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萘醌衍生物的合成:甲萘醌、脂溶性维生素 K 衍生物和其他维生素 K 衍生物。

Synthesis of Naphthoquinone Derivatives: Menaquinones, Lipoquinones and Other Vitamin K Derivatives.

机构信息

Chemistry Department, Colorado State University, Ft. Collins, CO 80525, USA.

Cell & Molecular Biology Program, Colorado State University, Ft. Collins, CO 80525, USA.

出版信息

Molecules. 2020 Sep 29;25(19):4477. doi: 10.3390/molecules25194477.

Abstract

Menaquinones are a class of isoprenoid molecules that have important roles in human biology and bacterial electron transport, and multiple methods have been developed for their synthesis. These compounds consist of a methylnaphthoquinone (MK) unit and an isoprene side chain, such as found in vitamin K (phylloquinone), K, and other lipoquinones. The most common naturally occurring menaquinones contain multiple isoprene units and are very hydrophobic, rendering it difficult to evaluate the biological activity of these compounds in aqueous assays. One way to overcome this challenge has been the application of truncated MK-derivatives for their moderate solubility in water. The synthesis of such derivatives has been dominated by Friedel-Crafts alkylation with BF∙OEt. This attractive method occurs over two steps from commercially available starting materials, but it generally produces low yields and a mixture of isomers. In this review, we summarize reported syntheses of both truncated and naturally occurring MK-derivatives that encompass five different synthetic strategies: Nucleophilic ring methods, metal-mediated reactions, electrophilic ring methods, pericyclic reactions, and homologation and side chain extensions. The advantages and disadvantages of each method are discussed, identifying methods with a focus on high yields, regioselectivity, and stereochemistry leading to a detailed overview of the reported chemistry available for preparation of these compounds.

摘要

甲萘醌类是一类异戊二烯分子,在人类生物学和细菌电子传递中具有重要作用,已经开发出多种方法来合成这些化合物。这些化合物由一个甲基萘醌 (MK) 单元和一个异戊二烯侧链组成,如维生素 K(叶绿醌)、K 和其他脂溶性醌中存在的侧链。最常见的天然存在的甲萘醌含有多个异戊二烯单元,并且非常疏水,这使得难以在水性测定中评估这些化合物的生物活性。克服这一挑战的一种方法是应用截断的 MK 衍生物,因为它们在水中具有中等的溶解度。此类衍生物的合成主要通过 Friedel-Crafts 烷基化反应与 BF∙OEt 进行。这种有吸引力的方法从商业上可获得的起始原料经过两步进行,但通常产率较低且产生异构体混合物。在这篇综述中,我们总结了报道的截断和天然 MK 衍生物的合成,涵盖了五种不同的合成策略:亲核环方法、金属介导的反应、亲电环方法、周环反应以及同系化和侧链扩展。讨论了每种方法的优缺点,确定了以高产率、区域选择性和立体化学为重点的方法,从而详细概述了可用于制备这些化合物的报道的化学方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79c6/7582351/47133778d57a/molecules-25-04477-g001.jpg

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