Elder G C, McComas A J
J Appl Physiol (1985). 1987 May;62(5):1917-23. doi: 10.1152/jappl.1987.62.5.1917.
Histochemical and contractile properties of developing rat soleus (Sol) and plantaris (P) muscles were studied after hindlimb suspension to determine the effects of reduced activity levels on muscle development. Suspension (S) began at age 18 days and lasted for 14, 28, and 206 days, and results were compared with age-matched controls. Body weights were normal until 14 days and Sol growth was inhibited more than P, weighing 38 and 47% of controls at 46 and 224 days compared with 68 and 59% in P. The Sol did not develop into a slow-twitch (ST) muscle as evidenced by faster times to peak tension and half-relaxation times, faster times to develop 50% of maximum tetanic tension (Po) and a mean of 33% fewer ST fibers. Twitch tension and Po were lower in S-Sol and S-P, but force/cross-sectional area was unchanged. Fiber areas were smaller, but no structural changes characteristic of disuse atrophy were found. Fiber type populations were unchanged in P, and contractile properties were only minimally affected, demonstrating the greater importance of activity for ST muscles during development.
对后肢悬吊的发育中大鼠比目鱼肌(Sol)和跖肌(P)的组织化学和收缩特性进行了研究,以确定活动水平降低对肌肉发育的影响。悬吊(S)从18日龄开始,持续14、28和206天,并将结果与年龄匹配的对照组进行比较。体重在14天前正常,Sol的生长比P受到的抑制更大,在46天和224天时,Sol的重量分别为对照组的38%和47%,而P为68%和59%。Sol没有发育成慢肌(ST),这表现为达到峰值张力和半松弛时间更快,达到最大强直张力(Po)的50%所需时间更快,且ST纤维平均少33%。S-Sol和S-P中的单收缩张力和Po较低,但力/横截面积不变。纤维面积较小,但未发现废用性萎缩的特征性结构变化。P中的纤维类型群体未改变,收缩特性仅受到最小程度的影响,表明发育过程中活动对ST肌肉更为重要。