Institute of Nuclear Chemistry and Technology, Centre for Radiobiology and Biological Dosimetry, 16 Dorodna Str., 03-195, Warsaw, Poland.
Dalton Trans. 2011 Sep 7;40(33):8273-89. doi: 10.1039/c0dt01244k. Epub 2011 Jun 6.
Nitrosyl complexes of iron are formed in living species in the presence of nitric oxide. They are considered a form in which NO can be stored and stabilized within a living cell. Upon entering a topic in bioinorganic chemistry the researcher faces a wide spectrum of issues concerning synthetic methods, the structure and chemical properties of the complex on the one hand, and its biological implications on the other. The aim of this review is to present the newest knowledge on nitrosyl iron complexes, summarizing the issues that are important for understanding the nature of nitrosyl iron complexes, their possible interactions, behavior in vitro and in vivo, handling of the preparations etc. in response to the growing interest in these compounds. Herein we focus mostly on the dinitrosyl iron complexes (DNICs) due to their prevailing occurrence in NO-treated biological samples. This article reviews recent knowledge on the structure, chemical properties and biological action of DNICs and some mononitrosyls of heme proteins. Synthetic methods are also briefly reviewed.
铁的亚硝酰配合物在一氧化氮存在的情况下在活体物种中形成。它们被认为是一种可以在活细胞内储存和稳定 NO 的形式。当研究人员进入生物无机化学领域时,他们会面临广泛的问题,涉及合成方法、配合物的结构和化学性质,以及另一方面的生物学意义。本文旨在介绍亚硝酰基铁配合物的最新知识,总结理解亚硝酰基铁配合物的本质、它们的可能相互作用、体外和体内行为、制剂处理等方面的重要问题,以回应对这些化合物的日益增长的兴趣。在此,我们主要关注二亚硝酰基铁配合物(DNICs),因为它们在经一氧化氮处理的生物样本中普遍存在。本文综述了近年来关于 DNICs 和一些血红素蛋白的单亚硝酰基的结构、化学性质和生物学作用的知识。还简要回顾了合成方法。