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用于检测一氧化氮生物活性的分析技术。

Analytical techniques for assaying nitric oxide bioactivity.

作者信息

Jiang Hong, Parthasarathy Deepa, Torregrossa Ashley C, Mian Asad, Bryan Nathan S

机构信息

Texas Therapeutics Institute, University of Texas Health Science Center at Houston, USA.

出版信息

J Vis Exp. 2012 Jun 18(64):e3722. doi: 10.3791/3722.

Abstract

Nitric oxide (NO) is a diatomic free radical that is extremely short lived in biological systems (less than 1 second in circulating blood). NO may be considered one of the most important signaling molecules produced in our body, regulating essential functions including but not limited to regulation of blood pressure, immune response and neural communication. Therefore its accurate detection and quantification in biological matrices is critical to understanding the role of NO in health and disease. With such a short physiological half life of NO, alternative strategies for the detection of reaction products of NO biochemistry have been developed. The quantification of relevant NO metabolites in multiple biological compartments provides valuable information with regards to in vivo NO production, bioavailability and metabolism. Simply sampling a single compartment such as blood or plasma may not always provide an accurate assessment of whole body NO status, particularly in tissues. The ability to compare blood with select tissues in experimental animals will help bridge the gap between basic science and clinical medicine as far as diagnostic and prognostic utility of NO biomarkers in health and disease. Therefore, extrapolation of plasma or blood NO status to specific tissues of interest is no longer a valid approach. As a result, methods continue to be developed and validated which allow the detection and quantification of NO and NO-related products/metabolites in multiple compartments of experimental animals in vivo. The established paradigm of NO biochemistry from production by NO synthases to activation of soluble guanylyl cyclase (sGC) to eventual oxidation to nitrite (NO(2)(-)) and nitrate (NO(3)(-)) may only represent part of NO's effects in vivo. The interaction of NO and NO-derived metabolites with protein thiols, secondary amines, and metals to form S-nitrosothiols (RSNOs), N-nitrosamines (RNNOs), and nitrosyl-heme respectively represent cGMP-independent effects of NO and are likely just as important physiologically as activation of sGC by NO. A true understanding of NO in physiology is derived from in vivo experiments sampling multiple compartments simultaneously. Nitric oxide (NO) methodology is a complex and often confusing science and the focus of many debates and discussion concerning NO biochemistry. The elucidation of new mechanisms and signaling pathways involving NO hinges on our ability to specifically, selectively and sensitively detect and quantify NO and all relevant NO products and metabolites in complex biological matrices. Here, we present a method for the rapid and sensitive analysis of nitrite and nitrate by HPLC as well as detection of free NO in biological samples using in vitro ozone based chemiluminescence with chemical derivitazation to determine molecular source of NO as well as ex vivo with organ bath myography.

摘要

一氧化氮(NO)是一种双原子自由基,在生物系统中寿命极短(在循环血液中不到1秒)。NO可被认为是人体产生的最重要的信号分子之一,调节着包括但不限于血压调节、免疫反应和神经通讯等基本功能。因此,在生物基质中准确检测和定量NO对于理解NO在健康和疾病中的作用至关重要。由于NO的生理半衰期很短,人们已经开发出检测NO生物化学反应产物的替代策略。对多个生物区室中相关NO代谢物的定量分析提供了有关体内NO产生、生物利用度和代谢的有价值信息。仅对单个区室(如血液或血浆)进行采样可能并不总能准确评估全身的NO状态,尤其是在组织中。在实验动物中比较血液和特定组织的能力将有助于弥合基础科学与临床医学之间在NO生物标志物在健康和疾病中的诊断和预后效用方面的差距。因此,将血浆或血液中的NO状态外推到感兴趣的特定组织不再是一种有效的方法。结果,人们继续开发和验证各种方法,以便在体内对实验动物的多个区室中的NO以及与NO相关的产物/代谢物进行检测和定量。从一氧化氮合酶产生NO到激活可溶性鸟苷酸环化酶(sGC),再到最终氧化为亚硝酸盐(NO₂⁻)和硝酸盐(NO₃⁻),已确立的NO生物化学范式可能仅代表了NO在体内作用的一部分。NO及其衍生代谢物与蛋白质硫醇、仲胺和金属相互作用分别形成S-亚硝基硫醇(RSNOs)、N-亚硝胺(RNNOs)和亚硝酰血红素,代表了NO不依赖于环磷酸鸟苷(cGMP)的作用,在生理上可能与NO激活sGC同样重要。对生理学中NO的真正理解源自同时对多个区室进行采样的体内实验。一氧化氮(NO)方法学是一门复杂且常常令人困惑的科学,也是许多关于NO生物化学的辩论和讨论的焦点。阐明涉及NO的新机制和信号通路取决于我们在复杂生物基质中特异性、选择性和灵敏地检测和定量NO以及所有相关NO产物和代谢物的能力。在此,我们介绍一种通过高效液相色谱法(HPLC)快速灵敏分析亚硝酸盐和硝酸盐的方法,以及使用基于体外臭氧的化学发光法并结合化学衍生化来确定NO分子来源,同时通过离体器官浴肌动描记法检测生物样品中游离NO的方法。

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