Degens Hans, Koşar Sükran Nazan, Hopman Maria T E, de Haan Arnold
Institute for Biomedical Research into Human Movement and Health, Manchester Metropolitan University, Alsager, UK.
Appl Physiol Nutr Metab. 2008 Apr;33(2):299-308. doi: 10.1139/H07-189.
Muscle denervation is accompanied by atrophy and a decline in oxidative capacity. We investigated whether the time course of adaptations following denervation of the soleus muscle differs in adult (5 months old) and older adult (25 months old) rats. We denervated the soleus muscle of the left leg, while the right leg served as an internal control. Two weeks after denervation, muscle mass was decreased both in adult and old animals to, respectively, 57% and 54% (p < 0.001) and capillary to fibre ratio (C:F) decreased to 51% and 50% (p < 0.01) of the control values. Yet, the capillary density was increased in older adult but not in adult muscles, indicating that the regression of the capillary bed during denervation lags behind the decrease in fibre size in the soleus muscle of the older rats. One week after denervation the optical density of sections stained for succinate dehydrogenase was 83% and 79% (p < 0.05) of control adult and older adult muscles, respectively, and then remained stable. This indicates that during the first week of denervation loss of oxidative capacity occurred at a relatively higher rate than that of muscle mass. No major changes occurred between 2 and 4 weeks of denervation, except for an increase in the proportion of hybrid (I/IIa) fibres in 4 week denervated muscles (adult 10% vs. 23%; old 1% vs. 13%; p < 0.05). Except for changes in capillarisation, the time course of atrophy and decrease in oxidative capacity following denervation was similar in soleus muscles from adult and old rats.
肌肉去神经支配伴随着萎缩和氧化能力下降。我们研究了成年(5个月大)和老年成年(25个月大)大鼠比目鱼肌去神经支配后适应性变化的时间进程是否不同。我们切断了左腿比目鱼肌的神经,而右腿作为内部对照。去神经支配两周后,成年和老年动物的肌肉质量分别下降至对照值的57%和54%(p<0.001),毛细血管与纤维比例(C:F)分别下降至对照值的51%和50%(p<0.01)。然而,老年成年大鼠肌肉中的毛细血管密度增加,而成年大鼠肌肉中未增加,这表明去神经支配期间比目鱼肌毛细血管床的退化落后于纤维大小的减小。去神经支配一周后,琥珀酸脱氢酶染色切片的光密度分别为对照成年和老年成年肌肉的83%和79%(p<0.05),然后保持稳定。这表明在去神经支配的第一周,氧化能力的丧失速率相对高于肌肉质量的丧失速率。在去神经支配的2至4周期间,除了去神经支配4周的肌肉中混合(I/IIa)纤维比例增加外(成年:10%对23%;老年:1%对13%;p<0.05),没有发生重大变化。除了毛细血管化的变化外,成年和老年大鼠比目鱼肌去神经支配后萎缩和氧化能力下降的时间进程相似。