Grupo de Investigación en Química y Biología, Departamento de Química y Biología, Universidad del Norte, Km 5 vía Puerto Colombia 1569, Barranquilla Atlántico 081007, Colombia.
Grupo de Catálisis, Escuela de Ciencias Químicas, Universidad Pedagógica y Tecnológica de Colombia UPTC, Avenida Central del Norte 39-115, Tunja 150003, Colombia.
Molecules. 2020 Jan 24;25(3):505. doi: 10.3390/molecules25030505.
Focusing on the literature progress since 2002, the present review explores the highly significant role that multicomponent reactions (MCRs) have played as a very important tool for expedite synthesis of a vast number of organic molecules, but also, highlights the fact that many of such molecules are biologically active or at least have been submitted to any biological screen. The selected papers covered in this review must meet two mandatory requirements: (1) the reported products should be obtained via a multicomponent reaction; (2) the reported products should be biologically actives or at least tested for any biological property. Given the diversity of synthetic approaches utilized in MCRs, the highly diverse nature of the biological activities evaluated for the synthesized compounds, and considering their huge structural variability, much of the reported data are organized into concise schemes and tables to facilitate comparison, and to underscore the key points of this review.
聚焦于 2002 年以来的文献进展,本综述探讨了多组分反应(MCRs)作为加速大量有机分子合成的重要工具所扮演的重要角色,同时也强调了许多这样的分子具有生物活性,或者至少已经经过了任何生物筛选。本综述中涵盖的选定论文必须满足两个强制性要求:(1)报道的产物应通过多组分反应获得;(2)报道的产物应该具有生物活性,或者至少经过任何生物性质的测试。鉴于 MCRs 中使用的合成方法的多样性,以及对合成化合物进行评估的生物活性的高度多样性,并且考虑到它们巨大的结构变异性,许多报道的数据被组织成简洁的图表和表格,以方便比较,并强调本综述的要点。