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肾上腺素对心脏浦肯野纤维起搏活动的作用。

The action of adrenaline on pace-maker activity in cardiac Purkinje fibres.

作者信息

Cohen I, Eisner D, Noble D

出版信息

J Physiol. 1978 Jul;280:155-68. doi: 10.1113/jphysiol.1978.sp012378.

Abstract
  1. Adrenaline is known to shift the activation curve for iK2 (s infinite curve) in a positive direction on the voltage axis. This should cause an increase in the slope of diastolic depolarization, but cannot account for the experimentally observed increase in the maximum diastolic potential (MDP). 2. On application of adrenaline, in voltage clamp studies on short sheep cardiac Purkinje fibres there is a consistent 5-15 mV negative shift of the reversal potential for the pace-maker current, iK2. This shift is not reversed on application of the beta-blockers sotalol or propranolol, or on washout for up to one hour. 3. A computer simulation, including this effect of adrenaline, shows that it can shift the maximum diastolic potential in the hyperpolarizing or depolarizing direction depending on the initial value of [K+]o. In both cases it will add to the increase in rate caused by the positive shift of the activation curve for iK2 (the s infinite shift). 4. Studies of the effects of adrenaline on the MDP and rate in long sheep Purkinje fibres show a slower reversibility of the MDP than the rate, consistent with a slower reversal of the shift in the iK2 reversal potential than the shift in s infinite. 5. Possible mechanisms of the shift in reversal potential are discussed with respect to K+ balance in the intercellular clefts of the Purkinje fibre, including a a stimulation of the Na+- K+ pump. The possible sources of voltage clamp artifact are also discussed.
摘要
  1. 已知肾上腺素可使iK2的激活曲线(s无穷大曲线)在电压轴上正向移动。这应会导致舒张期去极化斜率增加,但无法解释实验观察到的最大舒张电位(MDP)增加的现象。2. 在对短的绵羊心脏浦肯野纤维进行电压钳研究时,施加肾上腺素后,起搏电流iK2的反转电位会持续出现5 - 15 mV的负向偏移。施加β受体阻滞剂索他洛尔或普萘洛尔,或冲洗长达1小时后,这种偏移都不会逆转。3. 包含肾上腺素这种效应的计算机模拟表明,根据[K+]o的初始值,它可使最大舒张电位向超极化或去极化方向移动。在这两种情况下,它都会叠加iK2激活曲线正向移动(s无穷大移动)所导致的速率增加。4. 对肾上腺素对长的绵羊浦肯野纤维的MDP和速率影响的研究表明,MDP的可逆性比速率慢,这与iK2反转电位的偏移比s无穷大的偏移逆转得更慢一致。5. 针对浦肯野纤维细胞间裂隙中的K+平衡,讨论了反转电位偏移的可能机制,包括对钠钾泵的刺激。还讨论了电压钳伪迹的可能来源。

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