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酶触发胶束解聚为可调荧光响应的超分子翻译

Supramolecular Translation of Enzymatically Triggered Disassembly of Micelles into Tunable Fluorescent Responses.

作者信息

Buzhor Marina, Harnoy Assaf J, Tirosh Einat, Barak Ayana, Schwartz Tal, Amir Roey J

机构信息

Department of Organic Chemistry, School of Chemistry, Faculty of Exact Sciences, Tel Aviv University, Tel Aviv, 69978 (Israel).

Tel Aviv University Center for Nanoscience and Nanotechnology, Tel Aviv University, Tel Aviv, 69978 (Israel).

出版信息

Chemistry. 2015 Oct 26;21(44):15633-8. doi: 10.1002/chem.201502988. Epub 2015 Sep 14.

Abstract

The need for advanced fluorescent imaging and delivery platforms has motivated the development of smart probes that change their fluorescence in response to external stimuli. Here a new molecular design of fluorescently labeled PEG-dendron hybrids that self-assemble into enzyme-responsive micelles with tunable fluorescent responses is reported. In the assembled state, the fluorescence of the dyes is quenched or shifted due to intermolecular interactions. Upon enzymatic cleavage of the hydrophobic end-groups, the labeled polymeric hybrids become hydrophilic, and the micelles disassemble. This supramolecular change is translated into a spectral response as the dye-dye interactions are eliminated and the intrinsic fluorescence is regained. We demonstrate the utilization of this molecular design to generate both Turn-On and spectral shift responses by adjusting the type of the labeling dye. This approach enables transformation of non-responsive labeling dyes into smart fluorescent probes.

摘要

对先进荧光成像和递送平台的需求推动了智能探针的发展,这些探针会根据外部刺激改变其荧光。本文报道了一种新的荧光标记聚乙二醇 - 树枝状大分子杂化物的分子设计,该杂化物可自组装成具有可调荧光响应的酶响应性胶束。在组装状态下,由于分子间相互作用,染料的荧光被淬灭或发生位移。当疏水端基被酶切时,标记的聚合物杂化物变得亲水,胶束解体。随着染料 - 染料相互作用的消除和固有荧光的恢复,这种超分子变化转化为光谱响应。我们通过调整标记染料的类型,证明了利用这种分子设计产生开启型和光谱位移响应。这种方法能够将无响应的标记染料转化为智能荧光探针。

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