Konter Joerg, El-Din Ali Ahmed Hassan Abuo-Rahma Gamal, El-Emam Ali, Lehmann Jochen
Department of Pharmaceutical Medicinal Chemistry, Institute of Pharmacy, Jena, Germany.
Methods Enzymol. 2005;396:17-26. doi: 10.1016/S0076-6879(05)96002-3.
N-bound diazen-1-ium-1,2-diolates, also known as NONOates or "solid nitric oxide" (NO), have become popular tools in biomedical research since the discovery of NO as a very important multifunctional endogenous messenger. In contrast to other well-known NO donors, NONOates are capable of releasing NO spontaneously in aqueous media. The rate of NO liberation is determined by the molecular structure of the diazeniumdiolate and the pH value and temperature of the medium in which it is dissolved. In this chapter, we introduce a novel device (the NOtizer) for simple and convenient preparation of diazeniumdiolates. It not only enables the user to provide all the necessary conditions for reliable synthesis such as anaerobic conditions and high pressure of NO gas in the translucent reaction chamber but also includes software that records the course of pressure and temperature online and calculates the consumption of NO by the reaction. The plot of the pressure decay shows the user completion of the reaction and allows the user to study kinetic characteristics from synthesis of different NONOates. A brief guide for the synthesis of PYRRO/NO, DEA/NO, PAPA/NO, SPER/NO, and DETA/NO, which are the most widely applied diazeniumdiolates, is presented in this chapter. Finally, characteristics of NONOates that need to be considered concerning analytics and storage are mentioned.
N-结合重氮-1,2-二醇盐,也称为NONOates或“固态一氧化氮”(NO),自一氧化氮作为一种非常重要的多功能内源性信使被发现以来,已成为生物医学研究中常用的工具。与其他知名的NO供体不同,NONOates能够在水性介质中自发释放NO。NO的释放速率由重氮二醇盐的分子结构以及其溶解介质的pH值和温度决定。在本章中,我们介绍了一种用于简单便捷制备重氮二醇盐的新型装置(NOtizer)。它不仅能让用户在半透明反应室中提供可靠合成所需的所有必要条件,如厌氧条件和高浓度的NO气体压力,还包括可在线记录压力和温度变化过程并计算反应中NO消耗量的软件。压力衰减图向用户显示反应完成情况,并允许用户研究不同NONOates合成过程中的动力学特征。本章还简要介绍了最广泛应用的重氮二醇盐PYRRO/NO、DEA/NO、PAPA/NO、SPER/NO和DETA/NO的合成方法。最后,提到了在分析和储存方面需要考虑的NONOates的特性。