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弗里德兰德喹啉合成法是当代药物化学中生物活性杂环衍生物发展的关键步骤。

Friedlӓnder's synthesis of quinolines as a pivotal step in the development of bioactive heterocyclic derivatives in the current era of medicinal chemistry.

作者信息

Rajendran Satheeshkumar, Sivalingam Kalaiselvi, Karnam Jayarampillai Rajendra Prasad, Wang Wen-Long, Salas Cristian O

机构信息

Departamento de Química Orgánica, Facultad de Química y de Farmacia, Pontificia Universidad Católica de Chile, Santiago, Chile.

Developmental, Molecular and Chemical Biology, Tufts University School of Medicine, Boston, Massachusetts, USA.

出版信息

Chem Biol Drug Des. 2022 Dec;100(6):1042-1085. doi: 10.1111/cbdd.14044. Epub 2022 Apr 7.

Abstract

In the current scenario of medicinal chemistry, quinoline plays a pivotal role in the design of new heterocyclic compounds with several pharmacological properties, so the search for new synthetic methodologies and their application in drug discovery has been widely studied. So far, many procedures have been performed for the preparation of quinoline scaffolds, among which Friedländer quinoline synthesis plays an important role in obtaining these heterocycles. The Friedländer reaction involves condensation between 2-aminobenzaldehydes and keto-compounds. The quinoline nucleus, once obtained through the Friedländer synthesis, has been extensively modified so that these derivatives can exhibit a large number of biological activities such as anticancer, antimalarial, antimicrobial, antifungal, antituberculosis, and antileishmanial properties. In this work, the focus is on the applicability of the Friedländer reaction in the synthesis of various types of bioactive heterocyclic quinoline compounds, which to date has not been reported in the context of medicinal chemistry. The main part of this review selectively focuses on research from 2010 to date and will present highlights of the Friedländer quinoline synthesis procedures and findings to address biological and pharmacological activities.

摘要

在当前药物化学领域,喹啉在具有多种药理特性的新型杂环化合物设计中起着关键作用,因此对新合成方法及其在药物发现中的应用的研究十分广泛。到目前为止,已经有许多制备喹啉骨架的方法,其中Friedländer喹啉合成法在获得这些杂环化合物方面发挥着重要作用。Friedländer反应涉及2-氨基苯甲醛与酮类化合物之间的缩合反应。通过Friedländer合成法得到喹啉环后,对其进行了广泛的修饰,以使这些衍生物能够展现出大量的生物活性,如抗癌、抗疟疾、抗菌、抗真菌、抗结核和抗利什曼原虫特性。在这项工作中,重点是Friedländer反应在各类生物活性杂环喹啉化合物合成中的适用性,而这在药物化学领域迄今尚未见报道。本综述的主要部分有选择地聚焦于2010年至今的研究,并将呈现Friedländer喹啉合成方法及研究结果的要点,以探讨其生物学和药理活性。

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