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首页> 外文期刊>Journal of Medicinal Chemistry >Acyloxy nitroso compounds as nitroxyl (HNO) donors: Kinetics, reactions with thiols, and vasodilation properties
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Acyloxy nitroso compounds as nitroxyl (HNO) donors: Kinetics, reactions with thiols, and vasodilation properties

机译:亚硝酰(HNO)供体的酰氧基亚硝基化合物:动力学,与硫醇的反应和血管舒张特性

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摘要

Acyloxy nitroso compounds hydrolyze to nitroxyl (HNO), a nitrogen monoxide with distinct chemistry and biology. Ultraviolet-visible spectroscopy and mass spectrometry show hydrolysis rate depends on pH and ester group structure with the observed rate being trifluoroacetate (3) > acetate (1) > pivalate (2). Under all conditions, 3 rapidly hydrolyzes to HNO. A combination of spectroscopic, kinetic, and product studies show that addition of thiols increases the decomposition rate of 1 and 2, leading to hydrolysis and HNO. Under conditions that favor thiolates, the thiolate directly reacts with the nitroso group, yielding oximes without HNO formation. Biologically, 3 behaves like Angeli's salt, demonstrating thiol-sensitive nitric oxide-mediated soluble guanylate cyclase-dependent vasorelaxation, suggesting HNO-mediated vasorelaxation. The slow HNO-donor 1 demonstrates weak thiol-insensitive vasorelaxation, indicating HNO release kinetics determine HNO bioavailability and activity. These results show that acyloxy nitroso compounds represent new HNO donors capable of vasorelaxation depending on HNO release kinetics.
机译:酰氧基亚硝基化合物水解为硝化氢(HNO),一氧化氮具有独特的化学和生物学性质。紫外可见光谱法和质谱法显示水解速率取决于pH和酯基结构,观察到的速率为三氟乙酸盐(3)>乙酸盐(1)>新戊酸酯(2)。在所有条件下,3都会迅速水解为HNO。光谱,动力学和产物研究的组合表明,添加硫醇会增加1和2的分解速率,从而导致水解和HNO。在有利于硫醇盐的条件下,硫醇盐直接与亚硝基反应,生成肟而没有形成HNO。从生物学上讲,3的行为类似于安吉利的盐,表明硫醇敏感性一氧化氮介导的可溶性鸟苷酸环化酶依赖性血管舒张,提示HNO介导的血管舒张。缓慢的HNO供体1表现出弱的硫醇不敏感血管舒张作用,表明HNO释放动力学决定HNO生物利用度和活性。这些结果表明,酰氧基亚硝基化合物代表了能够根据HNO释放动力学进行血管舒张的新型HNO供体。

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