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采用13C核磁共振波谱法对活体大鼠的生酮作用进行研究。

Ketogenesis in the living rat followed by 13C NMR spectroscopy.

作者信息

Cross T A, Pahl C, Oberhänsli R, Aue W P, Keller U, Seelig J

出版信息

Biochemistry. 1984 Dec 18;23(26):6398-402. doi: 10.1021/bi00321a018.

Abstract

The metabolic fate of 13C1-labeled butyrate in the liver of living rats has been studied by 13C NMR. The formation of the ketone bodies acetoacetate and beta-hydroxybutyrate was observed in vivo as well as resonances from glutamate, glutamine, and carbonate. The observed time course of these metabolites demonstrates the potential of the technique to measure enzyme kinetics in vivo and also to measure the enzyme capacity of a given organ to metabolize a substrate. The in vivo spectra were compared to in vitro spectra of the excised liver and perchloric acid extracts of the liver. Observation of the metabolites and monitoring of their time course in vivo would not have been possible without distinct improvements in the spectral resolution and the spatial localization of the radio-frequency field within the liver. As a novel approach, we have selected the carbonyl region of the 13C NMR spectra for identifying the ketone bodies and other oxidation products in the liver.

摘要

利用¹³C核磁共振技术研究了¹³C¹标记的丁酸在活鼠肝脏中的代谢命运。在体内观察到了酮体乙酰乙酸和β-羟基丁酸的形成,以及谷氨酸、谷氨酰胺和碳酸盐的共振信号。这些代谢物的观察时间进程证明了该技术在体内测量酶动力学以及测量给定器官代谢底物的酶能力方面的潜力。将体内光谱与切除肝脏的体外光谱以及肝脏的高氯酸提取物进行了比较。如果肝脏内的光谱分辨率和射频场的空间定位没有显著提高,就不可能在体内观察代谢物并监测其时间进程。作为一种新方法,我们选择了¹³C核磁共振光谱的羰基区域来识别肝脏中的酮体和其他氧化产物。

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