Department of Medicine, Unit of Cardiology, Karolinska Institutet, Stockholm, Sweden.
Department of Physiology, Nutrition and Biomechanics, The Swedish School of Sport and Health Sciences, Stockholm, Sweden.
J Clin Invest. 2023 Sep 1;133(17):e167693. doi: 10.1172/JCI167693.
Red blood cells (RBCs) mediate cardioprotection via nitric oxide-like bioactivity, but the signaling and the identity of any mediator released by the RBCs remains unknown. We investigated whether RBCs exposed to hypoxia release a cardioprotective mediator and explored the nature of this mediator. Perfusion of isolated hearts subjected to ischemia-reperfusion with extracellular supernatant from mouse RBCs exposed to hypoxia resulted in improved postischemic cardiac function and reduced infarct size. Hypoxia increased extracellular export of cyclic guanosine monophosphate (cGMP) from mouse RBCs, and exogenous cGMP mimicked the cardioprotection induced by the supernatant. The protection induced by hypoxic RBCs was dependent on RBC-soluble guanylate cyclase and cGMP transport and was sensitive to phosphodiesterase 5 and activated cardiomyocyte protein kinase G. Oral administration of nitrate to mice to increase nitric oxide bioactivity further enhanced the cardioprotective effect of hypoxic RBCs. In a placebo-controlled clinical trial, a clear cardioprotective, soluble guanylate cyclase-dependent effect was induced by RBCs collected from patients randomized to 5 weeks nitrate-rich diet. It is concluded that RBCs generate and export cGMP as a response to hypoxia, mediating cardioprotection via a paracrine effect. This effect can be further augmented by a simple dietary intervention, suggesting preventive and therapeutic opportunities in ischemic heart disease.
红细胞 (RBC) 通过类似一氧化氮的生物活性介导心脏保护作用,但 RBC 释放的信号和任何介导物质的身份仍不清楚。我们研究了缺氧的 RBC 是否释放一种心脏保护介质,并探索了这种介质的性质。用缺氧暴露的小鼠 RBC 的细胞外上清液灌注经历缺血再灌注的分离心脏,导致缺血后心脏功能改善和梗死面积减少。缺氧增加了来自小鼠 RBC 的细胞外环磷酸鸟苷 (cGMP) 的输出,外源性 cGMP 模拟了上清液诱导的心脏保护作用。缺氧 RBC 诱导的保护作用依赖于 RBC 可溶性鸟苷酸环化酶和 cGMP 转运,对磷酸二酯酶 5 和激活的心肌蛋白激酶 G 敏感。向小鼠口服硝酸盐以增加一氧化氮生物活性,进一步增强了缺氧 RBC 的心脏保护作用。在一项安慰剂对照的临床试验中,从随机接受 5 周富含硝酸盐饮食的患者中收集的 RBC 诱导了明显的心脏保护作用,这依赖于可溶性鸟苷酸环化酶。结论是,RBC 作为对缺氧的反应产生和输出 cGMP,通过旁分泌作用介导心脏保护作用。这种作用可以通过简单的饮食干预进一步增强,这表明在缺血性心脏病中有预防和治疗的机会。