Ansved T
Department of Neurology, Karolinska Hospital, Stockholm, Sweden.
Acta Physiol Scand. 1995 Jul;154(3):291-302. doi: 10.1111/j.1748-1716.1995.tb09913.x.
A hind limb of young adult, adult and old male Wistar rats (4-5, 6-7 and 20-21 months, respectively) was immobilized for 4 weeks by a plaster cast with the knee and ankle joints in a resting position. Enzyme-histochemical, morphometrical and contractile characteristics of the soleus muscle were compared with those in age-matched controls. A pronounced decrease in muscle mass and cross-sectional muscle fibre area was found at all ages. The degree of atrophy after immobilization did not differ between different fibre types in each age group, but the decrease in fibre area was less pronounced in old animals (i.e. the fibre area was decreased by 49-64, 53-66 and 27-38% in young adult, adult and old animals, respectively). The maximum tetanus force was decreased in all age groups (by 73, 78 and 69% in young adult, adult and old rats, respectively) as was the tetanus tension (i.e. tetanus force divided by muscle fibre cross-sectional area). The contraction time of the isometric twitch was significantly altered, i.e. decreased, only in the youngest age group, although it also tended to decrease in old age. A significant increase in the number and proportion of fibre types intermediate to types I and IIA, was found in the immobilized muscle of 4-5- and 6-7-month-old animals, but not in that of old ones (i.e. the proportion of intermediate fibres increased by 14, 13 and 2% in young adult, adult and old animals, respectively). Thus, in contrast to the atrophic changes, the contractile alterations after immobilization were not markedly different between young and old age. It is further concluded that the age-related fast-to-slow muscle fibre transition that occurs in normal soleus during maturation and growth can be partly reversed by restrictions of the normal muscle activity and that the ability of the soleus to modulate its fibre-type composition in response to a change in activity may be diminished in old age.
将年轻成年、成年和老年雄性Wistar大鼠(分别为4 - 5个月、6 - 7个月和20 - 21个月)的后肢用石膏固定4周,使膝关节和踝关节处于静止位置。将比目鱼肌的酶组织化学、形态计量学和收缩特性与年龄匹配的对照组进行比较。在所有年龄段均发现肌肉质量和肌肉纤维横截面积明显下降。固定后萎缩程度在各年龄组的不同纤维类型之间没有差异,但老年动物的纤维面积下降不太明显(即年轻成年、成年和老年动物的纤维面积分别下降了49 - 64%、53 - 66%和27 - 38%)。所有年龄组的最大强直收缩力均下降(年轻成年、成年和老年大鼠分别下降了73%、78%和69%),强直收缩张力也是如此(即强直收缩力除以肌肉纤维横截面积)。等长单收缩的收缩时间仅在最年轻的年龄组有显著改变,即缩短,尽管老年时也有缩短的趋势。在4 - 5个月和6 - 7个月大动物的固定肌肉中,发现I型和IIA型之间的中间纤维类型数量和比例显著增加,但老年动物中未发现(即年轻成年、成年和老年动物的中间纤维比例分别增加了14%、13%和2%)。因此,与萎缩性变化相反,固定后年轻和老年的收缩性改变没有明显差异。进一步得出结论,在正常比目鱼肌成熟和生长过程中发生的与年龄相关的快肌纤维向慢肌纤维转变,可因正常肌肉活动受限而部分逆转,并且比目鱼肌响应活动变化调节其纤维类型组成的能力在老年时可能会减弱。