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代谢性碱中毒对纯种马运动代谢的影响。

The influence of metabolic alkalosis upon exercise metabolism in the thoroughbred horse.

作者信息

Greenhaff P L, Harris R C, Snow D H, Sewell D A, Dunnett M

机构信息

Department of Comparative Physiology, Animal Health Trust, Newmarket, Suffolk, England.

出版信息

Eur J Appl Physiol Occup Physiol. 1991;63(2):129-34. doi: 10.1007/BF00235182.

Abstract

Six thoroughbred horses exercised on a motorised treadmill on two separate occasions at a speed of 11 or 12 m.s-1 for up to 2 min. 4 h prior to exercise each horse was given a 21 test solution of sodium bicarbonate (NaHCO3; 0.6 g.kg-1 body mass) or a control solution of water by nasogastric intubation, the order of administration of the two solutions was randomised. Blood samples (n = 15) were obtained before and during the 4 h after intubation, during exercise and for 30 min after exercise. NaHCO3 ingestion resulted in changes in pre-exercise acid-base status. The changes in blood lactate and base excess with exercise were greater after NaHCO3 administration; after 1 min of exercise in the case of lactate (P less than 0.05) and immediately after exercise in the case of base excess (P less than 0.05). Plasma ammonia levels were lower during (P less than 0.05) and immediately after (P less than 0.05) exercise following NaHCO3 ingestion. The peak change in plasma ammonia with exercise was also lower after NaHCO3 ingestion (P less than 0.05). Following exercise after NaHCO3 ingestion, five horses demonstrated lower muscle adenosine 5-triphosphate loss (P less than 0.05) and inosine 5-monophosphate formation (P = 0.05) and higher glycerol 3-phosphate formation (P less than 0.05). There is evidence to suggest that metabolic alkalosis may delay the onset of fatigue by decreasing the extent of adenine nucleotide loss during high-intensity exercise.

摘要

6匹纯种马在电动跑步机上以11或12米/秒的速度进行了两次运动,每次运动时长可达2分钟。在运动前4小时,通过鼻胃管给每匹马灌服21的碳酸氢钠(NaHCO₃;0.6克/千克体重)测试溶液或对照水溶液,两种溶液的给药顺序是随机的。在插管前、插管后4小时内、运动期间以及运动后30分钟采集血样(n = 15)。摄入NaHCO₃导致运动前酸碱状态发生变化。运动后血乳酸和碱剩余的变化在服用NaHCO₃后更大;乳酸在运动1分钟后(P < 0.05),碱剩余在运动后即刻(P < 0.05)。摄入NaHCO₃后运动期间(P < 0.05)及运动后即刻(P < 0.05)血浆氨水平较低。摄入NaHCO₃后运动时血浆氨的峰值变化也较低(P < 0.05)。摄入NaHCO₃后运动,5匹马表现出较低的肌肉三磷酸腺苷损失(P < 0.05)和一磷酸肌苷生成(P = 0.05),以及较高的3 - 磷酸甘油生成(P < 0.05)。有证据表明,代谢性碱中毒可能通过减少高强度运动期间腺嘌呤核苷酸的损失程度来延迟疲劳的发生。

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