Oblonczek G, Szymanski G
Julius-Bernstein-Institut für Physiologie, Martin-Luther-Universität Halle-Wittenberg, Halle/Saale, Germany.
Mol Cell Biochem. 1997 Oct;175(1-2):213-23. doi: 10.1023/a:1006875617870.
This paper records the results of an investigation into potentiation and staircase phenomena in rightventricular guinea-pig papillary muscles with particular reference to the sarcoplasmic Ca(2+)-channel. As a tool to isolate the second ('late', 'tonic') component of isoproterenol-induced biphasic contractions ryanodine was used. On the evidence at present available the monophasic ryanodine-resistant component of the twitch represents that portion of the activator calcium which reaches the troponin C directly, that is, not taking the roundabout way through the intracellular storage structures. In order to avoid functional instabilities of the isolated muscle preparation a short-time double rest stimulation programme was used which combines a number of different tests and gives information on (1) the post-rest potentiation, (2) the post-extrasystolic potentiation, (3) the mechanical post-rest recovery, (4) the interval-strength relationship, and (5) the mechanical restitution. The results of the present work show that under the influence of ryanodine (1) the Bowditch staircase, a typical feature of normodynamic mammalian ventricular preparations as well as of hypodynamic frog heart preparations, does not exist, (2) the post-extrasystolic potentiation disappears, (3) the curve reflecting the mechanical restitution, under normal in vitro conditions a monotonically increasing function, becomes biphasic within the relative refractory period, (4) the conspicuous depression of the isometric post-rest contraction for long lasting pauses interrupting the regular pacing rhythm, a typical feature of isolated guinea-pig ventricular tissue, is clearly diminished, and (5) the characteristic curve, reflecting the potentiation of the post-extrasystolic post-rest contraction as a function of the delay time preceding the extrastimulus, becomes displaced to the premature interstimulus interval. The concept of an 'extended 2-calcium-store model' is supported by this work.
本文记录了对豚鼠右心室乳头肌中增强作用和阶梯现象的研究结果,特别关注肌浆网Ca(2+)通道。使用ryanodine作为工具来分离异丙肾上腺素诱导的双相收缩的第二个(“晚期”、“强直”)成分。根据目前可得的证据,单收缩中对ryanodine耐药的单相成分代表直接到达肌钙蛋白C的激活钙部分,即不通过细胞内储存结构的迂回途径。为了避免分离的肌肉制备物出现功能不稳定,采用了短时双休息刺激程序,该程序结合了多种不同测试,并提供了关于(1)休息后增强作用、(2)期外收缩后增强作用、(3)机械性休息后恢复、(4)间期-强度关系和(5)机械性恢复的信息。目前的研究结果表明,在ryanodine的影响下,(1)Bowditch阶梯现象不存在,这是正常动力学哺乳动物心室制备物以及低动力学蛙心制备物的典型特征;(2)期外收缩后增强作用消失;(3)反映机械性恢复的曲线,在正常体外条件下是单调增加的函数,在相对不应期内变为双相;(4)孤立豚鼠心室组织的典型特征,即长时间停顿打断规则起搏节律后等长休息后收缩的明显抑制明显减弱;(5)反映期外收缩后休息后收缩增强作用作为额外刺激前延迟时间函数的特征曲线,位移到过早的刺激间期。这项工作支持了“扩展双钙储存模型”的概念。