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自牺牲聚合物

Self-immolative polymers.

作者信息

Sagi Amit, Weinstain Roy, Karton Naama, Shabat Doron

机构信息

School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel-Aviv University, Tel Aviv 69978 Israel.

出版信息

J Am Chem Soc. 2008 Apr 23;130(16):5434-5. doi: 10.1021/ja801065d. Epub 2008 Apr 1.

Abstract

Smart polymers are special kinds of polymeric molecules that respond to external stimuli. We have developed a novel smart polymer designed to sequentially disassemble into its building blocks upon initiation by a triggering event at the polymer head. The polymer structure is based on a polyurethane backbone that disassembles through a domino-like, 1,6-elimination and decarboxylation reactions. We synthesized a self-immolative polymer that amplifies a single cleavage reaction into multiple release of fluorogenic molecules and confirmed the head-to-tail disassembly concept. These polymers can be used to prepare highly sensitive molecular sensors with large signal-to-noise ratios. The sensors should be useful for the detection of a wide range of biological and chemical activities through use of the appropriate trigger at the polymer head.

摘要

智能聚合物是一类对外部刺激有响应的特殊聚合物分子。我们开发了一种新型智能聚合物,设计成在聚合物头部的触发事件引发下依次分解为其组成单元。该聚合物结构基于聚氨酯主链,通过类似多米诺骨牌的1,6-消除和脱羧反应进行分解。我们合成了一种自牺牲聚合物,它能将单个裂解反应放大为荧光分子的多次释放,并证实了从头到尾的分解概念。这些聚合物可用于制备具有高信噪比的高灵敏度分子传感器。通过在聚合物头部使用适当的触发物,这些传感器应可用于检测广泛的生物和化学活性。

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