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首页> 外文期刊>Bioorganic and medicinal chemistry >Developing hybrid molecule therapeutics for diverse enzyme inhibitory action: Active role of coumarin-based structural leads in drug discovery
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Developing hybrid molecule therapeutics for diverse enzyme inhibitory action: Active role of coumarin-based structural leads in drug discovery

机译:制育杂种分子治疗多种酶抑制作用:基于香豆素的结构铅在药物发现中的积极作用

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摘要

Hybrid drugs featuring two or more potentially bioactive pharmacophores have been recognized as advanced and superior chemical entities to simultaneously modulate multiple drug targets of multifactorial diseases, thus overcoming the severe side effects associated with a single drug molecule. The selection of these chemical moieties to produce hybrid structures with druggable properties is generally facilitated by the observed and/or anticipated synergistic pharmacological activities of the individual molecules. In this perspective, coumarin template has extensively been studied in pursuit of structurally diverse leads for drug development due to high affinity and specificity to different molecular targets. This review highlights the most commonly exploited approaches conceptualizing the design and construction of hybrid molecules by coupling two or more individual fragments with or without an appropriate linker. In addition to the design strategies, this review also summarizes and reflects on the therapeutic potential of these hybrid molecules for diverse enzyme inhibitory action as well as their observed structure-activity relationship (SAR). Several key features of the synthesized hybrid structures that assert a profound impact on the inhibitory function have also been discussed alongside computational investigations, inhibitor molecular diversity and selectivity toward multiple drug targets. Finally, these drug discovery and development efforts should serve as a handy reference aiming to provide a useful platform for the exploration of new coumarin-based compounds with enhanced enzyme inhibitory profile.
机译:具有两种或更多种潜在的生物活性药物的杂种药物已被认为是先进的和优异的化学实体,以同时调节多重疾病的多种药物靶标,从而克服与单一药物分子相关的严重副作用。通过观察到的和/或预期的单独分子协同药理活性促进这些化学部分以产生具有可药物性能的杂化结构。在这种观点中,由于对不同分子靶标的高亲和力和特异性,在构造多样性的药物发育引线中,对香豆素模板进行了广泛的研究。该综述突出了通过耦合有或没有适当的接头的两个或更多个单个片段来概念化杂种分子的设计和构建的最常用方法。除了设计策略之外,该综述还概述并反映了这些杂种分子用于多种酶抑制作用的治疗潜力以及观察到的结构 - 活性关系(SAR)。还讨论了对抑制功能对抑制功能进行深远影响的合成混合结构的几个关键特征以及对多种药物靶标的抑制剂分子多样性和选择性。最后,这些药物发现和发展努力应作为一种方便的参考,旨在为具有增强的酶抑制性概况探索新的香豆素的化合物提供有用的平台。

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