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钠钙交换在血管平滑肌张力调节中的作用。

Role of Na(+)-Ca2+ exchange in the regulation of vascular smooth muscle tension.

作者信息

Motley E D, Paul R J, Matlib M A

机构信息

Department of Pharmacology, University of Cincinnati College of Medicine, Ohio 45267.

出版信息

Am J Physiol. 1993 Apr;264(4 Pt 2):H1028-40. doi: 10.1152/ajpheart.1993.264.4.H1028.

Abstract

To determine the role of the Na(+)-Ca2+ exchange systems of nerve terminal and sarcolemmal membrane on development of tension in rabbit aortic rings, internal or external Na+ concentration was changed with either ouabain or Na(+)-free solution, respectively. Ouabain produced a verapamil-insensitive but external Na(+)- and Ca(2+)-dependent biphasic tension with distinct lag periods both of which were shortened by depolarization with KCl. The first phase of tension was inhibited by prazosin, phentolamine, in vitro neurolysis with 6-hydroxydopamine and in vivo treatment with reserpine to deplete catecholamines in nerve terminals. Therefore, first phase of tension was attributed to catecholamines released from nerve terminals induced by increased axoplasmic Ca2+ concentration mediated by the neural Na(+)-Ca2+ exchanger due to the increased axoplasmic Na+ concentration resulting from inhibition of the Na(+)-Ka+ pump with ouabain. In the absence of the first phase of tension, the second phase of tension was enhanced by caffeine, presumably by preventing sequestration of the sarcolemmal Na(+)-Ca2+ exchanger-mediated increase in cytosolic Ca2+ concentration in vascular smooth muscle cells. The prazosin-insensitive tension was dependent on the external Na+ concentration and was also attributed to the sarcolemmal Na(+)-Ca2+ exchanger of vascular smooth muscle. The magnitude of the increase in tension with ouabain or Na(+)-free solution attributed to the sarcolemmal Na(+)-Ca2+ exchanger of vascular smooth muscle was larger than that mediated by the exchanger of the nerve terminal. It was concluded that the Na(+)-Ca2+ exchange systems of both the nerve terminal and the vascular smooth muscle sarcolemma contribute to the development of tension by different mechanisms and to different extents when internal or external Na+ concentration was changed.

摘要

为了确定神经末梢和肌膜的钠钙交换系统在兔主动脉环张力发展中的作用,分别用哇巴因或无钠溶液改变细胞内或细胞外的钠浓度。哇巴因产生一种对维拉帕米不敏感但依赖于细胞外钠和钙的双相张力,且有明显的延迟期,这两个延迟期都可被氯化钾去极化所缩短。张力的第一相受到哌唑嗪、酚妥拉明、用6-羟基多巴胺进行体外神经溶解以及用利血平进行体内处理以耗尽神经末梢中的儿茶酚胺的抑制。因此,张力的第一相归因于神经末梢释放的儿茶酚胺,这是由神经钠钙交换器介导的轴浆钙浓度增加所诱导的,而轴浆钙浓度增加是由于哇巴因抑制钠钾泵导致轴浆钠浓度升高所致。在没有张力第一相的情况下,张力的第二相被咖啡因增强,可能是因为咖啡因阻止了肌膜钠钙交换器介导的血管平滑肌细胞胞质钙浓度升高的螯合作用。哌唑嗪不敏感的张力依赖于细胞外钠浓度,也归因于血管平滑肌的肌膜钠钙交换器。由血管平滑肌的肌膜钠钙交换器引起的哇巴因或无钠溶液所致的张力增加幅度大于由神经末梢交换器介导的幅度。得出的结论是,当细胞内或细胞外钠浓度改变时,神经末梢和血管平滑肌肌膜的钠钙交换系统通过不同机制、在不同程度上对张力的发展起作用。

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