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An aggregation-induced emission dye-powered afterglow luminogen for tumor imaging

机译:用于肿瘤成像的聚集诱导的发射染料供电的余辉光学原

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Semiconducting polymer (SP)-based afterglow luminogens are showing increasing potential for in vivo imaging because of their long-life luminescence and the associated benefits ( e.g. , zero-autofluorescence background and high signal-to-noise ratio). However, such organic afterglow luminescence agents are still rare and their application is usually limited by their relatively low afterglow intensity and short afterglow duration. Herein, we report an aggregation-induced emission (AIE) dye-powered SP afterglow luminogen by leveraging on the unique characteristics of an AIE dye to circumvent the concentration-quenching effect, enhance afterglow intensity and prolong afterglow duration. The underlying working mechanism is investigated by a series of experiments and it is found that the AIE dye provides sufficient ~(1) O _(2) to excite SPs and form massive amounts of high-energy intermediates, and then the SP intermediates emit photons that can activate the AIE dye to generate ~(1) O _(2) and simultaneously trigger the energy transfer process between the SPs and AIE dye, resulting in a deep-red emission. It is this closed-loop of “photon– ~(1) O _(2) –SP intermediates–photon” that provides the afterglow emission even after the cessation of the excitation light. The as-prepared luminogen shows good performance in in vivo tumour imaging. This study demonstrates the advantages of AIE-facilitated afterglow luminescence and discloses its mechanism, and hopefully it could inspire the development of other innovative designs for cancer theranostics.
机译:基于半导体聚合物(SP)的半导体聚合物(SP)含有较大的体内成像的潜力,因为它们的长寿命发光和相关益处(例如,零自发荧光背景和高信噪比)。然而,这种有机余辉发光剂仍然是罕见的,其施用通常受它们的相对低的余辉强度和短余量持续时间限制。在此,我们通过利用AIE染料的独特特性来报告聚集诱导的发射(AIE)染料SP乳胶强泡型以避免浓缩淬火效果,增强余辉强度和延长余量持续时间。通过一系列实验研究了潜在的工作机制,发现AIE染料提供足够的〜(1)o _(2)来激发SPS并形成大量的高能量中间体,然后SP中间体发出光子这可以激活AIE染料以产生〜(1)O _(2),并同时触发SPS和AIE染料之间的能量转移过程,导致深红色发射。这是这种“光子 - 〜(1)O _(2)-sp中间体 - 光子”的闭环,即使在励磁光的停止之后也提供了余辉发射。 AS制备的光氨酸在体内肿瘤成像中表现出良好的性能。本研究表明AIE促进的余辉发光并披露其机制,希望它可以激发癌症治疗癌症其他创新设计的发展。

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