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有机硒化学、生物化学与反应活性的五十年:机理理解、成功与争议故事

50 Years of Organoselenium Chemistry, Biochemistry and Reactivity: Mechanistic Understanding, Successful and Controversial Stories.

作者信息

Madabeni Andrea, Bortoli Marco, Nogara Pablo A, Ribaudo Giovanni, Dalla Tiezza Marco, Flohé Leopold, Rocha João B T, Orian Laura

机构信息

Dipartimento di Scienze Chimiche, Università degli Studi di Padova, Via Marzolo 1, 35131, Padova, Italy.

Department of Chemistry and Hylleraas Centre for Quantum Molecular Sciences, University of Oslo, Oslo, 0315, Norway.

出版信息

Chemistry. 2024 Dec 13;30(70):e202403003. doi: 10.1002/chem.202403003. Epub 2024 Nov 20.

Abstract

In 1973, two major discoveries changed the face of selenium chemistry: the identification of the first mammal selenoenzyme, glutathione peroxidase 1, and the discovery of the synthetic utility of the so-called selenoxide elimination. While the chemical mechanism behind the catalytic activity of glutathione peroxidases appears to be mostly unveiled, little is known about the mechanisms of other selenoproteins and, for some of them, even the function lies in the dark. In chemistry, the capacity of organoselenides of catalyzing hydrogen peroxide activation for the practical manipulation of organic functional groups has been largely explored, and some mechanistic details have been clearly elucidated. As a paradox, despite the long-standing experience in the field, the nature of the active oxidant in various reactions still remains matter of debate. While many successes characterize these fields, the pharmacological use of organoselenides still lacks any true application, and while some organoselenides were found to be non-toxic and safe to use, to date no therapeutically approved use was granted. In this review, some fundamental and chronologically aligned topics spanning organoselenium biochemistry, chemistry and pharmacology are discussed, focusing on the current mechanistic picture describing their activity as either bioactive compounds or catalysts.

摘要

1973年,两项重大发现改变了硒化学的面貌:第一种哺乳动物硒酶——谷胱甘肽过氧化物酶1的鉴定,以及所谓的硒氧化物消除反应在合成中的应用的发现。虽然谷胱甘肽过氧化物酶催化活性背后的化学机制似乎已基本揭示,但对于其他硒蛋白的机制却知之甚少,而且其中一些硒蛋白的功能甚至还是个谜。在化学领域,有机硒化物催化过氧化氢活化以实际操控有机官能团的能力已得到大量探索,一些机理细节也已明确阐明。矛盾的是,尽管该领域有长期的经验,但各种反应中活性氧化剂的性质仍然存在争议。虽然这些领域取得了许多成功,但有机硒化物的药理学应用仍然缺乏真正的应用,而且虽然发现一些有机硒化物无毒且使用安全,但迄今为止尚未获得治疗上的批准使用。在这篇综述中,讨论了一些跨越有机硒生物化学、化学和药理学的基本且按时间顺序排列的主题,重点是描述它们作为生物活性化合物或催化剂的活性的当前机理情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6da4/11639659/8f50bc97e3e5/CHEM-30-e202403003-g008.jpg

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