首页> 外文期刊>The Journal of general physiology >Block of T-type Ca channels in guinea pig atrial cells by antiarrhythmic agents and Ca channel antagonists.
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Block of T-type Ca channels in guinea pig atrial cells by antiarrhythmic agents and Ca channel antagonists.

机译:抗心律不齐药物和Ca通道拮抗剂可阻断豚鼠心房细胞T型Ca通道。

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摘要

Myocardial cells have two types of Ca channels commonly called T-type and L-type. Whole cell Ca channel currents in guinea pig atrial myocytes can be separated and quantitated by analyzing channel closing kinetics after a brief depolarization (tail current analysis). L-type Ca channels deactivate rapidly when the membrane is repolarized and T-type Ca channels deactivate relatively slowly. Ca channel block by the therapeutically useful Ca channel antagonists is voltage dependent, so it is desirable to study block of both channel types over an extended voltage range. Tail current analysis allows this and was used to study block of both types of Ca channels under identical conditions. Amiodarone, bepridil, and cinnarizine block T-type Ca channels more potently than L-type Ca channels when binding equilibrates at normal diastolic potentials (approximately -90 mV). None of these drugs is a selective blocker of T-type Ca channels because block of L-type Ca channels is enhanced when cells are almost completely depolarized. Although weak block of T-type Ca channels by 1,4-dihydropyridines has usually been reported, we found that felodipine blocks these channels with high affinity. When most T-type Ca channels are inactivated, the apparent dissociation constant (KI) is 13 nM. Felodipine also blocks T-type Ca channels in GH3 cells (a cell line derived from rat anterior pituitary), but KI = 700 nM. Thus, T-type Ca channels in different cell types are pharmacologically distinct. Felodipine can block L-type Ca channels in atrial cells more potently than T-type Ca channels, but block of L-type Ca channels is potent only at depolarized potentials; block of both channel types is comparable at normal diastolic membrane potentials. Felodipine and the 1,4-dihydropyridines isradipine and (-)-202-791 are approximately equipotent at blocking T-type Ca channels, but differ substantially in potency for block of L-type Ca channels. Block of T-type Ca channels may account for some of the pharmacological effects of 1,4-dihydropyridines and for the antiarrhythmic activity of amiodarone and bepridil.
机译:心肌细胞具有两种钙通道,通常称为T型和L型。豚鼠心房肌细胞中的全细胞Ca通道电流可以通过短暂去极化后的通道关闭动力学分析(尾电流分析)来分离和定量。当膜重新极化时,L型Ca通道迅速失活,而T型Ca通道相对缓慢失活。具有治疗作用的Ca通道拮抗剂对Ca通道的阻滞作用是电压依赖性的,因此,需要研究在扩展电压范围内两种通道类型的阻滞作用。尾电流分析允许这样做,并且被用来研究在相同条件下两种钙通道的阻滞。当结合在正常舒张电位下(约-90 mV)平衡时,胺碘酮,贝普地尔和肉桂利嗪比L型Ca通道更有效地阻断T型Ca通道。这些药物都不是T型Ca通道的选择性阻滞剂,因为当细胞几乎完全去极化时,L型Ca通道的阻滞作用会增强。尽管通常已报道过1,4-二氢吡啶对T型Ca通道的弱阻滞作用,但我们发现非洛地平以高亲和力阻滞了这些通道。当大多数T型Ca通道失活时,表观解离常数(KI)为13 nM。非洛地平还可以阻断GH3细胞(一种来自大鼠垂体前叶的细胞系)中的T型Ca通道,但KI = 700 nM。因此,不同细胞类型中的T型Ca通道在药理上是不同的。非洛地平可以比T型Ca通道更有效地阻断心房细胞中的L型Ca通道,但是L型Ca通道的阻断仅在去极化电位下有效。两种通道类型的传导阻滞在正常舒张膜电位下均相当。非洛地平和1,4-二氢吡啶异拉地平和(-)-202-791在阻断T型Ca通道方面具有大约等价的作用,但在阻断L型Ca通道方面的效力却大不相同。 T型Ca通道的阻滞可能解释了1,4-二氢吡啶的某些药理作用以及胺碘酮和贝普利的抗心律失常活性。

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