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2-氨基硫酚的缩合反应制备具有生物学意义的2-取代苯并噻唑:综述(2020 - 2024年)

Condensation Reactions of 2-Aminothiophenoles to Afford 2-Substituted Benzothiazoles of Biological Interest: A Review (2020-2024).

作者信息

Padilla-Martínez Itzia I, Cruz Alejandro, García-Báez Efrén V, Mendieta-Wejebe Jessica E, Rosales-Hernández Martha C

机构信息

Laboratorio de Química Supramolecular y Nanociencias, Departamento de Ciencias Básicas, Unidad Profesional Interdisciplinaria de Biotecnología, Instituto Politécnico Nacional, Av. Acueducto s/n, Colonia Barrio La Laguna Ticomán, Ciudad de México 07340, Mexico.

Laboratorio de Biofísica y Biocatálisis, Sección de Estudios de Posgrado e Investigación, Escuela Superior de Medicina, Instituto Politécnico Nacional, Av. Salvador Diaz Mirón esq. Plan de San Luis s/n, Casco de Santo Tomas, Miguel Hidalgo, Ciudad de México 11340, Mexico.

出版信息

Int J Mol Sci. 2025 Jun 19;26(12):5901. doi: 10.3390/ijms26125901.

Abstract

Several benzothiazole (BT) derivatives have recently been explored in medicinal chemistry, and they are frequently reported in the literature. The interest in this kind of heterocyclic compounds and their structural hybrids has been increasing, as shown by several reviews reported over the last decade. In this context, we found that about 70 articles related to the synthesis of BT derivatives that studied their biological activities were published in the last five years. From this, we prepared a review on the synthesis and biological activity studies about this topic. In this bibliographic review it was found that medicinal chemists also explore BT derivatives in search of anticancer and anti-Alzheimer's candidates. This review comprehends 70 articles, published between 2020 and 2024, related to the synthesis of BT derivatives with the purpose of assessing their biological activities. On the other hand, BT derivatives have been explored as molecular species that perform two or more biological actions, called multifunctional drugs. Some accounts related to the structure-activity relationship which provide a framework for drug discovery and design are also discussed. The synthetic methods of BT synthesis include the use of biocatalysts, solvent-free conditions, photocatalysts, and catalysts supported on nanoparticles. Studies also explore renewable energy sources such as microwave, UV, and visible-light and mechanochemical sources.

摘要

近年来,几种苯并噻唑(BT)衍生物在药物化学领域得到了研究,并且在文献中也经常被报道。正如过去十年中几篇综述所显示的那样,对这类杂环化合物及其结构杂化物的兴趣一直在增加。在此背景下,我们发现过去五年中有大约70篇关于BT衍生物合成及其生物活性研究的文章发表。据此,我们撰写了一篇关于该主题的合成及生物活性研究的综述。在这篇文献综述中发现,药物化学家也在探索BT衍生物以寻找抗癌和抗阿尔茨海默病的候选药物。这篇综述涵盖了2020年至2024年间发表的70篇与BT衍生物合成相关的文章,目的是评估它们的生物活性。另一方面,BT衍生物已被作为具有两种或更多种生物作用的分子物种进行探索,即所谓的多功能药物。还讨论了一些与构效关系相关的内容,这些内容为药物发现和设计提供了框架。BT合成的方法包括使用生物催化剂、无溶剂条件、光催化剂以及负载在纳米颗粒上的催化剂。研究还探索了可再生能源,如微波、紫外线和可见光以及机械化学能源。

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