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首页> 外文期刊>Antioxidants and redox signalling >Direct sGC activation bypasses no scavenging reactions of intravascular free oxy-hemoglobin and limits vasoconstriction
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Direct sGC activation bypasses no scavenging reactions of intravascular free oxy-hemoglobin and limits vasoconstriction

机译:sGC直接激活绕过了血管内游离氧-血红蛋白的清除反应,并限制了血管收缩

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Aims: Hemoglobin-based oxygen carriers (HBOC) provide a potential alternative to red blood cell (RBC) transfusion. Their clinical application has been limited by adverse effects, in large part thought to be mediated by the intravascular scavenging of the vasodilator nitric oxide (NO) by cell-free plasma oxy-hemoglobin. Free hemoglobin may also cause endothelial dysfunction and platelet activation in hemolytic diseases and after transfusion of aged stored RBCs. The new soluble guanylate cyclase (sGC) stimulator Bay 41-8543 and sGC activator Bay 60-2770 directly modulate sGC, independent of NO bioavailability, providing a potential therapeutic mechanism to bypass hemoglobin-mediated NO inactivation. Results: Infusions of human hemoglobin solutions and the HBOC Oxyglobin into rats produced a severe hypertensive response, even at low plasma heme concentrations approaching 10 μM. These reactions were only observed for ferrous oxy-hemoglobin and not analogs that do not rapidly scavenge NO. Infusions of L-NG-Nitroarginine methyl ester (L-NAME), a competitive NO synthase inhibitor, after hemoglobin infusion did not produce additive vasoconstriction, suggesting that vasoconstriction is related to scavenging of vascular NO. Open-chest hemodynamic studies confirmed that hypertension occurred secondary to direct effects on increasing vascular resistance, with limited negative cardiac inotropic effects. Intravascular hemoglobin reduced the vasodilatory potency of sodium nitroprusside (SNP) and sildenafil, but had no effect on vasodilatation by direct NO-independent activation of sGC by BAY 41-8543 and BAY 60-2770. Innovation and Conclusion: These data suggest that both sGC stimulators and sGC activators could be used to restore cyclic guanosine monophosphate-dependent vasodilation in conditions where cell-free plasma hemoglobin is sufficient to inhibit endogenous NO signaling. Antioxid. Redox Signal. 19, 2232-2243.
机译:目的:基于血红蛋白的氧气载体(HBOC)提供了一种潜在的替代红细胞(RBC)输血的方法。它们的临床应用受到不良反应的限制,在很大程度上被认为是由无细胞血浆氧合血红蛋白对血管扩张剂一氧化氮(NO)的血管内清除所介导的。游离血红蛋白还可能在溶血性疾病中以及输注老化的红细胞后引起内皮功能障碍和血小板活化。新的可溶性鸟苷酸环化酶(sGC)刺激物Bay 41-8543和sGC激活物Bay 60-2770直接调节sGC,而与NO的生物利用度无关,从而提供了绕过血红蛋白介导的NO失活的潜在治疗机制。结果:即使在血浆血红素浓度接近10μM的情况下,向大鼠中注入人血红蛋白溶液和HBOC氧合蛋白也会产生严重的高血压反应。仅对亚铁氧合血红蛋白观察到了这些反应,未观察到不能迅速清除NO的类似物。输注血红蛋白后输注竞争性NO合酶抑制剂L-NG-硝基精氨酸甲酯(L-NAME)不会产生累加的血管收缩,提示血管收缩与清除血管NO有关。胸腔血流动力学研究证实,高血压是继发于增加血管阻力的直接作用,而对心脏的正性肌力作用有限。血管内血红蛋白降低了硝普钠(SNP)和西地那非的血管舒张能力,但BAY 41-8543和BAY 60-2770通过不依赖NO直接激活sGC而对血管舒张没有影响。创新和结论:这些数据表明,在无细胞血浆血红蛋白足以抑制内源性NO信号的条件下,sGC刺激物和sGC激活物均可用于恢复环状鸟苷一磷酸依赖性血管舒张。抗氧化。氧化还原信号。 19,2232-2243。

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