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Acridine-1,8-diones: Synthesis and Biological Applications

机译:Acridine-1,8-Diones:合成和生物应用

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摘要

The unpretentious features of acridine-1,8-diones viz. presence of N-heteroatom, electronic behavior, acridine ring skeleton and wide possibilities of diversified substitution, bichromophor- ic structure and interaction ability with various proteins, make them an interesting scaffold of heterocyclic, medicinal and industrial chemistry. A tremendous development in the field of acridinediones in terms of synthetic strategies, bioactivity, industrial and other applicability has been explored in past four decades. In this perspective, an overview has been given on the state-of-art discoveries for the synthesis and biological applications of acridine-1,8-diones from 1980 to 2020. The study highlighted the history, chemistry and properties of these derivatives and provided deep insights into the synthetic protocols using various catalysts and techniques like nano- catalyst, ionic-liquids, microwave, ultrasound etc. under varied conditions along with biological activity against many lethal diseases. Finally, the respective prospects and limitations to these systems have been addressed. Furthermore, attempts have been done to bring many outstanding researches together and express the significance of acridine-1,8-diones through several aspects.
机译:Acridine-1,8-Diones的朴实特征,即。 N-杂化,电子行为,尖锐的环骨架以及多种替代,双纹料结构和与各种蛋白质的相互作用能力的广泛可能性,使它们成为杂环,药物和工业化学的有趣支架。在过去的四十年中,已经探索了杂物策略,生物活性,工业和其他适用性方面的巨大发展。从这个角度来看,已经对1980年至2020年Acridine-1,8-二酮的合成和生物学应用的最新发现进行了概述。该研究强调了这些衍生物的历史,化学和性质,并提供了。使用各种催化剂和技术(如纳米催化剂,离子 - 液体,微波,超声波等)在各种条件下以及针对许多致命疾病的生物学活性,对合成方案进行深入了解。最后,已经解决了这些系统的各个前景和局限性。此外,已经尝试将许多杰出的研究融合在一起,并通过几个方面表达Acridine-1,8-Diones的重要性。

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