Wani Mohmad Muzafar, Bhat Bilal A
Natural Products and Medicinal Chemistry, CSIR-Indian Institute of Integrative Medicine Sanat Nagar Srinagar 190005 India.
Academy of Scientific & Innovative Research (AcSIR) Ghaziabad-201002 India
RSC Adv. 2025 Jul 18;15(31):25586-25607. doi: 10.1039/d5ra02664d. eCollection 2025 Jul 15.
Organic synthesis guided by micellar nanoreactors constitutes one of the fundamental fields of organic chemistry that is expected to furnish chemical synthesis in a sustainable fashion. Due to its promise, we were also attracted to using the micelles to enhance chemical reactivity and selectivity and to explore their newer applications in natural products and heterocyclic chemistry. As on date, there is no comprehensive review article that highlights the repertoire of chemical reactions developed in micelles furnishing a range heterocycles and natural products/scaffolds, barring the metal-catalyzed cross-coupling reactions. In this review, we document the last decade (2014-2024) progress of organic reactions developed in micelles to yield a range of heterocyclic and natural product-based scaffolds. Notably, we have excluded the content related to metal-catalyzed cross-coupling reactions and some other aspects of micelles due to the number of overlapping reviews written on such topics. In the current article, we briefly introduce micellar catalysis, regions of reaction sites in micelles, and various surfactants utilized in micelle chemistry. Our discussion also captures the importance of micellar catalysis compared to the conventional organic synthesis. More importantly, the focus of our review is largely on the collection of chemical transformations accomplished in the last decade in accessing heterocycles and natural products to showcase the advancement of organic synthesis through sustainable fashion. Wherever required, we have also captured the various interactions of surfactants with the substrates necessary for driving the reactions and discussed the importance of these heterocycles/natural products in intercepting the key biological pathways.
由胶束纳米反应器引导的有机合成构成了有机化学的基础领域之一,有望以可持续的方式实现化学合成。由于其前景广阔,我们也被吸引去利用胶束来提高化学反应性和选择性,并探索它们在天然产物和杂环化学中的新应用。截至目前,除了金属催化的交叉偶联反应外,没有一篇全面的综述文章突出了在胶束中开发的一系列化学反应,这些反应能生成各种杂环和天然产物/骨架。在这篇综述中,我们记录了过去十年(2014 - 2024年)在胶束中开发的有机反应的进展,这些反应能生成一系列基于杂环和天然产物的骨架。值得注意的是,由于已经有许多关于此类主题的重叠综述,我们排除了与金属催化的交叉偶联反应以及胶束的其他一些方面相关的内容。在本文中,我们简要介绍了胶束催化、胶束中的反应位点区域以及胶束化学中使用的各种表面活性剂。我们的讨论还阐述了与传统有机合成相比胶束催化的重要性。更重要的是,我们综述的重点主要是过去十年在获取杂环和天然产物方面完成的化学转化的集合,以展示通过可持续方式实现的有机合成的进展。在需要的地方,我们还阐述了表面活性剂与驱动反应所需底物的各种相互作用,并讨论了这些杂环/天然产物在拦截关键生物途径中的重要性。