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具有突出生物应用的醌类化合物的合成:具有生物活性化合物策略的重要更新,重点是拉帕醌。

Synthesis of quinones with highlighted biological applications: A critical update on the strategies towards bioactive compounds with emphasis on lapachones.

机构信息

Laboratory of Synthetic and Heterocyclic Chemistry, Institute of Exact Sciences, Department of Chemistry, Federal University of Minas Gerais, Belo Horizonte, Minas Gerais, 31270-901, Brazil; Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstraße 2, 37077, Göttingen, Germany.

Laboratory of Synthetic and Heterocyclic Chemistry, Institute of Exact Sciences, Department of Chemistry, Federal University of Minas Gerais, Belo Horizonte, Minas Gerais, 31270-901, Brazil; Federal University of Santa Catarina, Florianópolis, Santa Catarina, 88040-900, Brazil.

出版信息

Eur J Med Chem. 2019 Oct 1;179:863-915. doi: 10.1016/j.ejmech.2019.06.056. Epub 2019 Jun 25.

Abstract

Naphthoquinones are of key importance in organic synthesis and medicinal chemistry. In the last few years, various synthetic routes have been developed to prepare bioactive compounds derived or based on lapachones. In this sense, this review is mainly focused on the synthetic aspects and strategies used for the design of these compounds on the basis of their biological activities for the development of drugs against the neglected diseases leishmaniases and Chagas disease and also cancer. Three strategies used to develop bioactive quinones are discussed and categorized: (i) C-ring modification, (ii) redox centre modification and (iii) A-ring modification. Framed within these strategies for the development of naphthoquinoidal compounds against T. cruzi. Leishmania and cancer, reactions including copper-catalyzed azide-alkyne cycloaddition (click chemistry), palladium-catalysed cross couplings, C-H activation reactions, Ullmann couplings and heterocyclisations reported up to July 2019 will be discussed. The aim of derivatisation is the generation of novel molecules that can potentially inhibit cellular organelles/processes, generate reactive oxygen species and increase lipophilicity to enhance penetration through the plasma membrane. Modified lapachones have emerged as promising prototypes for the development of drugs against leishmaniases, Chagas disease and cancer.

摘要

萘醌在有机合成和药物化学中具有重要意义。在过去的几年中,已经开发出各种合成路线来制备衍生或基于拉帕醌的生物活性化合物。在这个意义上,本综述主要集中在基于其对治疗被忽视的疾病利什曼病和恰加斯病以及癌症的生物活性来设计这些化合物的合成方面和策略。讨论并分类了用于开发醌类生物活性化合物的三种策略:(i)C 环修饰,(ii)氧化还原中心修饰和(iii)A 环修饰。在针对 T. cruzi 的萘醌化合物的这些策略框架内。利什曼病和癌症,包括铜催化叠氮-炔环加成(点击化学)、钯催化交叉偶联、C-H 活化反应、Ullmann 偶联和杂环化在内的反应,将讨论截至 2019 年 7 月报道的反应。衍生化的目的是生成可能抑制细胞细胞器/过程、产生活性氧并增加亲脂性以增强穿过质膜的穿透性的新型分子。经过修饰的拉帕醌已成为开发治疗利什曼病、恰加斯病和癌症药物的有希望的原型。

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