Miller-Graber P, Lawrence L, Fisher M, Bump K, Foreman J, Kurcz E
Department of Animal Sciences, University of Illinois, Urbana 61801.
Cornell Vet. 1991 Oct;81(4):397-410.
The relationship between elevated plasma ammonia (NH3) levels, fatigue development and muscle metabolism were examined in horses during a submaximal fatigue test. Eight Quarter Horse mares were intravenously infused prior to exercise with either sodium acetate (control) or ammonium acetate (AMINF), and exercised to fatigue on an 11% grade treadmill, carrying 27 kg of lead. Time to fatigue was not different (P greater than 0.05) between groups. Intramuscular NH3 and lactate increased (P less than 0.001) during exercise; however, the treatment did not (P greater than 0.05) affect either. A treatment by exercise interaction (P less than 0.01) occurred for plasma NH3. The reciprocal relationship between changes in plasma and intramuscular alanine (ala) and glutamate (glu) indicated activation of the glucose-alanine cycle. Plasma glutamine (gln) increased (P less than 0.001) during exercise; however intramuscular gln was not (P greater than 0.05) altered. The excretion of urea-N was depressed as a result of exercise while the orotic acid/creatinine ratio did not (P greater than 0.05) change. The amino acids and urinary metabolites were not (P greater than 0.05) affected by treatment. These results did not show any metabolic evidence for a role of increased plasma NH3 levels in fatigue development. However this study did provide insight into other aspects of nitrogen metabolism during exercise in the horse.
在一项次最大疲劳试验中,研究了血浆氨(NH₃)水平升高、疲劳发展与马匹肌肉代谢之间的关系。八匹夸特马母马在运动前静脉输注醋酸钠(对照组)或醋酸铵(AMINF),然后在坡度为11%的跑步机上负重27公斤运动至疲劳。两组之间的疲劳时间没有差异(P大于0.05)。运动期间肌肉内NH₃和乳酸增加(P小于0.001);然而,处理组对此无影响(P大于0.05)。血浆NH₃出现了处理与运动的交互作用(P小于0.01)。血浆和肌肉内丙氨酸(ala)和谷氨酸(glu)变化之间的相互关系表明葡萄糖 - 丙氨酸循环被激活。运动期间血浆谷氨酰胺(gln)增加(P小于0.001);然而肌肉内gln未改变(P大于0.05)。运动导致尿素 - N排泄减少,而乳清酸/肌酐比值未变化(P大于0.05)。氨基酸和尿代谢产物不受处理影响(P大于0.05)。这些结果未显示血浆NH₃水平升高在疲劳发展中起作用的任何代谢证据。然而,这项研究确实为马匹运动期间氮代谢的其他方面提供了见解。