Department of Chemistry, University of North Bengal, Darjeeling - 734013, India.
Org Biomol Chem. 2020 Jun 24;18(24):4497-4518. doi: 10.1039/d0ob00742k.
Quinazolinone and its congeners are ubiquitous structural motifs found in numerous natural products due to their wide applications as anticancer, antiviral, anti-inflammatory, antifolate and antitumor agents etc. Previously, the synthetic community devoted their efforts towards synthetic approaches but recent years have also witnessed an upsurge in the diversification of this scaffold and its applications. Thus, this review (from 2011 to the beginning of 2020) comprehensively focuses on transition metal catalyzed C-H bond functionalization namely arylation, amination, acetoxylation, amidation, alkylation, alkenylation, alkynylation, halogenation, thiolation, trifluoroethylation etc. of quinazolin-4(3H)-one. Additionally, we also briefly elucidate the plausible mechanistic pathways, scope and limitations.
喹唑啉酮及其同系物是在许多天然产物中普遍存在的结构基序,由于它们在抗癌、抗病毒、抗炎、抗叶酸和抗肿瘤等方面的广泛应用。以前,合成界致力于合成方法的研究,但近年来,该支架的多样化及其应用也有所增加。因此,本综述(从 2011 年到 2020 年初)全面关注过渡金属催化的 C-H 键功能化,即喹唑啉-4(3H)-酮的芳基化、氨基化、乙酰氧基化、酰胺化、烷基化、烯基化、炔基化、卤化、硫代化、三氟乙氧基化等。此外,我们还简要阐明了可能的机理途径、范围和局限性。