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2,3-丁二酮一肟(BDM)对青蛙单根肌纤维力-速度关系的影响。

The effects of 2,3-butanedione monoxime (BDM) on the force-velocity relation in single muscle fibres of the frog.

作者信息

Sun Y B, Lou F, Edman K A

机构信息

Department of Pharmacology, University of Lund, Sweden.

出版信息

Acta Physiol Scand. 1995 Apr;153(4):325-34. doi: 10.1111/j.1748-1716.1995.tb09870.x.

Abstract

The effects of 2,3-butanedione monoxime (BDM) on the force-velocity relation were studied in single fibres from the anterior tibialis muscle of Rana temporaria (2.2 microns sarcomere length, temperature 1.9-2.4 degrees C). BDM (1.0 and 1.8 mM) suppressed the maximum tetanic force (P0) and the maximum speed of shortening (Vmax), and increased the main curvature of the force-velocity relation. The biphasic shape of the force-velocity curve was maintained well in the presence of BDM, but the interrelation between the two portions of the force-velocity relation was significantly changed. Caffeine (0.5 mM) added in the presence of BDM increased the initial rate of rise of force during twitch and tetanus, increased the twitch amplitude, but did not affect the maximum tetanic force. The latter finding suggests that the contractile system was fully activated during tetanus in the presence of BDM. The results support the view that BDM affects the cross-bridge function by exerting a direct action upon the contractile apparatus. The decrease in tetanic force and the change of the force-velocity relation induced by BDM may be interpreted to show that a larger fraction of the attached cross-bridges is in a state of low force production under the influence of BDM. This view is further supported by the observation that the instantaneous stiffness of the muscle fibre is reduced proportionally less by BDM than the tetanic force.

摘要

研究了2,3-丁二酮一肟(BDM)对林蛙胫前肌单纤维力-速度关系的影响(肌节长度2.2微米,温度1.9 - 2.4摄氏度)。BDM(1.0和1.8毫摩尔)抑制了最大强直力(P0)和最大缩短速度(Vmax),并增加了力-速度关系的主曲率。在BDM存在的情况下,力-速度曲线的双相形状保持良好,但力-速度关系两部分之间的相互关系发生了显著变化。在BDM存在时添加咖啡因(0.5毫摩尔)可增加单收缩和强直收缩期间力的初始上升速率,增加单收缩幅度,但不影响最大强直力。后一发现表明,在BDM存在的情况下,收缩系统在强直收缩期间已被充分激活。结果支持这样一种观点,即BDM通过对收缩装置施加直接作用来影响横桥功能。BDM引起的强直力降低和力-速度关系的变化可以解释为表明在BDM的影响下,较大比例的附着横桥处于低力产生状态。肌肉纤维的瞬时刚度因BDM而降低的比例小于强直力,这一观察结果进一步支持了这一观点。

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