Fylaktakidou K C, Hadjipavlou-Litina D J, Litinas K E, Varella E A, Nicolaides D N
Molecular Biology and Genetics Department, Democritus University of Thrace, Alexandroupolis 68100, Greece.
Curr Pharm Des. 2008;14(10):1001-47. doi: 10.2174/138161208784139675.
Amidoximes are compounds bearing both a hydroxyimino and an amino group at the same carbon atom which makes them versatile building blocks for the synthesis of various heterocycles. Their importance in chemistry along with their rich biology, make amidoximes an attractive target for medicinal chemists, biochemists and biologists. Amidoximes and simple O-substituted derivatives possess very important biological activities functioning as antituberculotic, antibacterial, bacteriostatic, insecticidal, elminthicidal, antiviral, herbicidal, fungicidal, antineoplastic, antiarrythmic, antihypertensive, antihistaminic, anxiolytic-antidepressant, anti-inflammatory/antioxidant, antiaggregatory (NO donors) or plant growth regulatory agents. A number of amidoximes has already been used as drugs, or currently being in clinical trials. Their numerous pharmaceutical applications have been recently enriched, due to the fact that some mechanistic pathways, concerning their conversion to amidines, as well as their ability to release NO were clarified, giving a new insight to their mode of action and allowing the design of new therapeutic agents. The main subject of the present review paper is to highlight aspects concerning chemical and biological questions on this interesting class of compounds. Some new synthetic methodologies as well as improvements of previously reported general reactions involving amidoximes, acylated amidoximes, and amidines are presented. The biological applications of amidoximes over the end of 2006 are also extensively reviewed.
偕胺肟是在同一碳原子上同时带有羟基亚氨基和氨基的化合物,这使得它们成为合成各种杂环化合物的通用构建单元。偕胺肟在化学领域的重要性以及其丰富的生物学特性,使其成为药物化学家、生物化学家和生物学家感兴趣的目标。偕胺肟及其简单的O-取代衍生物具有非常重要的生物活性,可作为抗结核、抗菌、抑菌、杀虫、杀线虫、抗病毒、除草、杀菌、抗肿瘤、抗心律失常、抗高血压、抗组胺、抗焦虑-抗抑郁、抗炎/抗氧化、抗聚集(一氧化氮供体)或植物生长调节剂。许多偕胺肟已被用作药物,或目前正在进行临床试验。由于一些关于它们转化为脒的机制途径以及释放一氧化氮的能力得到了阐明,为其作用方式提供了新的见解,并有助于设计新的治疗药物,它们众多的药物应用最近得到了丰富。本综述文章的主要主题是突出关于这类有趣化合物的化学和生物学问题的各个方面。介绍了一些新的合成方法以及对先前报道的涉及偕胺肟、酰化偕胺肟和脒的一般反应的改进。还广泛综述了截至2006年底偕胺肟的生物学应用。