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Relationship between internal calcium and outward current in mammalian ventricular muscle; a mechanism for the control of the action potential duration?

机译:哺乳动物心室肌内钙与外向电流的关系;控制动作电位持续时间的机制?

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摘要

In sheep and calf ventricular bundles, increasing the internal calcium by increasing the frequency of voltage-clamping to plateau range potentials increased the time-independent outward current. This effect was more marked with higher [Ca]o, and was reduced if the Ca current blockers Verapamil or D 600 were used. 2. If the internal Ca was increased by the addition of cyanide and reduction of external sodium the outward current was also increased. The frequency-dependent increase in outward current also occurred in this Na-poor (12 mM) solution. 3. Tension measurement on the ventricular bundles showed that a Na-free solution with cyanide did not cause a contracture. On changing from Tyrode to a Na-free solution containing cyanide, and on changing back to Tyrode there was a potentiation of the twitch. 4. In Na-poor solution with cyanide, although no contracture was found, ECa was less positive, suggesting that under these circumstances Ca accumulates at the inner side of the membrane, but not around the myofibrils. 5. The prolongation of the action potential in Cl-free solution is frequency-dependent. A greater prolongation is seen at lower frequencies suggesting that Cl current is relatively more important for repolarization at lower frequencies of stimulation. 6. It is suggested that calcium at the inner side of the membrane sets the level of the background outward current. A feed-back mechanism on this basis is proposed for the control of the action potential duration. Various factors that could influence this basic mechanism are discussed.
机译:在绵羊和小牛的心室束中,通过增加电压钳位到高原范围电位的频率来增加内部钙离子,增加了与时间无关的向外电流。较高的[Ca] o效果更明显,如果使用Ca电流阻滞剂维拉帕米或D 600,则效果会降低。 2.如果通过添加氰化物增加内部Ca并减少外部钠,则向外电流也会增加。在这种Na贫乏(12 mM)解决方案中,向外电流的频率依赖性增加也发生了。 3.对心室束的张力测量表明,无钠的氰化物溶液不会引起挛缩。从Tyrode变为含氰化物的无Na溶液后,再回到Tyrode时,会产生抽搐。 4.在没有钠的氰化物溶液中,虽然未发现挛缩,但ECa阳性较少,这表明在这种情况下,Ca积累在膜的内侧,而不是在肌原纤维周围。 5.无氯溶液中动作电位的延长与频率有关。在较低频率下观察到更大的延长,表明Cl电流对于较低频率的刺激下的复极化相对更重要。 6.建议膜内侧的钙决定背景向外电流的水平。在此基础上提出了一种反馈机制,用于控制动作电位持续时间。讨论了可能影响此基本机制的各种因素。

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