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正常血压和高血压大鼠脑血管的肌源性特性

Myogenic properties of cerebral blood vessels from normotensive and hypertensive rats.

作者信息

Osol G, Halpern W

出版信息

Am J Physiol. 1985 Nov;249(5 Pt 2):H914-21. doi: 10.1152/ajpheart.1985.249.5.H914.

DOI:10.1152/ajpheart.1985.249.5.H914
PMID:4061668
Abstract

Myogenic properties of posterior cerebral arteries from normotensive and hypertensive rats were analyzed in vitro and quantified in terms of both pressure range limits and degree of myogenic activity. Spontaneously hypertensive rat (SHR) vessels were significantly narrower in a fully relaxed state, and both wall thickness and wall-to-radius ratios were increased. After equilibration in 1.6 mM calcium physiological saline solution a substantial tone developed which resulted in average diameter decreases of 34 and 37% in Wistar-Kyoto (WKY) and SHR, respectively; average lumen diameters were approximately 125 micron. Rapid changes in transmural pressure (delta P 10-25 mmHg/s) were applied and diameter responses measured continuously. Myogenic responses began 1-3 s after a change in transmural pressure, and arteries regained their initial diameters after a pressure step in about 2 min; a final, steady-state diameter was achieved in 4-5 min. Myogenic pressure ranges were 49-145 mmHg in WKY and 64-181 in SHR; when responses were segregated according to positive and negative pressure steps, more myogenic responses were observed at lower pressures for pressure step decreases when compared with pressure step increases. Thus myogenic ranges for increasing pressure steps were 71-151 (WKY) and 72-188 mmHg (SHR) and for decreasing steps 45-117 (WKY) and 57-148 mmHg (SHR). Myogenic responses in SHR were weaker than in WKY rats: the former maintained essentially a constant diameter over a wide range of pressures, whereas arteries from the latter decreased diameter with increasing pressures.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对正常血压和高血压大鼠大脑后动脉的肌源性特性进行了体外分析,并根据压力范围极限和肌源性活动程度进行了量化。自发性高血压大鼠(SHR)的血管在完全松弛状态下明显更窄,且壁厚和壁径比均增加。在1.6 mM钙生理盐水溶液中平衡后,出现了明显的张力,导致Wistar-Kyoto(WKY)和SHR的平均直径分别减小了34%和37%;平均管腔直径约为125微米。施加跨壁压力的快速变化(ΔP 10 - 25 mmHg/s)并连续测量直径响应。跨壁压力变化后1 - 3秒开始出现肌源性反应,压力阶跃后动脉在约2分钟内恢复其初始直径;在4 - 5分钟内达到最终的稳态直径。WKY的肌源性压力范围为49 - 145 mmHg,SHR为64 - 181 mmHg;当根据正压和负压阶跃对反应进行分类时,与压力阶跃增加相比,在压力阶跃降低时,在较低压力下观察到更多的肌源性反应。因此,压力阶跃增加时的肌源性范围为71 - 151(WKY)和72 - 188 mmHg(SHR),压力阶跃降低时为45 - 117(WKY)和57 - 148 mmHg(SHR)。SHR中的肌源性反应比WKY大鼠中的弱:前者在很宽的压力范围内基本保持恒定直径,而后者的动脉直径随压力增加而减小。(摘要截断于250字)

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