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治疗浓度的苯妥英对正常和抑制状态的浦肯野纤维跨膜电位的影响。

Effects of therapeutic concentrations of diphenylhydantoin on transmembrane potentials of normal and depressed Purkinje fibers.

作者信息

Rosen M R, Danilo P, Alonso M B, Pippenger C E

出版信息

J Pharmacol Exp Ther. 1976 Jun;197(3):594-604.

PMID:932992
Abstract

Standard intracellular microelectrode techniques were used to study canine Purkinje fibers (PF) which had been superfused with blood or Tyrode's solution to determine the cardiac cellular electrophysiologic changes induced by antiarrhythmic concentrations of diphenylhydantoin (DPH). Some PF were normal whereas others were depressed by stretch, exposure to ouabain (125 mug/1) or superfusion with a solution in which all Na+ was replaced by tetraethylammonium. For normal fibers, therapeutic concentrations of DPH (DPH) induced slight decreases in action potential (AP) amplitude, maximum upstroke velocity of phase O (Vmax) and membrane responsiveness and somewhat greater decreases in AP duration. For fibers moderately depressed by ouabain or stretch, with reduced AP amplitude, maximum diastolic potential and Vmax, therapeutic [DPH] increased these variables. Fibers markedly depressed by Na-free solution or stretch developed slow response AP. The amplitude and Vmax of the AP were decreased by therapeutic [DPH]. Therapeutic [DPH] also suppressed automaticity and ouabain-induced delayed afterdepolarizations. Our studies suggest that the slight depression of normal PF AP characteristics induced by therapeutic [DPH] probably is of little significance with respect to antiarrhythmic effect. In contrast, both the improvement of AP characteristics of moderately depressed fibers and further depression of severely depressed fibers caused by [DPH] might modify arrhythmias. Effects of DPH on automaticity and delayed afterdepolarizations also would contribute to its antiarrhythmic effect.

摘要

采用标准细胞内微电极技术研究犬浦肯野纤维(PF),这些纤维用血液或台氏液进行表面灌流,以确定抗心律失常浓度的苯妥英(DPH)所引起的心脏细胞电生理变化。一些PF是正常的,而另一些则因拉伸、暴露于哇巴因(125μg/1)或用所有Na⁺被四乙铵取代的溶液进行表面灌流而受到抑制。对于正常纤维,治疗浓度的DPH使动作电位(AP)幅度、0期最大上升速度(Vmax)和膜反应性略有降低,AP时程降低幅度稍大。对于因哇巴因或拉伸而中度抑制的纤维,其AP幅度、最大舒张电位和Vmax降低,治疗浓度的[DPH]使这些变量增加。被无钠溶液或拉伸显著抑制的纤维产生缓慢反应AP。治疗浓度的[DPH]使AP的幅度和Vmax降低。治疗浓度的[DPH]还抑制自律性和哇巴因诱导的延迟后去极化。我们的研究表明,治疗浓度的[DPH]引起的正常PF AP特性的轻微抑制对于抗心律失常作用可能意义不大。相反,[DPH]引起的中度抑制纤维AP特性的改善和重度抑制纤维的进一步抑制可能会改变心律失常。DPH对自律性和延迟后去极化的作用也有助于其抗心律失常作用。

相似文献

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Effects of therapeutic concentrations of diphenylhydantoin on transmembrane potentials of normal and depressed Purkinje fibers.治疗浓度的苯妥英对正常和抑制状态的浦肯野纤维跨膜电位的影响。
J Pharmacol Exp Ther. 1976 Jun;197(3):594-604.
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Evidence against an involvement of Na+, K+-ATPase in antiarrhythmic mechanism of phenytoin.
关于苯妥英抗心律失常机制中钠钾ATP酶未参与的证据。
Naunyn Schmiedebergs Arch Pharmacol. 1983 Jun;323(1):78-84. doi: 10.1007/BF00498832.
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Sodium channels from human brain RNA expressed in Xenopus oocytes. Basic electrophysiologic characteristics and their modification by diphenylhydantoin.在非洲爪蟾卵母细胞中表达的来自人类大脑RNA的钠通道。基本电生理特性及其被苯妥英修饰的情况。
J Clin Invest. 1989 May;83(5):1724-32. doi: 10.1172/JCI114073.
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