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大环多胺的合成与应用进展

Advances in the synthesis and applications of macrocyclic polyamines.

作者信息

Gao Yongguang, Guo Lina, Liu Xinhua, Chen Na, Yang Xiaochun, Zhang Qing

机构信息

Department of Chemistry, Tangshan Normal University, Tangshan 063000, People's Republic of China.

Hebei Key Laboratory of Degradable Polymers, Tangshan Normal University, Tangshan 063000, People's Republic of China.

出版信息

R Soc Open Sci. 2024 Jun 19;11(6):231979. doi: 10.1098/rsos.231979. eCollection 2024 Jun.

Abstract

Macrocyclic polyamines constitute a significant class of macrocyclic compounds that play a pivotal role in the realm of supramolecular chemistry. They find extensive applications across diverse domains including industrial and agricultural production, clinical diagnostics, environmental protection and other multidisciplinary fields. Macrocyclic polyamines possess a distinctive cavity structure with varying sizes, depths, electron-richness degrees and flexibilities. This unique feature enables them to form specific supramolecular structures through complexation with diverse objects, thereby attracting considerable attention from chemists, biologists and materials scientists alike. However, there is currently a lack of comprehensive summaries on the synthesis methods for macrocyclic polyamines. In this review article, we provide an in-depth introduction to the synthesis of macrocyclic polyamines while analysing their respective advantages and disadvantages. Furthermore, we also present an overview of the recent 5-year advancements in using macrocyclic polyamines as non-viral gene vectors, fluorescent probes, diagnostic and therapeutic reagents as well as catalysts. Looking ahead to future research directions on the synthesis and application of macrocyclic polyamines across various fields will hopefully inspire new ideas for their synthesis and use.

摘要

大环多胺是一类重要的大环化合物,在超分子化学领域发挥着关键作用。它们在包括工农业生产、临床诊断、环境保护等多学科领域有着广泛应用。大环多胺具有独特的空腔结构,其大小、深度、富电子程度和柔韧性各不相同。这一独特特性使它们能够通过与各种客体络合形成特定的超分子结构,从而引起了化学家、生物学家和材料科学家的广泛关注。然而,目前缺乏关于大环多胺合成方法的全面综述。在这篇综述文章中,我们深入介绍了大环多胺的合成方法,同时分析了它们各自的优缺点。此外,我们还概述了大环多胺在作为非病毒基因载体、荧光探针、诊断和治疗试剂以及催化剂方面近五年的进展。展望大环多胺在各个领域的合成和应用的未来研究方向,有望激发其合成和使用的新思路。

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