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鸡胚心肌细胞聚集体的机械活性。

The mechanical activity of chick embryonic myocardial cell aggregates.

作者信息

Clusin W T, Hamilton W E, Nelson D V

出版信息

J Physiol. 1981 Nov;320:149-74. doi: 10.1113/jphysiol.1981.sp013941.

DOI:10.1113/jphysiol.1981.sp013941
PMID:7320934
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1244039/
Abstract
  1. Simultaneous recordings of membrane potential and edge movement were obtained in spontaneously beating chick embryonic myocardial cell aggregates, which are known to behave as an isopotential syncytium.2. The time course of edge movement was similar in different aggregates, and in different regions of the same aggregate.3. Peak amplitude was increased by 10(-6)m-ouabain, and by rapid reduction of the external sodium concentration.4. Peak amplitude was decreased during single premature action potentials, but sustained rapid pacing produced an ascending staircase.5. Depolarizing current pulses increased both the amplitude and duration of the contraction, and caused potentiation of the next spontaneous beat. Edge displacement during a series of pulses was a monotonic function of membrane potential.6. Edge movement between action potentials (diastolic movement) was well fitted by an exponential with a mean time constant of 69 msec. Diastolic edge movement was due to a weak, slowly decaying contractile force, which was demonstrated in cells grown on a linear-elastic nylon bristle.7. The time course of diastolic edge movement remained constant, or nearly constant, during variations in peak amplitude that resulted from prematurity of the action potential, exposure to 10(-6)m-ouabain, spontaneous mechanical alternans, or prolongation of the action potential by current pulses.8. In contrast, reduction of the external sodium concentration produced marked, selective slowing of the diastolic edge movement. Similar slowing occurred during cooling and during staircase. Diastolic edge movement was selectively accelerated when the preceding interbeat interval was prolonged by a hyperpolarizing current pulse.9. The above observations are consistent with the hypothesis that edge displacement is a monotonic function of contractile force.10. The slow relaxation between action potentials probably reflects removal of intracellular calcium across the surface membrane in exchange for sodium. Changes in the rate of calcium removal may play a role in the regulation of contractility in this tissue.
摘要
  1. 在自发搏动的鸡胚心肌细胞聚集体中同时记录膜电位和边缘运动,已知这些聚集体表现为等电位合胞体。

  2. 不同聚集体以及同一聚集体不同区域的边缘运动时间进程相似。

  3. 峰值幅度在加入10(-6)M哇巴因以及快速降低细胞外钠浓度时增大。

  4. 在单个早搏动作电位期间峰值幅度降低,但持续快速起搏会产生一个上升的阶梯现象。

  5. 去极化电流脉冲增加了收缩的幅度和持续时间,并使下一次自发搏动增强。一系列脉冲期间的边缘位移是膜电位的单调函数。

  6. 动作电位之间的边缘运动(舒张期运动)可用指数函数很好地拟合,平均时间常数为69毫秒。舒张期边缘运动归因于一种微弱、缓慢衰减的收缩力,这在生长于线性弹性尼龙刷毛上的细胞中得到证实。

  7. 在因动作电位提前、暴露于10(-6)M哇巴因、自发机械交替或电流脉冲导致动作电位延长而引起的峰值幅度变化期间,舒张期边缘运动的时间进程保持恒定或几乎恒定。

  8. 相比之下,降低细胞外钠浓度会导致舒张期边缘运动显著且选择性地减慢。在冷却和阶梯现象期间也会出现类似的减慢。当通过超极化电流脉冲延长前一个心动周期间期时,舒张期边缘运动选择性地加速。

  9. 上述观察结果与边缘位移是收缩力的单调函数这一假设一致。

  10. 动作电位之间的缓慢松弛可能反映了细胞内钙通过表面膜与钠交换而被清除。钙清除速率的变化可能在该组织收缩性的调节中起作用。

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