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短暂性脑缺血时的脑能量状态、线粒体功能及氧化还原状态测量

Cerebral energy state, mitochondrial function, and redox state measurements in transient ischemia.

作者信息

Rehncrona S, Mela L, Chance B

出版信息

Fed Proc. 1979 Oct;38(11):2489-92.

PMID:488372
Abstract

Earlier results are reviewed suggesting that transient pronounced, incomplete cerebral ischemia could be more deleterious for the recovery of brain tissue energy state than a complete interruption of the blood flow. Measurements of respiratory function of brain mitochondria, isolated after 30 min of either complete or incomplete ischemia, demonstrated a similar inhibition of respiratory activity and maximal phosphorylation rates in both situations. This inhibition was totally normalized during recirculation after complete ischemia while a further deterioration was found after incomplete ischemia. The in vivo alterations of the cortical tissue distribution of redox states during transient, incomplete ischemia (15--60 min) were measured using a flying spot fluorometer, which gives a real-time and on-line display of the tissue distribution of NADH and oxidized flavoprotein. A reoxidation in both systems was demonstrated during the recirculation period and the distribution of redox states showed no further heterogeneity in the postischemic period as compared to the preischemic distribution. It is concluded that reoxygenation of the brain tissue is possible even after long periods of incomplete ischemia. The normal distribution of redox states during recirculation suggests that mechanisms other than an impaired or inhomogeneous oxygen delivery during the postischemic period are responsible for the failure in recovery of mitochondrial function and tissue energy state.

摘要

回顾早期研究结果表明,短暂的明显不完全性脑缺血对脑组织能量状态恢复的损害可能比完全性血流中断更严重。在完全或不完全缺血30分钟后分离的脑线粒体呼吸功能测量结果显示,两种情况下呼吸活性和最大磷酸化率均受到类似抑制。完全缺血再灌注期间这种抑制完全恢复正常,而不完全缺血后则出现进一步恶化。使用飞点荧光计测量了短暂不完全缺血(15 - 60分钟)期间皮质组织氧化还原状态的体内变化,该仪器可实时在线显示NADH和氧化黄素蛋白的组织分布。再灌注期间两个系统均出现再氧化,与缺血前分布相比,缺血后氧化还原状态分布未显示出进一步的异质性。得出的结论是,即使经过长时间的不完全缺血,脑组织再氧合也是可能的。再灌注期间氧化还原状态的正常分布表明,缺血后线粒体功能和组织能量状态恢复失败的原因不是缺血后氧输送受损或不均匀。

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