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七元氮杂环作为已批准的药物和药物化学中有前景的先导化合物,以及无金属的多米诺反应获得其支架。

Seven-membered N-heterocycles as approved drugs and promising leads in medicinal chemistry as well as the metal-free domino access to their scaffolds.

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznan, Poland.

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznan, Poland.

出版信息

Eur J Med Chem. 2024 Sep 5;275:116556. doi: 10.1016/j.ejmech.2024.116556. Epub 2024 Jun 5.

Abstract

Azepanes or azepines are structural motifs of many drugs, drug candidates and evaluated lead compounds. Even though compounds having N-heterocyclic 7-membered rings are often found in nature (e.g. alkaloids), the natural compounds of this group are rather rare as approved therapeutics. Thus, recently studied and approved azepane or azepine-congeners predominantly consist of semi-synthetically or synthetically-obtained scaffolds. In this review a comparison of approved drugs and recently investigated leads was proposed taking into regard their structural aspects (stereochemistry), biological activities, pharmacokinetic properties and confirmed molecular targets. The 7-membered N-heterocycles reveal a wide range of biological activities, not only against CNS diseases, but also as e.g. antibacterial, anticancer, antiviral, antiparasitic and against allergy agents. As most of the approved or investigated potential drugs or lead structures, belonging to 7-membered N-heterocycles, are synthetic scaffolds, this report also reveals different and efficient metal-free cascade approaches useful to synthesize both simple azepane or azepine-containing congeners and those of oligocyclic structures. Stereochemistry of azepane/azepine fused systems, in view of biological data and binding with the targets, is discussed. Apart from the approved drugs, we compare advances in SAR studies of 7-membered N-heterocycles (mainly from 2018 to 2023), whereas the related synthetic part concerning various domino strategies is focused on the last ten years.

摘要

氮杂环庚烷或氮杂环庚烷是许多药物、药物候选物和评估的先导化合物的结构基序。尽管具有 N-杂环 7 元环的化合物在自然界中经常被发现(例如生物碱),但作为批准的治疗药物,该类别的天然化合物相当罕见。因此,最近研究和批准的氮杂环庚烷或氮杂环庚烷类似物主要由半合成或合成获得的支架组成。在这篇综述中,考虑到其结构方面(立体化学)、生物活性、药代动力学性质和确认的分子靶标,对已批准的药物和最近研究的先导物进行了比较。7 元 N-杂环表现出广泛的生物活性,不仅针对中枢神经系统疾病,而且还具有抗菌、抗癌、抗病毒、抗寄生虫和抗过敏作用。由于大多数已批准或研究的潜在药物或先导结构属于 7 元 N-杂环,是合成支架,因此该报告还揭示了不同且有效的无金属级联方法,可用于合成简单的氮杂环庚烷或氮杂环庚烷类似物以及那些寡环结构。讨论了氮杂环庚烷/氮杂环庚烷稠合系统的立体化学,考虑到生物数据和与靶标的结合。除了已批准的药物外,我们还比较了 7 元 N-杂环(主要是 2018 年至 2023 年)SAR 研究的进展,而涉及各种多米诺策略的相关合成部分则侧重于过去十年。

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