Stevens L, Mounier Y, Holy X, Falempin M
Laboratoire de Physiologie des Structures Contractiles, Université des Sciences et Techniques de Lille, Villeneuve d'Ascq, France.
J Appl Physiol (1985). 1990 Jan;68(1):334-40. doi: 10.1152/jappl.1990.68.1.334.
The properties of the contractile elements interacting to develop force in atrophied rat soleus muscle were studied by using single skinned fibers, which permitted direct access to the contractile apparatus. Muscle atrophy was induced by 15 days of hindlimb suspension. Suspension resulted in a decrease of maximal tension relative to an important decline in fiber diameter. Ca affinity of the contractile proteins was not changed insofar as the tension-pCa relationship was not shifted along the pCa axis. However, after hindlimb suspension 1) the value of the Hill coefficient from the tension-pCa curve was found to be higher, 2) a higher Ca threshold for activation was reported, and 3) a significant increase in contraction kinetics was described. All these results suggested that after suspension the mechanical properties of the slow-twitch soleus appeared to resemble more closely those of a fast-twitch muscle. Our results were in complete agreement with published histochemical data.
通过使用单根去表皮纤维来研究萎缩大鼠比目鱼肌中相互作用以产生力量的收缩元件的特性,这种方法可以直接接触到收缩装置。通过后肢悬吊15天诱导肌肉萎缩。悬吊导致最大张力相对于纤维直径的显著下降而降低。收缩蛋白的钙亲和力没有改变,因为张力-pCa关系没有沿pCa轴移动。然而,在后肢悬吊后:1)发现张力-pCa曲线的希尔系数值更高;2)报告了更高的激活钙阈值;3)描述了收缩动力学的显著增加。所有这些结果表明,悬吊后慢肌比目鱼肌的力学特性似乎更类似于快肌。我们的结果与已发表的组织化学数据完全一致。