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硫代糖、硒代糖和碲代糖的化学及应用探索

Exploring the Chemistry and Applications of Thio-, Seleno-, and Tellurosugars.

作者信息

Martínez-Pascual Roxana, Valera-Zaragoza Mario, Fernández-Bolaños José G, López Óscar

机构信息

Centro de Investigaciones Científicas, Instituto de Química Aplicada, Universidad del Papaloapan, Circuito Central 200, Col. Parque Industrial, Tuxtepec 68301, Oaxaca, Mexico.

Departamento de Química Orgánica, Facultad de Química, Universidad de Sevilla, Apartado 1203, E-41071 Seville, Spain.

出版信息

Molecules. 2025 May 5;30(9):2053. doi: 10.3390/molecules30092053.

Abstract

Given the crucial roles of carbohydrates in energy supply, biochemical processes, signaling events and the pathogenesis of several diseases, the development of carbohydrate analogues, called glycomimetics, is a key research area in Glycobiology, Pharmacology, and Medicinal Chemistry. Among the many structural transformations explored, the replacement of endo- and exocyclic oxygen atoms by carbon (carbasugars) or heteroatoms, such as nitrogen (aza- and iminosugars), phosphorous (phosphasugars), sulfur (thiosugars), selenium (selenosugars) or tellurium (tellurosugars) have garnered significant attention. These isosteric substitutions can modulate the carbohydrate bioavailability, stability, and bioactivity, while introducing new properties, such as redox activity, interactions with pathological lectins and enzymes, or cytotoxic effects. In this manuscript we have focused on three major families of glycomimetics: thio-, seleno-, and tellurosugars. We provide a comprehensive review of the most relevant synthetic pathways leading to substitutions primarily at the endocyclic and glycosidic positions. The scope includes metal-catalyzed reactions, organocatalysis, electro- and photochemical transformations, free-radical processes, and automated syntheses. Additionally, mechanistic insights, stereoselectivity, and biological properties are also discussed. The structural diversity and promising bioactivities of these glycomimetics underscore their significance in this research area.

摘要

鉴于碳水化合物在能量供应、生化过程、信号传导事件以及多种疾病的发病机制中发挥着关键作用,开发被称为糖模拟物的碳水化合物类似物是糖生物学、药理学和药物化学领域的一个关键研究方向。在探索的众多结构转变中,用碳(碳环糖)或杂原子(如氮(氮杂糖和亚氨基糖)、磷(磷糖)、硫(硫代糖)、硒(硒代糖)或碲(碲代糖))取代内环和外环氧原子已引起了广泛关注。这些等电子取代可以调节碳水化合物的生物利用度、稳定性和生物活性,同时引入新的性质,如氧化还原活性、与病理性凝集素和酶的相互作用或细胞毒性作用。在本手稿中,我们重点关注了三大类糖模拟物:硫代糖、硒代糖和碲代糖。我们全面综述了主要在内环和糖苷位置进行取代的最相关合成途径。范围包括金属催化反应、有机催化、电化学和光化学转化、自由基过程以及自动化合成。此外,还讨论了反应机理、立体选择性和生物学性质。这些糖模拟物的结构多样性和有前景的生物活性突显了它们在该研究领域的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fc5/12073459/7b5b1a521a52/molecules-30-02053-g001.jpg

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