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正常和高血压大鼠尾动脉舒张的机制

Mechanics of caudal artery relaxation in control and hypertensive rats.

作者信息

Packer C S, Stephens N L

出版信息

Can J Physiol Pharmacol. 1985 Mar;63(3):209-13. doi: 10.1139/y85-039.

Abstract

Alterations of smooth muscle function can just as easily stem from mechanical alterations in its ability to relax as from alteration in contraction. Since a failure of arterial smooth muscle to relax may contribute to the development of hypertension, we felt it necessary to study the relaxation process in greater depth. The effect of load on the time course of relaxation of rat caudal artery smooth muscle was analyzed either by comparing afterloaded contractions against various loads or by imposing abrupt alterations in load. Unlike mammalian striated muscles in which relaxation was reported sensitive to loading conditions, relaxation in the smooth muscle of the rat caudal artery (n = 17) was found to be largely independent of loading conditions. This type of relaxation has been termed "inactivation-dependent" relaxation; it is typical of muscle tissue in which the calcium sequestering apparatus is poorly developed. Our results suggest that calcium resequestration, or some biochemical process downstream to it, is the rate-limiting step during relaxation in arterial smooth muscle and that this is not qualitatively different for hypertensive arterial smooth muscle. These analytic techniques were used in the study of relaxation of hypertensive vessels. Quantitative analysis of the relaxation curves showed that both isometric and isotonic relaxation time was prolonged in hypertensive arterial smooth muscle. Prolonged isotonic relaxation indicates that hypertensive arteries remain narrowed for prolonged periods compared with normotensive vessels. Such narrowed vessels may be a factor in the increased total peripheral resistance seen in genetic hypertension.

摘要

平滑肌功能的改变同样容易源于其舒张能力的机械性改变,也可能源于收缩功能的改变。由于动脉平滑肌舒张功能障碍可能导致高血压的发生,我们认为有必要更深入地研究舒张过程。通过比较不同负荷下的后负荷收缩情况或突然改变负荷,分析了负荷对大鼠尾动脉平滑肌舒张时间进程的影响。与报道的哺乳动物横纹肌舒张对负荷条件敏感不同,大鼠尾动脉平滑肌(n = 17)的舒张在很大程度上与负荷条件无关。这种类型的舒张被称为“失活依赖性”舒张;它是钙螯合装置发育不良的肌肉组织的典型特征。我们的结果表明,钙再摄取或其下游的一些生化过程是动脉平滑肌舒张过程中的限速步骤,并且这对于高血压动脉平滑肌来说在性质上并无不同。这些分析技术被用于研究高血压血管的舒张。对舒张曲线的定量分析表明,高血压动脉平滑肌的等长和等张舒张时间均延长。等张舒张时间延长表明与正常血压血管相比,高血压动脉在较长时间内保持狭窄。这种狭窄的血管可能是遗传性高血压中总外周阻力增加的一个因素。

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