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自发性高血压大鼠脑动脉的结构和功能变化

Structural and functional changes in cerebral arteries from spontaneously hypertensive rats.

作者信息

Winquist R J, Bohr D F

出版信息

Hypertension. 1983 May-Jun;5(3):292-7. doi: 10.1161/01.hyp.5.3.292.

Abstract

Segments of basilar arteries from both spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) rats were studied in vitro utilizing a microvessel apparatus. At similar levels of passive force, basilar arteries from SHR developed less force in response to depolarizing solution (130 mM K+) compared to basilar arteries from WKY. Arterial segments from the hypertensive animals required less stretch to achieve each level of passive force. Basilar arteries from SHR but not WKY typically displayed both phasic and tonic spontaneous activity which was inhibited in a reversible manner by washing the tissues in physiological salt solution without added Ca++ (EGTA, 1 mM). There was a significant shift to the left in the EC50 of serotonin and a greater maximal response to this agonist in basilar arteries from SHR compared to those from WKY (p less than 0.01). The EC50 to Ca++ (added to a depolarizing solution) was shifted to the right in the arteries from SHR compared to the normotensive controls (p less than 0.05). There was no difference between the arteries from the two groups of animals in the relaxation response produced by isoproterenol. However, contracted basilar arteries from SHR were less sensitive to the relaxant effects of elevated Ca++ than contracted basilar arteries from WKY (p less than 0.05). These results demonstrate the existence of both structural and functional difference between cerebral vessels of SHR and WKY. Our findings also demonstrate the complex nature of the changes in calcium dynamics in blood vessels from hypertensive animals.

摘要

利用微血管装置对自发性高血压大鼠(SHR)和正常血压的Wistar-Kyoto(WKY)大鼠的基底动脉节段进行了体外研究。在相似的被动力水平下,与WKY大鼠的基底动脉相比,SHR大鼠的基底动脉对去极化溶液(130 mM K +)产生的力较小。高血压动物的动脉节段达到每个被动力水平所需的拉伸较小。SHR大鼠的基底动脉而非WKY大鼠的基底动脉通常表现出相性和紧张性自发活动,通过在不添加Ca ++(EGTA,1 mM)的生理盐溶液中冲洗组织,这种活动以可逆的方式受到抑制。与WKY大鼠相比,SHR大鼠基底动脉中5-羟色胺的EC50显著左移,并且对该激动剂的最大反应更大(p小于0.01)。与正常血压对照组相比,SHR大鼠动脉中对Ca ++(添加到去极化溶液中)的EC50右移(p小于0.05)。两组动物的动脉对异丙肾上腺素产生的舒张反应没有差异。然而,与WKY大鼠收缩的基底动脉相比,SHR大鼠收缩的基底动脉对升高的Ca ++的舒张作用不太敏感(p小于0.05)。这些结果表明SHR和WKY大鼠脑血管之间存在结构和功能差异。我们的研究结果还表明高血压动物血管中钙动力学变化的复杂性。

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