Ketai L H, Simon R H, Kreit J W, Grum C M
Am Rev Respir Dis. 1987 Jul;136(1):98-101. doi: 10.1164/ajrccm/136.1.98.
During exercise, ATP is converted to ADP and AMP to supply energy for muscular contraction. It is then regenerated via various pathways of intermediary metabolism. However, with high levels of exercise, net ATP degradation in muscle occurs. In exercise and other clinical situations, adenine nucleotide degradation leads to an accumulation of degradative purine products including hypoxanthine. In an effort to monitor events of energy metabolism, we examined plasma hypoxanthine levels at various exercise intensities. Peak plasma hypoxanthine levels after maximal exercise (18.9 +/- 2.6 microM, mean +/- SEM) were significantly greater than resting levels (1.1 +/- 0.1 microM; p less than 0.001). Hypoxanthine levels after steady state exercise at 52, 76, and 97% of ventilatory threshold did not exceed resting levels. However, plasma hypoxanthine rose significantly after exercise at 124% of ventilatory threshold (6.3 +/- 1.0 microM; p less than 0.01) and at 152% of ventilatory threshold (17.0 +/- 3.6 microM; p less than 0.001). Exercise at subventilatory threshold intensity (74% of ventilatory threshold) for a prolonged time period, such that total work equaled that performed at 152% of ventilatory threshold, did not elevate hypoxanthine levels (0.46 +/- 0.1 microM) above resting values. We conclude that elevation of plasma hypoxanthine levels occur during exercise at intensities that exceed the ventilatory threshold and indicate that net adenine nucleotide degradation has occurred.
运动期间,ATP转化为ADP和AMP以供应肌肉收缩所需能量。然后通过各种中间代谢途径使其再生。然而,高强度运动时,肌肉中会发生ATP的净降解。在运动及其他临床情况下,腺嘌呤核苷酸降解会导致包括次黄嘌呤在内的降解性嘌呤产物积累。为监测能量代谢情况,我们检测了不同运动强度下的血浆次黄嘌呤水平。最大运动后血浆次黄嘌呤峰值水平(18.9±2.6微摩尔,均值±标准误)显著高于静息水平(1.1±0.1微摩尔;p<0.001)。在通气阈值的52%、76%和97%进行稳态运动后的次黄嘌呤水平未超过静息水平。然而,在通气阈值的124%(6.3±1.0微摩尔;p<0.01)和152%(17.0±3.6微摩尔;p<0.001)运动后,血浆次黄嘌呤显著升高。在低于通气阈值强度(通气阈值的74%)下长时间运动,使总功与在通气阈值的152%时相同,次黄嘌呤水平(0.46±0.1微摩尔)未高于静息值。我们得出结论,血浆次黄嘌呤水平在超过通气阈值的运动强度期间升高,表明发生了腺嘌呤核苷酸的净降解。