Bagni M A, Cecchi G, Colombini B, Colomo F
Dipartimento di Scienze Fisiologiche, Università degli Studi di Firenze, Italy.
J Electromyogr Kinesiol. 1999 Apr;9(2):77-86. doi: 10.1016/s1050-6411(98)00039-x.
Data reported in the literature suggest that crossbridges in rapid equilibrium between attached and detached states (weakly binding bridges), demonstrated in relaxed skinned fibres at low ionic strength, could be present also in intact fibres under physiological conditions. In addition, it was suggested that the well known leading of stiffness over force during the tension development in stimulated muscle fibres could be due to an increased number of weakly binding bridges induced by the stimulation. The experiments reviewed in this paper were made to investigate these possibilities. Fast ramp length changes were applied to single frog muscle fibres at rest and during the early phases of activation. The corresponding force changes were analysed, searching for the components expected from the presence of weakly binding bridges. The results showed no mechanical indication for the presence of weakly binding bridges in both skinned and intact fibres, either at rest or during activation. It was also found that a portion of the fibre stiffness increase induced by stimulation leads the formation of crossbridges.
文献报道的数据表明,在低离子强度下松弛的皮肤纤维中显示的处于附着和分离状态之间快速平衡的横桥(弱结合桥),在生理条件下的完整纤维中也可能存在。此外,有人认为,在受刺激的肌肉纤维张力发展过程中,刚度领先于力这一众所周知的现象可能是由于刺激诱导的弱结合桥数量增加所致。本文综述的实验旨在研究这些可能性。对处于静息状态和激活早期阶段的单个青蛙肌肉纤维施加快速斜坡长度变化。分析相应的力变化,寻找弱结合桥存在所预期的成分。结果表明,无论是在静息状态还是激活过程中,在皮肤纤维和完整纤维中均未发现弱结合桥存在的机械迹象。还发现,刺激引起的纤维刚度增加的一部分先于横桥的形成。