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大鼠比目鱼肌无氧收缩过程中的力量、松弛和能量代谢

Force, relaxation and energy metabolism of rat soleus muscle during anaerobic contraction.

作者信息

Sahlin K, Edström L, Sjöholm H

出版信息

Acta Physiol Scand. 1987 Jan;129(1):1-7. doi: 10.1111/j.1748-1716.1987.tb08033.x.

Abstract

Isolated soleus muscle of rat was stimulated electrically (2 Hz) for 7 min under anaerobic conditions. Isometric twitch tension decreased progressively and was 30% of the initial value at the end of stimulation. The decline in relative force was similar to that previously observed in fast twitch muscle and soleus can thus not be termed fatigue-resistant under anaerobic conditions. Phosphocreatine (PCr) decreased from (mean +/- SD) 61.1 +/- 4.4 at rest to 4.0 +/- 1.8 mmol kg-1 dry muscle (d.m.) after 7 min of stimulation, while lactate increased from 3.7 +/- 1.6 to 30 +/- 8 mmol kg-1 d.m. Energy was thus derived from complete utilization of PCr and a low rate of glycolysis resulting in an almost unchanged calculated intracellular pH. It is concluded that tension decline in soleus muscle is not due to decreased intracellular pH but is more related to the capacity to regenerate ATP at a sufficient rate. Contraction and relaxation time of the twitch remained practically constant during the stimulation period. In contrast prolonged activation of fast-twitch muscle results in a slowing of the relaxation of the twitch (Sahlin et al. 1981) and it has been suggested that this is caused by the decrease of intracellular pH. The constancy of both relaxation time and calculated pH in the fatigued soleus muscle is consistent with the hypothesis that there is a connection between these two parameters. In contrast to the twitch, relaxation of tension after a tetanus was prolonged in soleus. Hence, it appears that the rate limiting step for relaxation is different for a twitch than for a tetanus in soleus.

摘要

在无氧条件下,对大鼠离体比目鱼肌进行电刺激(2赫兹),持续7分钟。等长收缩颤搐张力逐渐下降,刺激结束时为初始值的30%。相对力量的下降与先前在快肌中观察到的情况相似,因此在无氧条件下比目鱼肌不能被称为抗疲劳肌。磷酸肌酸(PCr)从静息时的(平均值±标准差)61.1±4.4下降到刺激7分钟后的4.0±1.8毫摩尔/千克干肌,而乳酸则从3.7±1.6增加到30±8毫摩尔/千克干肌。能量因此来自PCr的完全利用和低速率的糖酵解,导致计算出的细胞内pH值几乎不变。结论是,比目鱼肌张力下降不是由于细胞内pH值降低,而是更多地与以足够速率再生ATP的能力有关。在刺激期间,颤搐的收缩和舒张时间实际上保持不变。相比之下,快肌的长时间激活会导致颤搐舒张减慢(萨林等人,1981年),有人认为这是由细胞内pH值降低引起的。疲劳比目鱼肌中舒张时间和计算出的pH值的恒定与这两个参数之间存在联系的假设一致。与颤搐不同,比目鱼肌在强直收缩后的张力舒张延长。因此,似乎比目鱼肌中颤搐和强直收缩的舒张限速步骤不同。

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