Lännergren J, Noth J
J Gen Physiol. 1973 Dec;62(6):737-55. doi: 10.1085/jgp.62.6.737.
Resting tension and short-range elastic properties of isolated twitch muscle fibers of the frog have been studied while bathed by solutions of different tonicities. Resting tension in isotonic solution at 2.3-microm sarcomere spacing averaged 0.46 mN.mm(-2) and was proportional to the fiber cross-section area. Hypertonic solutions, containing 0.1-0.5 mM tetracaine to block contracture tension, caused a small sustained tension increase, which was proportional to the fiber cross-section area and which reached 0.9 mN.mm(-2) at two times normal tonicity (2T). Further increases in tonicity caused little increase in tension. Hypotonic solutions decreased tension. Thus, tension at 2.3 microm is a continuous, direct function of tonicity. The dependence of tension on tonicity lessened at greater sarcomere lengths. At 3.2 microm either a very small rise or, in some fibers, a fall in tension resulted from an increase in tonicity. Hypertonic solutions also decreased the tension of extended sarcolemma preparations. In constant-speed stretch experiments the elastic modulus, calculated from the initial part of the stretch response, rose steeply with tonicity over the whole range investigated (1-2.5T). The results show that tension and stiffness of the short-range elastic component do not increase in parallel in hypertonic solutions.
在不同张力的溶液中浸泡时,对青蛙离体单收缩肌纤维的静息张力和短程弹性特性进行了研究。在2.3微米肌节间距的等渗溶液中,静息张力平均为0.46毫牛顿·毫米-2,并与纤维横截面积成正比。含有0.1 - 0.5毫摩尔四卡因以阻断挛缩张力的高渗溶液,会引起持续的小张力增加,该增加与纤维横截面积成正比,在两倍正常张力(2T)时达到0.9毫牛顿·毫米-2。张力进一步增加时,张力增加很少。低渗溶液会降低张力。因此,2.3微米处的张力是张力的连续直接函数。在更大的肌节长度下,张力对张力的依赖性降低。在3.2微米处,张力增加会导致张力非常小的上升,或者在某些纤维中导致张力下降。高渗溶液也会降低伸展肌膜制剂的张力。在恒速拉伸实验中,根据拉伸响应的初始部分计算出的弹性模量,在整个研究范围内(1 - 2.5T)随张力急剧上升。结果表明,在高渗溶液中,短程弹性成分的张力和刚度并非平行增加。