Overview of Recent Advances in 3-Hydroxycoumarin Chemistry as a Bioactive Heterocyclic Compound

Jules Yoda
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Abstract

Coumarins or benzo-2-pyrone derivatives are one of the most significant families of natural compounds and are also important in synthetic organic chemistry. They have been widely used as starting materials or precursor molecules in the pharmaceutical, perfumery and agrochemical industries, etc. Hydroxycoumarins are an important class of coumarin compounds that possess several physical, chemical and biological properties. Among the hydroxycoumarins, 3-hydroxycoumarin seems to be the most important because of its numerous chemical, photochemical and biological properties. However, this compound remains less well known compared to others of the same class such as 7-hydroxycoumarin and 4-hydroxycoumarin. This study is therefore devoted to 3-hydroxycoumarin and its applications. The main purpose of this review is to summarize and document the recent advances on 3-hydroxycoumarin, concerning the main routes of its synthesis, its reactivity, its applications in different fields of biology. Several methods for the synthesis of 3-hydroxycoumarin have been described in the literature, most of which use salicylic aldehyde and 1-(2-hydroxyphenyl)ethanone as starting compounds. Other synthesis pathways exist, but they are based on intermediate synthesis compounds. Concerning the reactivity of 3-hydroxycoumarin, many heterocyclic compounds obtained from 3-hydroxycoumarin have been reported in the literature. Among these heterocycles are pyrido[2,3-c]coumarin derivatives, chromeno[4,3-e][1,3]oxazine derivatives, dihydropyrano[2,3-c] chromenes and 3-coumarinyl carboxylates. Various researches have also concerned the biological properties of this compound. It appears from these numerous studies that 3-hdroxycoumarin is used in fields such as genetics, pharmacology, microbiology, etc.
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3-羟基香豆素作为一种生物活性杂环化合物的化学研究进展综述
香豆素或苯并-2-吡咯酮衍生物是一类重要的天然化合物,在有机合成化学中也占有重要地位。在医药、香料、农化等行业中被广泛用作起始原料或前体分子。羟基香豆素是一类重要的香豆素类化合物,具有多种物理、化学和生物学特性。在羟基香豆素中,3-羟基香豆素因其众多的化学、光化学和生物学特性而被认为是最重要的。然而,与同类化合物如7-羟基香豆素和4-羟基香豆素相比,这种化合物仍然不太为人所知。因此,本研究致力于3-羟基香豆素及其应用。本文综述了3-羟基香豆素的主要合成途径、反应活性及其在不同生物学领域的应用等方面的研究进展。文献中介绍了几种合成3-羟基香豆素的方法,大多以水杨醛和1-(2-羟基苯基)乙酮为起始化合物。其他的合成途径也存在,但都是以中间合成化合物为基础的。关于3-羟基香豆素的反应性,文献报道了许多由3-羟基香豆素合成的杂环化合物。这些杂环化合物包括吡啶类[2,3-c]香豆素衍生物、铬类[4,3-e][1,3]恶嗪类衍生物、二氢吡喃类[2,3-c]香豆素衍生物和3-香豆素基羧酸盐。各种研究也关注该化合物的生物学特性。从这些大量的研究中可以看出,3-羟基香豆素在遗传学、药理学、微生物学等领域都有应用。
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