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对原位研究的磷酸果糖激酶缺乏犬的骨骼肌代谢和工作能力进行了研究。

Metabolic and work capacity of skeletal muscle of PFK-deficient dogs studied in situ.

作者信息

Brechue W F, Gropp K E, Ameredes B T, O'Drobinak D M, Stainsby W N, Harvey J W

机构信息

Department of Physiology, University of Florida Health Science Center, Gainesville.

出版信息

J Appl Physiol (1985). 1994 Nov;77(5):2456-67. doi: 10.1152/jappl.1994.77.5.2456.

Abstract

Mechanical and metabolic relationships of muscle lacking phosphofructokinase (PFKD) activity were compared with muscle having normal phosphofructokinase (NORM) activity by using the gastrocnemius-plantaris muscle group with isolated circulation in situ. Muscle contractile properties were similar in both groups. Initial power output (W) during repetitive tetanic (200 ms, 50 impulses/s) isotonic contractions was similar in both groups; however, W declined significantly more (30-80%) in PFKD than in NORM muscle over time, with a constant O2 uptake (VO2)/W. Despite similar O2 and substrate delivery, PFKD muscle had a lower VO2 (42-55%), less glucose uptake, similar free fatty acid uptake, and lactic acid uptake rather than output, during contractions. Muscle venous H+ concentration, strong ion difference, and PCO2 increased during contractions, the magnitude of change being smaller in PFKD muscle. Elevating arterial lactate concentration before contractions in PFKD muscle resulted in significant improvements in W and VO2 without altering the acid-base exchange at the muscle. Increasing O2 delivery by increasing arterial O2 concentration in PFKD dogs did not improve W or VO2. We conclude that, despite no inherent mechanical or contractile differences, PFKD muscle has a severely limited oxidative capacity and exaggerated fatigue and blood flow responses to contractions due to limited substrate metabolism resulting from the inability to utilize glycogen and/or glucose.

摘要

通过对原位孤立循环的腓肠肌-比目鱼肌群进行研究,比较了缺乏磷酸果糖激酶(PFKD)活性的肌肉与具有正常磷酸果糖激酶(NORM)活性的肌肉之间的机械和代谢关系。两组肌肉的收缩特性相似。在重复性强直(200毫秒,50次/秒)等张收缩过程中的初始功率输出(W)在两组中相似;然而,随着时间的推移,PFKD肌肉中的W下降幅度(30 - 80%)明显大于NORM肌肉,而氧气摄取量(VO2)/W保持恒定。尽管氧气和底物供应相似,但在收缩过程中,PFKD肌肉的VO2较低(42 - 55%),葡萄糖摄取较少,游离脂肪酸摄取相似,乳酸摄取而非输出。收缩过程中肌肉静脉H⁺浓度、强离子差和PCO₂升高,PFKD肌肉中变化的幅度较小。在PFKD肌肉收缩前提高动脉乳酸浓度可显著改善W和VO2,而不改变肌肉的酸碱交换。通过增加PFKD犬的动脉氧浓度来增加氧气供应并不能改善W或VO2。我们得出结论,尽管没有内在的机械或收缩差异,但由于无法利用糖原和/或葡萄糖导致底物代谢受限,PFKD肌肉的氧化能力严重受限,对收缩的疲劳和血流反应过度。

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