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Cardiovascular and pharmacological implications of haem-deficient NO-unresponsive soluble guanylate cyclase knock-in mice

机译:血红素缺乏NO无反应的可溶性鸟苷酸环化酶敲除小鼠的心血管和药理学意义

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摘要

Oxidative stress, a central mediator of cardiovascular disease, results in loss of the prosthetic haem group of soluble guanylate cyclase (sGC), preventing its activation by nitric oxide (NO). Here we introduce Apo-sGC mice expressing haem-free sGC. Apo-sGC mice are viable and develop hypertension. The haemodynamic effects of NO are abolished, but those of the sGC activator cinaciguat are enhanced in apo-sGC mice, suggesting that the effects of NO on smooth muscle relaxation, blood pressure regulation and inhibition of platelet aggregation require sGC activation by NO. Tumour necrosis factor (TNF)-induced hypotension and mortality are preserved in apo-sGC mice, indicating that pathways other than sGC signalling mediate the cardiovascular collapse in shock. Apo-sGC mice allow for differentiation between sGC-dependent and -independent NO effects and between haem-dependent and -independent sGC effects. Apo-sGC mice represent a unique experimental platform to study the in vivo consequences of sGC oxidation and the therapeutic potential of sGC activators.
机译:氧化应激是心血管疾病的主要介质,会导致可溶性鸟苷酸环化酶(sGC)的人工血红素基团丢失,从而阻止其被一氧化氮(NO)激活。在这里,我们介绍表达无血红素sGC的Apo-sGC小鼠。 Apo-sGC小鼠是可行的,并会发展为高血压。 NO的血流动力学作用已被取消,但apo-sGC小鼠中sGC激活剂西那西瓜的血流动力学作用得到增强,这表明NO对平滑肌松弛,血压调节和血小板聚集的抑制作用需要NO激活sGC。在apo-sGC小鼠中,肿瘤坏死因子(TNF)引起的低血压和死亡率得以保留,这表明除sGC信号传导以外的其他途径介导了休克中的心血管衰竭。 Apo-sGC小鼠可以区分sGC依赖性和非依赖性NO效应,以及血红素依赖性和非依赖性sGC效应。 Apo-sGC小鼠代表了一个独特的实验平台,用于研究sGC氧化的体内后果以及sGC激活剂的治疗潜力。

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