Dept. of Zoology, Univ. of British Columbia, 6270 Univ. Blvd., Vancouver, BC, Canada V6T 1Z4.
Am J Physiol Regul Integr Comp Physiol. 2010 Jan;298(1):R104-19. doi: 10.1152/ajpregu.00418.2009. Epub 2009 Oct 28.
The ability of an animal to depress ATP turnover while maintaining metabolic energy balance is important for survival during hypoxia. In the present study, we investigated the responses of cardiac energy metabolism and performance in the hypoxia-tolerant tilapia (Oreochromis hybrid sp.) during exposure to environmental hypoxia. Exposure to graded hypoxia (> or =92% to 2.5% air saturation over 3.6 +/- 0.2 h) followed by exposure to 5% air saturation for 8 h caused a depression of whole animal oxygen consumption rate that was accompanied by parallel decreases in heart rate, cardiac output, and cardiac power output (CPO, analogous to ATP demand of the heart). These cardiac parameters remained depressed by 50-60% compared with normoxic values throughout the 8-h exposure. During a 24-h exposure to 5% air saturation, cardiac ATP concentration was unchanged compared with normoxia and anaerobic glycolysis contributed to ATP supply as evidenced by considerable accumulation of lactate in the heart and plasma. Reductions in the provision of aerobic substrates were apparent from a large and rapid (in <1 h) decrease in plasma nonesterified fatty acids concentration and a modest decrease in activity of pyruvate dehydrogenase. Depression of cardiac ATP demand via bradycardia and an associated decrease in CPO appears to be an integral component of hypoxia-induced metabolic rate depression in tilapia and likely contributes to hypoxic survival.
动物在维持代谢能量平衡的同时降低 ATP 周转率的能力对于缺氧时的生存至关重要。在本研究中,我们研究了耐缺氧罗非鱼(Oreochromis hybrid sp.)在暴露于环境缺氧时心脏能量代谢和性能的反应。暴露于逐渐降低的缺氧(>或=92%至 2.5%空气饱和度,历时 3.6 +/- 0.2 h),随后暴露于 5%空气饱和度 8 h,导致整个动物耗氧量降低,心率、心输出量和心输出功率(CPO,类似于心脏的 ATP 需求)也平行下降。这些心脏参数在整个 8 h 的暴露过程中仍比正常氧值低 50-60%。在 5%空气饱和度下暴露 24 h 期间,与正常氧相比,心脏 ATP 浓度不变,并且无氧糖酵解有助于 ATP 供应,这表现为心脏和血浆中乳酸的大量积累。从血浆非酯化脂肪酸浓度的大幅快速(<1 h)下降和丙酮酸脱氢酶活性的适度下降,可以明显看出有氧底物供应的减少。通过心率降低和 CPO 相关降低导致的心脏 ATP 需求的降低,似乎是罗非鱼缺氧诱导代谢率降低的一个组成部分,并且可能有助于缺氧生存。