Xue Liu, Jiangao Li, Fei Zhang, Dingyuan Yan, Lei Wang, Dong Wang, Ben Zhong Tang
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Herein, a novel nanomedicine Ir@PPEG-MeEPO was ingeniously constructed by integrating beforehand <sup>1</sup>O<sub>2</sub>-charged amphiphilic polymer and well-tailored Ir(III) complex IrDPTP, which was featured by second near-infrared (NIR-II) aggregation-induced emission (AIE) tendency, efficient reactive oxygen species (ROS) generation, good photothermal conversion efficiency and high-performance hydrogen gas production. To the best of our knowledge, IrDPTP held the longest emission wavelength among all reported AIE Ir (III) complexes. Moreover, Ir@PPEG-MeEPO was capable of controllably releasing ROS via triggered photothermal effect upon NIR irradiation, making it well-adapted to hypoxic environment of tumor. 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引用次数: 0
摘要
光驱动的癌症治疗技术以其高效、可控性强和无创等特点,显示出不竭的生命力。探索一种能同时提供多模式诊断成像和协同光疗的全方位治疗材料是一项极具吸引力但又极具挑战性的任务。在此,我们通过事先将带1O2电荷的两亲性聚合物和精心定制的Ir(III)复合物IrDPTP整合在一起,巧妙地构建了一种新型纳米药物Ir@PPEG-MeEPO,它具有二次近红外(NIR-II)聚集诱导发射(AIE)趋势、高效活性氧(ROS)生成、良好的光热转换效率和高性能氢气产生等特点。据我们所知,IrDPTP 是所有已报道的 AIE Ir (III) 复合物中发射波长最长的。此外,Ir@PPEG-MeEPO 还能在近红外照射下通过触发光热效应可控地释放 ROS,因此非常适合肿瘤的缺氧环境。Ir@PPEG-MeEPO的这些鲜明特点使其在近红外-II荧光-光声-光热三模成像和光动力-光热-氢气三模治疗的六重疗法上具有前所未有的性能,可精确诊断肿瘤并彻底消除肿瘤。这项研究将为探索实用癌症治疗的卓越纳米药物开辟新的前景。
Light-driven sextuple theranostics: nanomedicine involving second near-infrared AIE-active Ir(III) complex for prominent cancer treatment
Light-driven cancer theranostics has shown inexhaustible and vigorous vitality by virtue of its high efficacy, prominent controllability and noninvasiveness. Exploration of an all-round theranostic material simultaneously affording both multimodal diagnosis imaging and synergistic phototherapy would be an appealing yet significantly challenging task. Herein, a novel nanomedicine Ir@PPEG-MeEPO was ingeniously constructed by integrating beforehand 1O2-charged amphiphilic polymer and well-tailored Ir(III) complex IrDPTP, which was featured by second near-infrared (NIR-II) aggregation-induced emission (AIE) tendency, efficient reactive oxygen species (ROS) generation, good photothermal conversion efficiency and high-performance hydrogen gas production. To the best of our knowledge, IrDPTP held the longest emission wavelength among all reported AIE Ir (III) complexes. Moreover, Ir@PPEG-MeEPO was capable of controllably releasing ROS via triggered photothermal effect upon NIR irradiation, making it well-adapted to hypoxic environment of tumor. Those distinctive characteristics of Ir@PPEG-MeEPO endowed it with unprecedented performance on sextuple theranostics comprised of NIR-II fluorescence-photoacoustic-photothermal trimodal imaging and photodynamic-photothermal-hydrogen trimodal therapy, witnessed by the precise tumor diagnosis and complete tumor elimination. The study would open up new perspectives for the exploration of superior nanomedicine for practical cancer theranostics.
期刊介绍:
Science China Chemistry, co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China and published by Science China Press, publishes high-quality original research in both basic and applied chemistry. Indexed by Science Citation Index, it is a premier academic journal in the field.
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