Satoh S, Kreutz R, Wilm C, Ganten D, Pfitzer G
II. Physiologisches Institut, Universität Heidelberg, Germany.
J Clin Invest. 1994 Oct;94(4):1397-403. doi: 10.1172/JCI117475.
The Ca2+ responsiveness of vascular smooth muscle myofilaments is not unique: it is increased during neuro-humoral activation and decreased during beta-adrenergic stimulation. In this study we tested whether an augmented Ca2+ responsiveness of smooth muscle myofilaments may contribute to the increased coronary tone observed in hypertension using beta-escin-permeabilized coronary arteries from 3-mo-old stroke-prone spontaneously hypertensive rats (SHRSP) and their age matched normotensive reference strain (WKY rats). In intact coronary arteries, the response to 5-hydroxytryptamine (5-HT) but not to KCl was larger in SHRSP than in WKY rats. In beta-escin permeabilized coronary arteries in which the receptor effector coupling is still intact, 5-HT enhanced force at constant submaximal (Ca2+) (pCa 6.38) to a greater extent in SHRSP. The Ca2+ sensitizing effect of 5-HT was mimicked by GTP gamma S (0.01-10 microM); again this effect was larger in SHRSP. In the absence of 5-HT or GTP gamma S the Ca2+ force relation was similar in both groups. Forskolin induced relaxation at constant submaximal (Ca2+). This desensitizing effect was smaller in SHRSP than in WKY rats. In conclusion, this study shows that intracellular signalling pathways involved in modulating the Ca2+ responsiveness of coronary smooth muscle myofilaments are altered in the genetically hypertensive animals favoring a hypercontractile state in the coronary circulation.
在神经体液激活期间会增强,而在β-肾上腺素能刺激期间会降低。在本研究中,我们使用来自3月龄易患中风的自发性高血压大鼠(SHRSP)及其年龄匹配的正常血压对照品系(WKY大鼠)的β-七叶皂苷渗透的冠状动脉,测试了平滑肌肌丝增强的钙离子反应性是否可能导致高血压中观察到的冠状动脉张力增加。在完整的冠状动脉中,SHRSP对5-羟色胺(5-HT)而非氯化钾的反应比WKY大鼠更大。在受体效应器偶联仍完整的β-七叶皂苷渗透的冠状动脉中,5-HT在恒定的次最大(钙离子)(pCa 6.38)时增强力量的程度在SHRSP中更大。5-HT的钙离子增敏作用被GTPγS(0.01 - 10 microM)模拟;同样,这种作用在SHRSP中更大。在没有5-HT或GTPγS的情况下,两组的钙离子-力量关系相似。福斯高林在恒定的次最大(钙离子)时诱导舒张。这种脱敏作用在SHRSP中比在WKY大鼠中更小。总之,本研究表明,在遗传性高血压动物中,参与调节冠状动脉平滑肌肌丝钙离子反应性的细胞内信号通路发生了改变,有利于冠状动脉循环中的高收缩状态。