Dine Ilili, Mulugeta Endale, Melaku Yadessa, Belete Melis
Department of Applied Chemistry, School of Applied Natural Science, Adama Science and Technology University P.O. Box 1888 Adama Ethiopia
RSC Adv. 2023 Mar 15;13(13):8657-8682. doi: 10.1039/d3ra00749a. eCollection 2023 Mar 14.
4-Quinolone and its analogs are heterocyclic classes of organic compounds displaying biologically active and a broad spectrum of pharmaceutical drug scaffolds. 4-Quinolone is the first-line chemotherapeutic treatment for a wide spectrum of bacterial infections. Recently, 4-quinolone and its derivatives have been shown to have the potential to cure and regulate various acute and chronic diseases, including pain, ischemia, immunomodulation, inflammation, malarial, bacterial infection, fungal infection, HIV, and cancer, based on several reports. This review highlights and provides brief information to better understand the development of experimental progress made to date in the synthetic protocol towards 4-quinolone and its analogs. Thus, classical synthesis protocol, metal-free reaction protocol, and transition metal-catalyzed reaction procedures are briefly discussed along with the pharmaceutical activities of selected 4-quinolone derivatives.
4-喹诺酮及其类似物是一类杂环有机化合物,具有生物活性且是多种药物支架。4-喹诺酮是治疗多种细菌感染的一线化疗药物。最近,根据几份报告显示,4-喹诺酮及其衍生物有治愈和调节各种急慢性疾病的潜力,包括疼痛、缺血、免疫调节、炎症、疟疾、细菌感染、真菌感染、艾滋病和癌症。本综述着重介绍并简要提供信息,以便更好地了解迄今为止在4-喹诺酮及其类似物合成方案方面所取得的实验进展。因此,简要讨论了经典合成方案、无金属反应方案和过渡金属催化反应程序以及所选4-喹诺酮衍生物的药物活性。