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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Methods using stable isotopes to measure nitric oxide (NO) synthesis in the l-arginine/NO pathway in health and disease
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Methods using stable isotopes to measure nitric oxide (NO) synthesis in the l-arginine/NO pathway in health and disease

机译:在健康和疾病中使用稳定同位素测量l-精氨酸/ NO途径中一氧化氮(NO)合成的方法

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Nitric oxide (NO) is an important gaseous radical involved in many physiological processes. It is produced from the amino acid l-arginine by the action of nitric oxide synthases (NOS) in what is called the l-arginine/NO pathway. Tracking its metabolic fate in biological fluids is of particular interest as it may indicate how the human body responds in health and disease. However, due to its short life span (a few seconds) it is very difficult to accurately monitor any up- or down-regulation in body fluids in vivo. As a consequence, methods have been developed based on the measurement of the NO-derived products nitrite and nitrate or on the substrate of NO, l-arginine and its simultaneously generated product, l-citrulline. Considering only a fraction of the endogenous l-arginine pool is used for the synthesis of NO, NO-production cannot be estimated by measuring changes in the concentrations of l-arginine and/or l-citrulline alone. Instead, to estimate NO-related changes in the l-arginine and/or l-citrulline pools a form of tagging these metabolites for the NOS-mediated reaction is required. The application of stable isotopes is an elegant way to track NOS-mediated changes. The present paper is focussed on the application of various combinations of chromatography and mass spectrometry to measure isotopic enrichments resulting from the conversion of l-arginine to NO and l-citrulline in a one-to-one stoichiometry. In addition, the various aspects and principles involved in the application of stable isotopes in metabolic studies in general and the study of the activity of NOS in particular are discussed.
机译:一氧化氮(NO)是参与许多生理过程的重要气体自由基。它是通过一氧化氮合酶(NOS)在所谓的1-精氨酸/ NO途径中由氨基酸1-精氨酸产生的。追踪其在生物液体中的代谢命运特别重要,因为它可能表明人体在健康和疾病方面的反应。但是,由于其寿命短(几秒钟),因此很难准确地监测体内体液的任何上调或下调。结果,已经基于对源自NO的产物亚硝酸盐和硝酸盐或基于NO,1-精氨酸及其同时生成的产物1-瓜氨酸的底物的测量开发了方法。考虑到仅一部分内源性1-精氨酸用于NO的合成,不能通过仅测量1-精氨酸和/或1-瓜氨酸的浓度的变化来估计NO的产生。相反,为了估计1-精氨酸和/或1-瓜氨酸池中NO相关的变化,需要一种标记这些代谢物的形式用于NOS介导的反应。稳定同位素的应用是跟踪NOS介导的变化的一种优雅方法。本文的重点是色谱和质谱的各种组合的应用,以测量由一对一化学计量法中的L-精氨酸向NO和L-瓜氨酸的转化而产生的同位素富集。此外,还讨论了在代谢研究中应用稳定同位素的各个方面和原理,特别是对NOS活性的研究。

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