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    气体信号分子响应性高分子的合成及其应用

    Synthesis and Applications of Gaseous Signal Transmitter-Responsive Polymers

    • 摘要: 响应性高分子因其在纳米医药、检测诊断、组织工程等领域的应用受到了广泛关注。一氧化氮、一氧化碳和硫化氢等广泛存在于生物有机体中并对生理和病理过程具有重要调节作用,因此,能够对这些气体信号分子响应的高分子体系具有潜在的生物医用价值。本文简要概述了一氧化氮、一氧化碳和硫化氢等气体信号分子响应性高分子的研究进展,重点关注其设计理念、响应机制以及在荧光成像、药物输运等方面的应用潜能。分析了现有气体响应性高分子体系存在的瓶颈并展望了其发展趋势。

       

      Abstract: Much attention has been paid to stimuli-responsive polymers in the past few decades due to their broad applications in sensing and imaging, nanomedicines, tissue engineering, smart coating and textiles and so on. Of these, gas-responsive polymers stand out due to that the addition and removal of gas stimuli could be repeatedly manipulated in large volume operations. Indeed, carbon dioxide (CO2) and oxygen (O2)-responsive polymers have been well-studied by taking advantage of CO2-reative moieties (e.g., amines, amidines and carboxyl acids) and fluorine-containing residues, respectively. Polymers that can selectively respond to gaseous signal transmitters such as nitric oxide (NO), carbon monoxide (CO) and hydrogen sulfide (H2S) have far less been explored to date, although these signal transmitters are of curial importance in both physiological and pathological processes. In this review article, the recent advances in the synthesis and applications of gaseous signal transmitter-responsive polymers were outlined. Inspired by the designing strategies of fluorescent probes of gaseous signal transmitters, a number of gaseous signal transmitter-responsive polymers can be fabricated through incorporating gaseous signal transmitter-responsive moieties into polymer matrices. These polymers have potential applications in fluorescent sensing, drug delivery and phase transition modulation. We hope more efforts could be devoted to this intriguing field to promote the development of novel gaseous signal transmitter-responsive polymers.

       

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