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Photothermally Responsive Conjugated Polymeric Singlet Oxygen Carrier for Phase Change-Controlled and Sustainable Phototherapy for Hypoxic Tumor

机译:用于相变控制和缺氧肿瘤的相变控制和可持续光疗的光热响应缀合的聚合物氧载体

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摘要

Hypoxia significantly compromises the therapeutic performance of photodynamic therapy (PDT) owing to the oxygen level which plays a key role in the production of singlet oxygen (1O2). Herein, the photothermally responsive phase change materials (PCM) are used to encapsulate 1,4-dimethylnaphthalene-functionalized platinum(II)-acetylide conjugated polymer (CP1) with intense near-infrared (NIR) absorption to prepare new 1O2 nanocarriers (CP1-NCs). The 1,4-dimethylnaphthalene moieties in CP1-NCs can trap the 1O2 produced from CP1 under irradiation and form a stable endoperoxide. Then, the endoperoxide undergoes cycloreversion to controllably release 1O2 via the NIR light-triggered photothermal effect of CP1 and controllable phase change of PCM, which can be used for oxygen-independent PDT for hypoxic tumor. Furthermore, the in vivo luminescence imaging-guided synergistic PDT and photothermal therapy showed better efficiency in tumor ablation. The smart design shows the potent promise of CP1-NCs in PCM-controlled and sustainable phototherapy under tumor hypoxic microenvironment, providing new insights for constructing oxygen-independent precise cancer phototherapeutic platform.
机译:缺氧显着地损害了光动力治疗(PDT)的治疗性能,由于氧气水平在单次氧(1O2)的生产中起着关键作用。在此,光热响应相变材料(PCM)用于将1,4-二甲基萘官能化铂(II) - 乙酰缀合物(CP1)用强烈的近红外(NIR)吸收包封,以制备新的1O2纳米载体(CP1- ncs)。 CP1-NCS中的1,4-二甲基萘部分可以在照射下捕获由CP1产生的1O2,形成稳定的内末氧化酯。然后,通过CP1的CP1的NIR光触发的光热效应和PCM的可控相变,通过NIR光触发的光热效应来控制循环转化以可控地释放102次,其可用于缺氧肿瘤的无关PDT。此外,体内发光成像引导的协同PDT和光热疗在肿瘤消融方面表现出更好的效率。智能设计表明CP1-NCS在肿瘤缺氧微环境下PCM控制和可持续光疗中CP1-NCS的有效承诺,为构建氧依赖性精确癌症光治疗平台提供了新的见解。

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