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Albumin tailoring fluorescence and photothermal conversion effect of near-infrared-II fluorophore with aggregation-induced emission characteristics

机译:具有聚集诱导发射特性的近红外II荧光团的白蛋白定制荧光和光热转换效应

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摘要

Fluorophores with donor-acceptor-donor groups with the emission spanning the second near-infrared window (NIR-II) have recently received great attention for biomedical application. Yet, the mechanism underlying the equilibrium between fluorescence (radiative decay) and photothermal effect (non-radiative decay) of these fluorophores remains elusive. Here, we demonstrate that a lipophilic NIR-II fluorophore, BPBBT, possesses both twisted intramolecular charge transfer (TICT) and aggregation-induced emission (AIE) characteristics. Human serum albumin (HSA) binds to BPBBT, which changes the planarity of the fluorophore and restricts its intramolecular rotation. The binding results in alteration to the equilibrium between AIE and TICT state of BPBBT, tailoring its fluorescence and photothermal efficiency. Under the guidance of intraoperative NIR-II fluorescence image, the prepared HSA-bound BPBBT nanoparticles delineate primary orthotopic mouse colon tumor and metastatic lesions with dimensions as small as 0.5 mm × 0.3 mm, and offer photothermal ablation therapy with optimized timing, dosing and area of the laser irradiation.
机译:具有供体-受体-供体基团且跨第二近红外窗口(NIR-II)发射的荧光团最近在生物医学应用中受到极大关注。然而,这些荧光团的荧光(辐射衰变)和光热效应(非辐射衰变)之间平衡的基础机理仍然难以捉摸。在这里,我们证明了亲脂性的NIR-II荧光团BPBBT,具有扭曲的分子内电荷转移(TICT)和聚集诱导发射(AIE)特性。人血清白蛋白(HSA)与BPBBT结合,这会改变荧光团的平面性并限制其分子内旋转。结合导致BPBBT的AIE和TICT状态之间的平衡发生变化,从而调节其荧光和光热效率。在术中NIR-II荧光图像的指导下,制备的结合HSA的BPBBT纳米颗粒描绘了原发性原位小鼠结肠肿瘤和转移灶,尺寸小至0.5 mm××0.3 mm,并提供了优化时间,剂量和面积的光热消融治疗激光照射。

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