute hypoxia was also used for investigating the action of some substances acting at beta-adrenergic receptor level or at vascular level. The substances were perfused into the carotid artery at the rate of 0.5 ml/min for three to six minutes. During the first stage of hypoxia, the adenyl cyclase system is probably an important biochemical regulatory factor. This system becomes less important when a critical threshold is crossed (oxygen arterial partial pressure less than 25-20 mmHg) below which other factors become rate-limiting. A beta-receptor stimulating agent enhanced the mechanisms of physiological post-hypoxic recovery; inhibition of this action was obtained with a beta-receptor blocking agent. Under these experimental conditions, no correlation existed between the vascular effects of the agents and brain metabolism.

摘要

利用大脑腺苷酸系统的能量电荷电位、大脑乳酸:丙酮酸系统以及大脑糖原水平来表征大脑的能量状态。研究大脑腺苷酸环化酶活性和环磷酸腺苷浓度,以评估它们对脑代谢调节过程的可能影响。在急性缺氧(通过改变吸入混合气组成获得)期间及缺氧后恢复阶段(恢复正常通气三分钟后),对处于低血容量性低血压状态的比格犬大脑皮质运动区的这些生化参数进行评估。该急性缺氧实验模型还用于研究一些作用于β - 肾上腺素能受体水平或血管水平的物质的作用。这些物质以0.5毫升/分钟的速率灌注到颈动脉中,持续三到六分钟。在缺氧的第一阶段,腺苷酸环化酶系统可能是一个重要的生化调节因子。当超过临界阈值(动脉血氧分压低于25 - 20毫米汞柱)时,该系统变得不那么重要,低于此阈值其他因素成为限速因素。一种β受体刺激剂增强了生理性缺氧后恢复机制;使用β受体阻断剂可抑制这种作用。在这些实验条件下,这些药物的血管效应与脑代谢之间不存在相关性。

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