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钙通道阻滞剂的基本细胞作用机制。

Basic cellular mechanisms of action of the calcium-channel blockers.

作者信息

Katz A M

出版信息

Am J Cardiol. 1985 Jan 25;55(3):2B-9B. doi: 10.1016/0002-9149(85)90607-1.

Abstract

Calcium-channel blockers inhibit the entry of calcium ion (Ca++) into excitable cells, including those of coronary and peripheral arterial smooth muscle and the heart. The ability of these drugs to block Ca++ entry into cells inhibits the essential role of this cation as an intracellular messenger. The effects of calcium-channel blockers on the heart include a negative inotropic effect on the working myocardial cells of the atria and ventricles. Because the up-stroke of the action potential in these regions of the heart, and in the rapidly conducting cells of the His-Purkinje system, is due to a fast, sodium-dependent ionic current, calcium-channel blockers do not inhibit conduction in these cells. In the sinoatrial and atrioventricular (AV) nodes, on the other hand, depolarization is due primarily to a Ca++-dependent slow inward current; as a result, the calcium-channel blockers inhibit the sinus pacemaker and AV conduction. Because our knowledge of the molecular structure of the calcium channels in the heart and smooth muscle is rudimentary, little is known of the molecular mechanisms by which calcium-channel blockers inhibit Ca++ entry across the sarcolemmal membranes in these cells. It is apparent, however, that the actions of different members of this class of drugs on the sarcolemma are not the same. Indirect evidence indicates that some members of this class of drugs may interact with hydrophobic regions of the proteins that make up, or regulate, the calcium channels in the plasma membrane.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

钙通道阻滞剂可抑制钙离子(Ca++)进入可兴奋细胞,包括冠状动脉和外周动脉平滑肌以及心脏的细胞。这些药物阻断Ca++进入细胞的能力抑制了这种阳离子作为细胞内信使的重要作用。钙通道阻滞剂对心脏的作用包括对心房和心室工作心肌细胞的负性肌力作用。由于心脏这些区域以及希氏-浦肯野系统快速传导细胞动作电位的上升支是由快速的、依赖钠的离子电流引起的,因此钙通道阻滞剂不会抑制这些细胞的传导。另一方面,在窦房结和房室(AV)结,去极化主要是由于依赖Ca++的缓慢内向电流;因此,钙通道阻滞剂会抑制窦性起搏器和房室传导。由于我们对心脏和平滑肌中钙通道分子结构的了解还很初步,对于钙通道阻滞剂抑制Ca++通过这些细胞肌膜进入细胞的分子机制知之甚少。然而,很明显,这类药物的不同成员对肌膜的作用并不相同。间接证据表明,这类药物的一些成员可能与构成或调节质膜钙通道的蛋白质的疏水区域相互作用。(摘要截选至250词)

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