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螺醚合成方法综述

A Review of Approaches Developed for Spiroether Synthesis.

作者信息

Ahmadpourmir Hamid, Taghizadeh Seyedeh Faezeh, Mezhuev Yaroslav, Salavati Nik Amir Ali, Tzatzarakis Manolis, Tsatsakis Aristidis, Rezaee Ramin

机构信息

Medical Toxicology Research Center, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

Applied Biomedical Research Center, Basic Sciences Research Institute, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Top Curr Chem (Cham). 2025 Jun 9;383(3):24. doi: 10.1007/s41061-025-00508-w.

Abstract

Spiroethers, a subset of natural and synthetic spirocycles, possess various biological activities. These motifs are found in natural products and exhibit anticancer, antidepressant, antiviral, antimalarial, and antituberculosis properties. Because of their exceptional structures, spiroethers can serve as important bioactive scaffolds in the pharmaceutical industry to improve bioavailability and stability and in drug discovery. Many of these compounds can also be used in perfumes and flavors owing to their olfactory properties. Given the increasing interest in spiroether-derived compounds in the pharmaceutical industry and the low yields of spiroethers provided by natural sources, which are not economically viable for industrial demand, synthetic approaches have garnered significant attention. In this review, we provide insight into 16 different approaches suggested for the synthesis of spiroethers; these methods are classified in the following five categories: catalytic methods (four methods), cyclization reactions (three methods), nucleophilic/electrophilic additions (two methods), functional group transformation (three methods), and miscellaneous (four methods). Certain advantages including material availability, high yield, simple procedures, low cost, ability to enhance biological properties of the final products, and so on are reported for these approaches.

摘要

螺醚作为天然和合成螺环化合物的一个子集,具有多种生物活性。这些结构单元存在于天然产物中,并具有抗癌、抗抑郁、抗病毒、抗疟疾和抗结核特性。由于其独特的结构,螺醚可作为制药行业中重要的生物活性支架,以提高生物利用度和稳定性,并用于药物研发。由于其嗅觉特性,这些化合物中的许多还可用于香水和香料。鉴于制药行业对螺醚衍生化合物的兴趣日益增加,且天然来源提供的螺醚产量较低,无法满足工业需求的经济可行性,合成方法已受到广泛关注。在本综述中,我们深入探讨了16种不同的螺醚合成方法;这些方法分为以下五类:催化方法(四种方法)、环化反应(三种方法)、亲核/亲电加成(两种方法)、官能团转化(三种方法)和其他方法(四种方法)。据报道,这些方法具有某些优点,包括原料可得性、高产率、操作简单、成本低、能够增强最终产品的生物学特性等。

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