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哺乳动物心肌中的力阶梯动力学:肌肉长度的调节作用。

Force staircase kinetics in mammalian cardiac muscle: modulation by muscle length.

作者信息

Lakatta E G, Spurgeon H A

出版信息

J Physiol. 1980 Feb;299:337-52. doi: 10.1113/jphysiol.1980.sp013128.

Abstract
  1. Quiescent cat papillary muscles were stimulated to contract regularly at L(max), the length at which force production is optimal, and at 0.85 L(max). The resulting increase in force production (rate staircase) at each length was characterized as an exponential function.2. When stimulated from quiescence at 24 min(-1) in a bathing fluid [Ca(2+)] of 2.5 mM, sixteen of twenty-three muscles exhibited biexponential increases in force production at both lengths. The coefficients of the exponential function at L(max) were 1.5-2 times greater than their counterparts at the shorter length, and this length difference was highly significant. When the force staircases were normalized to the peak developed force attained at each length, the number of beats to attain 25, 50, 75, and 98% of peak force at 0.85 L(max) was approximately twice that required at L(max).3. At a given length the force staircase (1) exhibited a dependency on the number of beats rather than on stimulation frequency over a range of 12-60 min(-1), (2) was accelerated by increasing the bathing fluid [Ca(2+)] from 1.0 to 5.0 mM, (3) was accelerated in the presence of isoproterenol, and (4) was retarded in the presence of DL-verapamil. Over the entire range of bathing fluid [Ca(2+)] and at all stimulation frequencies 24 min(-1) and above, more beats were required to complete a given level of the normalized staircase at 0.85 L(max) than at L(max). There was no length difference in the presence of verapamil. These data suggest that transsarcolemmal Ca(2+) influx is an important determinant of the kinetics of the force staircase, and the length dependence of the latter indicates that muscle length is an important determinant of transsarcolemmal Ca(2+) influx.4. This conclusion was strengthened by the results of additional studies in which the [Ca(2+)] of the bathing fluid was abruptly increased from 1.0 to 5.0 mM with the muscle beating in the steady state. The resulting increase in force production (Ca(2+) staircase) was described by a monoexponential function with a greater coefficient at L(max) than 0.85 L(max); when normalized to the peak force difference in the two [Ca(2+)] at each length, a given level of the staircase was achieved in significantly fewer beats at L(max) than at the shorter length.5. The data provide a mechanism which, in part, explains the length dependence of excitation-contraction coupling in cardiac muscle with intact sarcolemmae.
摘要
  1. 对静态猫乳头肌进行刺激,使其在L(max)(产生力量最佳的长度)和0.85 L(max)时规律收缩。在每个长度下产生的力量增加(速率阶梯现象)被表征为指数函数。

  2. 当在2.5 mM的[Ca(2+)]的灌流液中以24次/分钟的频率从静止状态开始刺激时,23块肌肉中有16块在两个长度下力量产生均呈现双指数增加。L(max)处指数函数的系数比短长度处的系数大1.5 - 2倍,且这种长度差异非常显著。当将力量阶梯现象归一化到每个长度下达到的最大力量峰值时,在0.85 L(max)处达到峰值力量的25%、50%、75%和98%所需的搏动次数大约是L(max)处的两倍。

  3. 在给定长度下,力量阶梯现象:(1) 在12 - 60次/分钟的范围内依赖于搏动次数而非刺激频率;(2) 通过将灌流液[Ca(2+)]从1.0 mM增加到5.0 mM而加速;(3) 在异丙肾上腺素存在时加速;(4) 在DL - 维拉帕米存在时减慢。在整个灌流液[Ca(2+)]范围内以及所有24次/分钟及以上的刺激频率下,在0.85 L(max)处完成给定水平的归一化阶梯现象比在L(max)处需要更多的搏动次数。在维拉帕米存在时没有长度差异。这些数据表明跨肌膜Ca(2+)内流是力量阶梯现象动力学的重要决定因素,而后者的长度依赖性表明肌肉长度是跨肌膜Ca(2+)内流的重要决定因素。

  4. 额外研究的结果强化了这一结论,在这些研究中,当肌肉在稳定状态下搏动时,灌流液的[Ca(2+)]从1.0 mM突然增加到5.0 mM。由此产生的力量增加(Ca(2+)阶梯现象)由单指数函数描述,L(max)处的系数大于0.85 L(max)处的系数;当归一化到每个长度下两种[Ca(2+)]时的力量峰值差异时,在L(max)处达到给定水平的阶梯现象所需的搏动次数明显少于较短长度处。

  5. 这些数据提供了一种机制,部分解释了具有完整肌膜的心肌中兴奋 - 收缩偶联的长度依赖性。

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