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小鼠组织中毒性缺氧期间脑代谢的体内31P核磁共振(NMR)研究。

In vivo 31P nuclear magnetic resonance (NMR) study of cerebral metabolism during histotoxic hypoxia in mice.

作者信息

Peres M, Meric P, Barrere B, Pasquier C, Beranger G, Beloeil J C, Lallemand J Y, Seylaz J

机构信息

Laboratoire de Physiologie et Physiopathologie Cérébrovasculaire, U. 182 INSERM, CHU Lariboisière-Saint-Louis, Paris, France.

出版信息

Metab Brain Dis. 1988 Mar;3(1):37-48. doi: 10.1007/BF01001352.

Abstract

The alterations of cerebral energetic metabolism and intracellular brain pH that occur during histotoxic hypoxia were estimated in mice by in vivo 31P nuclear magnetic resonance (NMR) spectrometry. The brain spectra obtained by means of chronically implanted surface coils connected to a special designed probe were recorded sequentially and continuously before, during, and after histotoxic hypoxia induced by an injection of potassium cyanide. The levels of PCr, ATP, inorganic phosphate, and intracellular pH estimated from the records of the 31P cerebral spectra and the cerebral cortical activity allow noninvasive monitoring of both the energetic metabolism and the functional state of the brain in unanesthetized animals. The time courses of these different parameters are largely the same as those obtained previously by invasive methods, however, the simultaneous and continuous monitoring performed in this study exhibits several unexpected dissociations between, respectively, onset of coma, decrease in PCr level and intracellular pHi, and recovery of normal levels of PCr and intracellular pH. These dissociations indicate that tissue acidosis plays a minor role in the changes in PCr levels, compared with ATP, and they confirm that the thresholds of oxidative metabolism required for functional tissue activity and a normal rate of ATP are clearly different.

摘要

通过体内31P核磁共振(NMR)光谱法评估了组织中毒性缺氧期间小鼠大脑能量代谢和细胞内脑pH值的变化。利用连接到特殊设计探头的慢性植入表面线圈获得大脑光谱,在注射氰化钾诱导组织中毒性缺氧之前、期间和之后依次连续记录。从31P大脑光谱记录和大脑皮层活动估计的磷酸肌酸(PCr)、三磷酸腺苷(ATP)、无机磷酸盐和细胞内pH值水平,能够对未麻醉动物大脑的能量代谢和功能状态进行无创监测。这些不同参数的时间进程与先前通过侵入性方法获得的大致相同,然而,本研究中进行的同步连续监测显示,在昏迷发作、PCr水平和细胞内pH值(pHi)降低以及PCr和细胞内pH值恢复正常水平之间分别存在一些意外的分离。这些分离表明,与ATP相比,组织酸中毒在PCr水平变化中起的作用较小,并且它们证实了功能组织活动所需的氧化代谢阈值和正常ATP速率明显不同。

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