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西拉普利和盐对 Dahl 大鼠动脉平滑肌中 Ca2+ 外排的影响。

Effect of cilazapril and salt on Ca2+ extrusion in arterial smooth muscle of Dahl rats.

作者信息

Ashida T, Yoshimi H, Kawano Y, Matsuoka H, Omae T

机构信息

Division of Cardiovascular Diseases, The Institute for Adult Diseases, Asahi Life Foundation, Shinjuku, Tokyo, Japan.

出版信息

Am J Hypertens. 1997 May;10(5 Pt 2):107S-111S.

PMID:9160792
Abstract

We examined effects of salt and cilazapril on the Ca pump and Na/Ca exchange system in arterial smooth muscle of Dahl salt-sensitive (DS) rats. Twenty-four DS rats were assigned to four groups. H and H+ rats were fed a high salt diet; L- and L+ rats were fed a low salt diet. H+ and L+ were administered cilazapril. Aortic rings were superfused with physiologic saline and isometric tension was measured. Relaxation of low Na+-induced contraction was promoted by the removal of external Ca. Cilazapril significantly decreased blood pressure in both the high and low salt diet groups. The inhibition of renin-angiotensin system by cilazapril showed that Ca extrusion by ATP-driven Ca pump was decreased by salt loading, and that Ca extrusion by Na/Ca exchange was increased by salt loading. There was a negative correlation between Ca extrusion by Ca pump and blood pressure, and a positive correlation between Ca extrusion by Na/Ca exchange and blood pressure. These results suggest that the decrease of Ca2+ extrusion by ATP-driven Ca pump resulting from a high salt diet might lead to an elevation in the concentration of cellular Ca2+ and contribute to the mechanism of hypertension in DS rats, and that Ca2+ extrusion by the Na/Ca exchange might be increased in compensation for an increase in cellular Ca2+ concentration on the high salt diet.

摘要

我们研究了盐和西拉普利对 Dahl 盐敏感(DS)大鼠动脉平滑肌中钙泵和钠钙交换系统的影响。将 24 只 DS 大鼠分为四组。H 组和 H+组大鼠喂食高盐饮食;L 组和 L+组大鼠喂食低盐饮食。H+组和 L+组给予西拉普利。用生理盐水灌注主动脉环并测量等长张力。去除细胞外钙可促进低钠诱导收缩的舒张。西拉普利在高盐和低盐饮食组中均显著降低血压。西拉普利对肾素 - 血管紧张素系统的抑制作用表明,盐负荷会降低 ATP 驱动的钙泵的钙外排,而盐负荷会增加钠钙交换的钙外排。钙泵的钙外排与血压呈负相关,钠钙交换的钙外排与血压呈正相关。这些结果表明,高盐饮食导致的 ATP 驱动的钙泵的钙 2+外排减少可能导致细胞内钙 2+浓度升高,并参与 DS 大鼠高血压的发病机制,并且钠钙交换的钙 2+外排可能会增加,以补偿高盐饮食时细胞内钙 2+浓度的增加。

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