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大鼠气管平滑肌强直性激活过程中收缩动力学变化的时间进程。

The time course of changes in contraction kinetics during the tonic activation of the rat tracheal smooth muscle.

作者信息

Peiper U, Vahl C F, Donker E

出版信息

Pflugers Arch. 1984 Sep;402(1):83-7. doi: 10.1007/BF00584835.

Abstract

The tension increase after onset of electrical stimulation (30 Hz square wave; 1.65 ms pulse duration) and after the cessation of inhibiting length vibration (frequency 100 Hz sinus; amplitude 6% of the muscle length) was analysed in the isolated rat tracheal smooth muscle. In the first experimental series, tonic contraction was interrupted by a 2 s vibration applied 4-256 s after a preceding stimulation. In the second series, the onset of force development was delayed by a long-term vibration stopping 6-258 s after the commencement of a simultaneously performed electrical stimulation. In both the experimental series tested, the time course of post-vibration tension recovery showed an initial fast and a subsequent slow component. The former reflects the kinetics of cross-bridge reattachment and the latter those of the normal actin-myosin interaction cycle. The time constants of both these components reached a minimum of 0.58 +/- 0.04 s (fast) and 3.49 +/- 0.28 s (slow component) when the vibration stopped 18 s after the start of stimulation. Both values increased to 1.29 +/- 0.15 s and 9.98 +/- 1.17 s after a preceding stimulation of 256 s. These changes in the time constants may reflect the slowing of cross-bridge action under prolonged contraction. Such variations in the time constants of post-vibration tension recovery occurred without any corresponding changes in the steady state tension developed after cessation of vibration. These results lend further support to the supposition that different mechanisms might control the rate and extent of smooth muscle contraction.

摘要

在离体大鼠气管平滑肌中,分析了电刺激(30Hz方波;脉冲持续时间1.65ms)开始后以及抑制性长度振动(频率100Hz正弦波;幅度为肌肉长度的6%)停止后的张力增加情况。在第一个实验系列中,在先前刺激后4 - 256秒施加2秒的振动,中断强直收缩。在第二个系列中,在同时进行的电刺激开始后6 - 258秒停止长期振动,延迟力的产生。在两个测试的实验系列中,振动后张力恢复的时间进程显示出一个初始的快速成分和随后的缓慢成分。前者反映了横桥重新附着的动力学,后者反映了正常肌动蛋白 - 肌球蛋白相互作用循环的动力学。当振动在刺激开始后18秒停止时,这两个成分的时间常数分别达到最小值0.58±0.04秒(快速)和3.49±0.28秒(缓慢成分)。在先前256秒的刺激后,这两个值分别增加到1.29±0.15秒和9.98±1.17秒。这些时间常数的变化可能反映了长时间收缩下横桥作用的减慢。振动后张力恢复时间常数的这种变化在振动停止后产生的稳态张力没有任何相应变化的情况下发生。这些结果进一步支持了不同机制可能控制平滑肌收缩速率和程度的假设。

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