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Nitric oxide formation versus scavenging: the red blood cell balancing act

机译:一氧化氮的形成与清除:红细胞平衡作用

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摘要

Nitric oxide (NO) is a key modulator of vascular homeostasis controlling critical functions related to blood flow, respiration, cell death and proliferation, and protecting the vasculature from pro-inflammatory and coagulative stresses. Inhibition of NO formation, and/or diversion of NO away from its physiological signalling targets lead to dysregulated NO bioavailability, a hallmark of numerous vascular and pulmonary diseases. Current concepts suggest that the balance between NO formation and NO scavenging is critical in disease development, with the corollary being that redressing the balance offers a target for therapeutic intervention. Evidence presented over the last two decades has seen red blood cells (RBCs) and haemoglobin specifically emerge as prominent effectors in this paradigm. In this symposium review article, we discuss recent insights into the mechanisms by which RBCs may modulate the balance between NO-formation and inhibition. We discuss how these mechanisms may become dysfunctional to cause disease, highlight key questions that remain, and discuss the potential impact of these insights on therapeutic opportunities.
机译:一氧化氮(NO)是血管稳态的关键调节剂,可控制与血流,呼吸,细胞死亡和增殖有关的关键功能,并保护脉管系统免受促炎和凝血应激。 NO形成的抑制和/或NO从其生理信号转导靶的转移会导致NO生物利用度失调,这是许多血管和肺部疾病的标志。当前的概念表明,NO形成和NO清除之间的平衡在疾病发展中至关重要,其必然结果是纠正该平衡提供了治疗干预的目标。在过去的二十年中提供的证据表明,红血球(RBC)和血红蛋白在该范例中特别显着地成为了重要的效应子。在本专题讨论会的文章中,我们讨论了有关RBC调节NO形成与抑制之间平衡的机制的最新见解。我们讨论了这些机制如何导致疾病的功能失调,突出了仍然存在的关键问题,并讨论了这些见解对治疗机会的潜在影响。

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