活豚鼠心肌代谢的碳-13和磷-31核磁共振研究。

Advances in myocardiology Pub Date : 1985-01-01
K J Neurohr, R G Shulman
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引用次数: 0

摘要

采用13C和31P核磁共振(NMR)分别在20.18 MHz和32.5 MHz频率下观察活体豚鼠心肌代谢。13C核磁共振研究允许在静脉输注D-[1-13C]葡萄糖和胰岛素时监测心肌糖原合成。缺氧导致标记的糖原在6分钟内降解,乳酸中出现13C标记。醋酸钠[2-13C]的输注导致谷氨酸的C-4、C-2和C-3位置的标签合并,反映了三羧酸循环活性预期的标签“混乱”。活体豚鼠在缺氧3分钟、随后的再氧过程中,以及在不同动物的末期缺氧过程中,在20.5秒的时间块内连续获得心脏的31P核磁共振波谱。可逆性缺氧导致磷酸肌酸快速降解(t1/2 = 54.5 +/- 2.5秒),在复氧过程中完全恢复。心脏无机磷酸盐在缺氧时升高,恢复氧气后恢复到基础水平。缺氧3min时,ATP水平和pH值无明显变化。
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Carbon-13 and phosphorus-31 nuclear magnetic resonance studies of myocardial metabolism in live guinea pigs.

Myocardial metabolism in live guinea pigs was investigated by 13C and 31P nuclear magnetic resonance (NMR) at 20.18 and 32.5 MHz, respectively. 13C NMR studies allowed monitoring of myocardial glycogen synthesis during intravenous infusion of D-[1-13C]glucose and insulin. Anoxia resulted in degradation of the labeled glycogen within 6 min and appearance of 13C label in lactic acid. Infusion of sodium [2-13C]acetate resulted in incorporation of label into the C-4, C-2, and C-3 positions of glutamate, reflecting "scrambling" of the label expected from tricarboxylic-acid-cycle activity. 31P NMR spectra of heart in live guinea pigs were obtained continuously in 20.5-sec time blocks during 3 min of anoxia, during subsequent reoxygenation, and, in separate animals, during terminal anoxia. Reversible anoxia resulted in rapid degradation of phosphocreatine (t1/2 = 54.5 +/- 2.5 sec), which recovered fully during reoxygenation. Heart inorganic phosphate increased during anoxia and returned to basal levels after oxygen was restored. During 3 min of anoxia, no significant changes in ATP levels or pH were detected.

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