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适应低氧环境的大鼠无氧代谢向有氧代谢的转变。

Shift of anaerobic to aerobic metabolism in the rats acclimatized to hypoxia.

作者信息

Yoshino M, Kato K, Murakami K, Katsumata Y, Tanaka M, Mori S

机构信息

Department of Genetics, Aichi Prefectural Colony, Japan.

出版信息

Comp Biochem Physiol A Comp Physiol. 1990;97(3):341-4. doi: 10.1016/0300-9629(90)90621-x.

Abstract
  1. Metabolic acclimatization by repeated exposure to a simulated altitude of 4000, 5000 and 6000 m for 2 hr per day throughout 2 to 11 days was evaluated by the increased formation of ketone bodies as a marker of fatty acid oxidation and the decreased production of lactate and uric acid, the indicators of anaerobic metabolism in rats exposed to an altitude of 8000 m. 2. Pre-exposure of rats to an altitude of 5000 m and over caused an acclimatization to hypoxia. The rise of the altitude to which rats were pre-exposed reduced the period until the acquisition of metabolic acclimatization. 3. Acclimatized rats showed an increased activity of mitochondrial glutamate dehydrogenase without changes in glycolytic enzyme activity in skeletal muscle, heart and liver. 4. Acclimatization to high altitude hypoxia is concluded to involve a shift of the anaerobic glycolysis to aerobic metabolism by the increase in the oxidative enzymes.
摘要
  1. 通过在2至11天内每天重复暴露于4000米、5000米和6000米的模拟海拔高度2小时,以酮体生成增加作为脂肪酸氧化的标志物,以及乳酸和尿酸生成减少(这是暴露于8000米海拔高度的大鼠厌氧代谢的指标)来评估代谢适应性。2. 大鼠预先暴露于5000米及以上的海拔高度会导致对缺氧的适应性。大鼠预先暴露的海拔高度升高会缩短获得代谢适应性所需的时间。3. 适应后的大鼠线粒体谷氨酸脱氢酶活性增加,而骨骼肌、心脏和肝脏中的糖酵解酶活性没有变化。4. 得出结论,对高海拔缺氧的适应涉及通过氧化酶增加将无氧糖酵解转变为有氧代谢。

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