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锶对绵羊心脏浦肯野纤维的电和机械效应。

Electrical and mechanical effects of strontium in sheep cardiac Purkinje fibres.

作者信息

Gonzalez M D, Vassalle M

机构信息

Department of Physiology, State University of New York, Brooklyn 11203.

出版信息

Cardiovasc Res. 1989 Oct;23(10):867-81. doi: 10.1093/cvr/23.10.867.

Abstract

The electrical and mechanical effects of strontium were studied in sheep cardiac Purkinje fibres perfused in vitro. In a nominally calcium free solution, strontium (1.35-10.8 mmol.litre-1): (1) caused a time, rate and concentration dependent shift of the plateau to more positive potentials, prolonged the action potential and decreased the maximum diastolic potential; (2) increased the time to peak and amplitude of the twitch and caused a tonic force which relaxed only on repolarisation; (3) was rapidly overcome in its effects by calcium (1.35-2.7 mmol.litre-1); (4) was antagonised by manganese (1 mmol.litre-1) and cadmium (0.1-0.2 mmol.litre-1); (5) was potentiated by noradrenaline (0.1 mumol.litre-1); (6) could induce action potentials in 27 mmol.litre-1 [K]o; (7) induced a tail following the action potential when the pacemaker potential had been blocked by caesium; (8) could induce a tail in 8 mmol.litre-1 [K]o which sustained force development and was reduced by calcium antagonists; (9) if applied to a quiescent fibre, induced a prolongation of the first resumed action potential and tonic force but a small twitch, and these effects were antagonised by calcium and manganese; and (10) induced a strong twitch after a period of quiescence in low [Na]o. It is concluded that the pronounced and progressive electrical and mechanical effects of strontium in cardiac Purkinje fibres are due to an enhanced strontium influx (due to inability of strontium to substitute for calcium in the inactivation of Isi) and to strontium extrusion through an electrogenic Na-Sr exchange.

摘要

在体外灌注的绵羊心脏浦肯野纤维中研究了锶的电效应和机械效应。在名义上无钙的溶液中,锶(1.35 - 10.8 mmol·升⁻¹):(1)使平台期呈时间、速率和浓度依赖性地向更正电位偏移,延长动作电位并降低最大舒张电位;(2)增加收缩期峰值时间和幅度,并产生仅在复极化时才松弛的强直力;(3)其效应迅速被钙(1.35 - 2.7 mmol·升⁻¹)克服;(4)被锰(1 mmol·升⁻¹)和镉(0.1 - 0.2 mmol·升⁻¹)拮抗;(5)被去甲肾上腺素(0.1 μmol·升⁻¹)增强;(6)能在27 mmol·升⁻¹ [K]ₒ中诱导动作电位;(7)当起搏电位被铯阻断时,在动作电位后诱导出一个尾电流;(8)能在8 mmol·升⁻¹ [K]ₒ中诱导出一个尾电流,该尾电流维持力的发展并被钙拮抗剂降低;(9)如果施加到静息纤维上,诱导首次恢复的动作电位延长和强直力,但收缩较小,这些效应被钙和锰拮抗;以及(10)在低[Na]ₒ中经过一段时间的静息后诱导出强烈的收缩。结论是,锶在心脏浦肯野纤维中明显且渐进的电效应和机械效应是由于锶内流增强(由于在Iₛi失活过程中锶无法替代钙)以及通过电生钠 - 锶交换进行的锶外流。

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