Marotta Ludovica, Rossi Sara, Ibba Roberta, Brogi Simone, Calderone Vincenzo, Butini Stefania, Campiani Giuseppe, Gemma Sandra
Department of Biotechnology, Chemistry and Pharmacy, University of Siena, Siena, Italy.
Department of Pharmacy, University of Pisa, Pisa, Italy.
Front Chem. 2022 Sep 12;10:988376. doi: 10.3389/fchem.2022.988376. eCollection 2022.
The sustainable use of resources is essential in all production areas, including pharmaceuticals. However, the aspect of sustainability needs to be taken into consideration not only in the production phase, but during the whole medicinal chemistry drug discovery trajectory. The continuous progress in the fields of green chemistry and the use of artificial intelligence are contributing to the speed and effectiveness of a more sustainable drug discovery pipeline. In this light, here we review the most recent sustainable and green synthetic approaches used for the preparation and derivatization of chalcones, an important class of privileged structures and building blocks used for the preparation of new biologically active compounds with a broad spectrum of potential therapeutic applications. The literature here reported has been retrieved from the SciFinder database using the term "chalcone" as a keyword and filtering the results applying the concept: "green chemistry", and from the Reaxys database using the keywords "chalcone" and "green". For both databases the time-frame was 2017-2022. References were manually selected based on relevance.
资源的可持续利用在包括制药在内的所有生产领域都至关重要。然而,可持续性这一方面不仅需要在生产阶段加以考虑,还需要在整个药物化学药物发现过程中予以考量。绿色化学领域和人工智能应用的不断进步,正在推动更具可持续性的药物发现流程的速度和效率。有鉴于此,我们在此综述了用于查尔酮制备和衍生化的最新可持续和绿色合成方法,查尔酮是一类重要的特权结构和构建模块,用于制备具有广泛潜在治疗应用的新型生物活性化合物。此处报告的文献是从SciFinder数据库中以“查尔酮”为关键词检索,并应用“绿色化学”概念对结果进行筛选得到的;同时也是从Reaxys数据库中使用关键词“查尔酮”和“绿色”检索得到的。两个数据库的时间范围均为2017 - 2022年。参考文献是根据相关性手动挑选的。