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硒金合欢醇的半合成

Semisynthesis of Selenoauraptene.

作者信息

Fiorito Serena, Epifano Francesco, Marchetti Lorenzo, Genovese Salvatore

机构信息

Department of Pharmacy, University "G. d'Annunzio" of Chieti-Pescara, Via dei Vestini 31, 66100 Chieti Scalo, CH, Italy.

出版信息

Molecules. 2021 May 10;26(9):2798. doi: 10.3390/molecules26092798.

Abstract

Selenium-containing compounds are gaining more and more interest due to their valuable and promising pharmacological properties, mainly as anticancer and antioxidant agents. Ebselen, the up to now only approved drugs, is well known to possess very good glutathione peroxidase mimicking effects. To date, the most of efforts have been directed to build pure synthetic Se containing molecules, while less attention have been devoted to Se-based semisynthetic products resembling natural compounds like terpenes, polyphenols, and alkaloids. The aim of this short communication is to report the synthesis of the first example of a Se-phenylpropanoids, namely selenoauraptene, containing a selenogeranyl side chain in position 7 of the umbelliferone core. The key step was the Newman-Kwart rearrangement to obtain a selenocarbamate in which the Se atom was directly attached to umbelliferone (replacing its 7-OH function) followed by hydrolysis to get diumbelliferyl diselenide, which was finally easily converted to the desired Se-geranyl derivative in quite a good overall yield (28.5%). The synthesized adduct displayed a greater antioxidant and a radical scavenger in vitro activity than parent auraptene. The procedure we describe herein, to the best of our knowledge for the first time in the literature, represents an easy-to-handle method for the synthesis of a wide array of seleno analogues of naturally occurring biologically active oxyprenylated secondary metabolites.

摘要

含硒化合物因其具有重要且有前景的药理特性,主要作为抗癌和抗氧化剂,正越来越受到关注。依布硒啉是目前唯一被批准的药物,众所周知它具有非常好的谷胱甘肽过氧化物酶模拟作用。迄今为止,大部分努力都致力于构建纯合成的含硒分子,而对类似于萜类、多酚和生物碱等天然化合物的硒基半合成产品关注较少。本简短通讯的目的是报告首个硒代苯丙素类化合物,即硒代金雀花素的合成,其在伞形酮核心的7位含有一个硒代香叶基侧链。关键步骤是纽曼 - 夸特重排以获得一种硒代氨基甲酸酯,其中硒原子直接连接到伞形酮(取代其7 - 羟基官能团),随后水解得到二伞形酮基二硒化物,最终它很容易以相当高的总收率(28.5%)转化为所需的硒代香叶基衍生物。合成的加合物在体外显示出比母体金雀花素更强的抗氧化和自由基清除活性。据我们所知,我们在此描述的方法是文献中首次报道的一种易于操作的方法,用于合成多种天然存在的具有生物活性的氧代异戊烯基化次生代谢产物的硒类似物。

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