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二氢萘并呋喃:合成策略与应用

Dihydronaphthofurans: synthetic strategies and applications.

作者信息

Olyaei Abolfazl, Sadeghpour Mahdieh

机构信息

Department of Chemistry, Payame Noor University (PNU) PO BOX 19395-4697 Tehran Iran.

Department of Chemistry, Takestan Branch, Islamic Azad University Takestan Iran

出版信息

RSC Adv. 2020 Feb 5;10(10):5794-5826. doi: 10.1039/c9ra09987e. eCollection 2020 Feb 4.

Abstract

Dihydronaphthofurans (DHNs) are an important class of arene ring-fused furans which are widely found in many natural and non-natural products and drug candidates with relevant biological and pharmacological activities. Furthermore, vinylidene-naphthofurans exhibit photochromic properties when exposed to UV or sun light at room temperature. For these reasons, a vast array of synthetic procedures for the preparation of dihydronaphthofurans including annulation of naphthols with various reagents, cycloaddition reactions ([3 + 2], [4 + 1] and Diels-Alder), intramolecular transannulation, Friedel-Crafts, Wittig, Claisen rearrangement, neophyl rearrangement and other reactions under various conditions have been developed over the past decades. This review aims to describe the different strategies developed so far for the synthesis of dihydronaphthofurans and their applications. After a brief introduction to the types of dihydronaphthofurans and their biological activities, the different synthetic approaches such as chemical, photochemical, and electrochemical, methods are described and organized on the basis of the catalysts and the other reagents employed in the syntheses. The subsequent section focuses on biological and pharmacological applications and photochromic properties of the target compounds.

摘要

二氢萘并呋喃(DHNs)是一类重要的芳环稠合呋喃,广泛存在于许多天然和非天然产物以及具有相关生物和药理活性的候选药物中。此外,亚乙烯基萘并呋喃在室温下暴露于紫外线或太阳光时表现出光致变色特性。基于这些原因,在过去几十年中,人们开发了大量用于制备二氢萘并呋喃的合成方法,包括用各种试剂使萘酚环化、环加成反应([3 + 2]、[4 + 1]和狄尔斯-阿尔德反应)、分子内跨环反应、傅克反应、维蒂希反应、克莱森重排、新戊基重排以及在各种条件下的其他反应。本综述旨在描述迄今为止开发的用于合成二氢萘并呋喃的不同策略及其应用。在简要介绍二氢萘并呋喃的类型及其生物活性之后,根据合成中使用的催化剂和其他试剂,描述并整理了不同的合成方法,如化学法、光化学法和电化学法。随后的部分重点介绍目标化合物的生物和药理应用以及光致变色特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4657/9049295/da9595bd10cc/c9ra09987e-f1.jpg

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