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Reversibility of heme-nitric oxide reactions for use in an inhaled nitric oxide sensor

机译:用于吸入一氧化氮传感器的血红一氧化氮反应的可逆性

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Abstract: Nitric Oxide is a simple gaseous compound which serves as a regulatory molecule in a number of physiological processes. Due to its biological role as a potent local vasodilator,there has been widespread interest in the therapeutic use of gaseous nitric oxide a selective pulmonary vasodilator. Our goal is the development of a sensor for the direct and continuous measurement of inhaled nitric oxide concentrations. This study evaluated the reversibility of potential sensing compounds upon reaction with nitric oxide. Previously, absorption spectroscopy was used to study the sensitivity of the Fe II, Fe III and oxygenated forms of three biologically active hemes known to rapidly react with NO: hemoglobin, myoglobin, and cytochrome-c. This study focused on the photo-reversibility of the hem's reaction with nitric oxide. Hemoglobin, myoglobin and cytochrome-c in the Fe III state reversibly reacted with nitric oxide. Hemoglobin and myoglobin in the Fe II state non-reversibly reacted with nitric oxide to form an unstable product. Cytochrome-c (FeII) does not react with nitric oxide. The oxy forms of hemoglobin and myoglobin react with nitric oxide to form their respective met forms, unreversible via photolysis. For all reversible reactions, photolysis was gradual and complete within five minutes. !12
机译:摘要:一氧化氮是一种简单的气态化合物,在许多生理过程中均起调节分子的作用。由于其作为有效的局部血管扩张剂的生物学作用,人们对气态一氧化氮(选择性肺血管扩张剂)的治疗用途已引起广泛关注。我们的目标是开发一种用于直接和连续测量吸入一氧化氮浓度的传感器。这项研究评估了与一氧化氮反应后潜在的传感化合物的可逆性。以前,吸收光谱法被用来研究Fe II,Fe III和氧化形式的三种生物活性血红素的敏感性,这些血红素已知会与NO快速反应:血红蛋白,肌红蛋白和细胞色素c。这项研究的重点是下摆与一氧化氮反应的光可逆性。 Fe III状态的血红蛋白,肌红蛋白和细胞色素c与一氧化氮可逆反应。 Fe II状态的血红蛋白和肌红蛋白不可逆地与一氧化氮反应形成不稳定的产物。细胞色素-c(FeII)不与一氧化氮反应。血红蛋白和肌红蛋白的氧形式与一氧化氮反应形成各自的二价形式,这些形式通过光解是不可逆的。对于所有可逆反应,光解都是在5分钟内逐步完成的。 !12

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