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过表达人内皮型一氧化氮合酶的小鼠的血管舒缩控制

Vasomotor control in mice overexpressing human endothelial nitric oxide synthase.

作者信息

van Deel Elza D, Merkus Daphne, van Haperen Rien, de Waard Monique C, de Crom Rini, Duncker Dirk J

机构信息

Experimental Cardiology, Thoraxcenter, Erasmus MC, University Medical Center Rotterdam, The Netherlands.

出版信息

Am J Physiol Heart Circ Physiol. 2007 Aug;293(2):H1144-53. doi: 10.1152/ajpheart.00773.2006. Epub 2007 May 11.

Abstract

Nitric oxide (NO) plays a key role in regulating vascular tone. Mice overexpressing endothelial NO synthase [eNOS-transgenic (Tg)] have a 20% lower systemic vascular resistance (SVR) than wild-type (WT) mice. However, because eNOS enzyme activity is 10 times higher in tissue homogenates from eNOS-Tg mice, this in vivo effect is relatively small. We hypothesized that the effect of eNOS overexpression is attenuated by alterations in NO signaling and/or altered contribution of other vasoregulatory pathways. In isoflurane-anesthetized open-chest mice, eNOS inhibition produced a significantly greater increase in SVR in eNOS-Tg mice compared with WT mice, consistent with increased NO synthesis. Vasodilation to sodium nitroprusside (SNP) was reduced, whereas the vasodilator responses to phosphodiesterase-5 blockade and 8-bromo-cGMP (8-Br-cGMP) were maintained in eNOS-Tg compared with WT mice, indicating blunted responsiveness of guanylyl cyclase to NO, which was supported by reduced guanylyl cyclase activity. There was no evidence of eNOS uncoupling, because scavenging of reactive oxygen species (ROS) produced even less vasodilation in eNOS-Tg mice, whereas after eNOS inhibition the vasodilator response to ROS scavenging was similar in WT and eNOS-Tg mice. Interestingly, inhibition of other modulators of vascular tone [including cyclooxygenase, cytochrome P-450 2C9, endothelin, adenosine, and Ca-activated K(+) channels] did not significantly affect SVR in either eNOS-Tg or WT mice, whereas the marked vasoconstrictor responses to ATP-sensitive K(+) and voltage-dependent K(+) channel blockade were similar in WT and eNOS-Tg mice. In conclusion, the vasodilator effects of eNOS overexpression are attenuated by a blunted NO responsiveness, likely at the level of guanylyl cyclase, without evidence of eNOS uncoupling or adaptations in other vasoregulatory pathways.

摘要

一氧化氮(NO)在调节血管张力中起关键作用。过表达内皮型一氧化氮合酶的小鼠[eNOS转基因(Tg)小鼠]的全身血管阻力(SVR)比野生型(WT)小鼠低20%。然而,由于来自eNOS-Tg小鼠的组织匀浆中eNOS酶活性高10倍,这种体内效应相对较小。我们推测,eNOS过表达的效应因NO信号改变和/或其他血管调节途径的贡献改变而减弱。在异氟烷麻醉的开胸小鼠中,与WT小鼠相比,eNOS抑制在eNOS-Tg小鼠中使SVR的增加显著更大,这与NO合成增加一致。与WT小鼠相比,eNOS-Tg小鼠对硝普钠(SNP)的血管舒张作用减弱,而对磷酸二酯酶-5阻断和8-溴-cGMP(8-Br-cGMP)的血管舒张反应保持不变,这表明鸟苷酸环化酶对NO的反应性减弱,这得到了鸟苷酸环化酶活性降低的支持。没有证据表明eNOS解偶联,因为活性氧(ROS)清除在eNOS-Tg小鼠中产生的血管舒张作用更小,而在eNOS抑制后,WT和eNOS-Tg小鼠对ROS清除的血管舒张反应相似。有趣的是,抑制其他血管张力调节剂[包括环氧化酶、细胞色素P-450 2C9、内皮素、腺苷和钙激活钾(+)通道]在eNOS-Tg或WT小鼠中均未显著影响SVR,而WT和eNOS-Tg小鼠对ATP敏感性钾(+)和电压依赖性钾(+)通道阻断的明显血管收缩反应相似。总之,eNOS过表达的血管舒张作用因NO反应性减弱而减弱,可能在鸟苷酸环化酶水平,没有证据表明eNOS解偶联或其他血管调节途径的适应性改变。

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