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低血糖性脑病对大鼠活体脑内氨基酸、高能磷酸盐及细胞内pH值的影响:通过连续氢谱和磷谱核磁共振波谱法检测

Effect of hypoglycemic encephalopathy upon amino acids, high-energy phosphates, and pHi in the rat brain in vivo: detection by sequential 1H and 31P NMR spectroscopy.

作者信息

Behar K L, den Hollander J A, Petroff O A, Hetherington H P, Prichard J W, Shulman R G

出版信息

J Neurochem. 1985 Apr;44(4):1045-55. doi: 10.1111/j.1471-4159.1985.tb08723.x.

Abstract

Metabolic alterations in amino acids, high-energy phosphates, and intracellular pH during and after insulin hypoglycemia in the rat brain was studied in vivo by 1H and 31P nuclear magnetic resonance (NMR) spectroscopy. Sequential accumulations of 1H and 31P spectra were obtained from a double-tuned surface coil positioned over the exposed skull of a rat while the electroencephalogram was recorded continuously. The transition to EEG silence was accompanied by rapid declines in phosphocreatine, nucleoside triphosphate, and an increase in inorganic orthophosphate in 31P spectra. In 1H spectra acquired during the same time interval, the resonances of glutamate and glutamine decreased in intensity while a progressive increase in aspartate was observed. Following glucose administration, glutamate and aspartate returned to control levels (recovery half-time, 8 min); recovery of glutamine was incomplete. An increase in lactate was detected in the 1H spectrum during recovery but it was not associated with any change in the intracellular pH as assessed in the corresponding 31P spectrum. Phosphocreatine returned to control levels following glucose administration, in contrast to nucleoside triphosphate and inorganic orthophosphate which recovered to only 80% and 200% of their control levels, respectively. These results show that the changes in cerebral amino acids and high-energy phosphates detected by alternating the collection of 1H and 31P spectra allow for a detailed assessment of the metabolic response of the hypoglycemic brain in vivo.

摘要

采用氢质子(1H)和磷(31P)核磁共振(NMR)波谱技术,在活体大鼠中研究了胰岛素低血糖期间及之后大鼠脑内氨基酸、高能磷酸盐和细胞内pH值的代谢变化。在连续记录脑电图的同时,从置于大鼠暴露颅骨上方的双调谐表面线圈获取1H和31P波谱的连续累积数据。脑电图转为静息状态时,31P波谱中磷酸肌酸、核苷三磷酸迅速下降,无机正磷酸盐增加。在同一时间间隔内采集的1H波谱中,谷氨酸和谷氨酰胺的共振强度降低,而天冬氨酸则逐渐增加。给予葡萄糖后,谷氨酸和天冬氨酸恢复到对照水平(恢复半衰期为8分钟);谷氨酰胺的恢复不完全。恢复期间,在1H波谱中检测到乳酸增加,但根据相应的31P波谱评估,其与细胞内pH值的任何变化均无关。与核苷三磷酸和无机正磷酸盐分别仅恢复到对照水平的80%和200%相反,给予葡萄糖后磷酸肌酸恢复到对照水平。这些结果表明,通过交替采集1H和31P波谱检测到的脑内氨基酸和高能磷酸盐的变化,能够在活体中详细评估低血糖脑的代谢反应。

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