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首页> 外文期刊>Biomaterials >Integration of metal-organic framework with a photoactive porous-organic polymer for interface enhanced phototherapy
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Integration of metal-organic framework with a photoactive porous-organic polymer for interface enhanced phototherapy

机译:用光活性多孔有机聚合物整合金属 - 有机框架,用于增强光疗

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摘要

Porphyrin-based porous organic polymers are highly potential candidates for cancer theranostics. However, uncontrollable particle size and unclear photoactive mechanisms have been deemed to be "Achilles' heels" for their biomedical application. Herein, a facile self-template strategy has been applied to integrate two types of porous materials to build the MOF@POP-PEG nanocomposite (named HUC-PEG). As-synthesized HUC-PEG exhibited controllable particle shape and size, good biocompatibility, and better colloidal stability. Importantly, synergy "0 + 1 > 1" interface effects have been demonstrated to simultaneously enhance both the generation of more singlet oxygen (O-1(2)) for photodynamic therapy (PDT) and local hyperthermia for photothermal therapy (PIT), thus to achieve favorable proliferation inhibition of tumor cell both in vitro and in vivo. Moreover, the strong X-ray attenuating ability of Hf element and excellent photothermal conversion efficacy endow this nanocomposite with computed tomography (CT)/photothermal imaging functions. We believe that our ingenious design may open a new horizon for the preparation of nanoscale POP-based therapeutic agents and also realize a paradigm shift in the understanding of photoactive mechanism in porous materials.
机译:卟啉基多孔有机聚合物是癌症治疗癌的高潜力候选者。然而,对于他们的生物医学应用,无法控制的粒度和不明确的光活性机制被认为是“阿基里斯的脚跟”。这里,已经应用了一种容易自模塑模板策略来整合两种类型的多孔材料以构建MOF @ POP-PEG纳米复合材料(名为HUC-PEG)。 AS合成的HUC-PEG表现出可控的颗粒形状和尺寸,良好的生物相容性和更好的胶体稳定性。重要的是,已经证明了协同作用“0 + 1> 1”界面效果以同时增强用于光动力治疗(PDT)和局部热疗的更多单线氧(O-1(2))和用于光热疗(坑)的局部热疗在体外和体内实现肿瘤细胞的有利增殖抑制。此外,HF元素的强X射线衰减能力和优异的光热转换效能赋予该纳米复合材料,具有计算机断层扫描(CT)/光热成像功能。我们认为,我们的巧妙设计可能开辟了制备基于纳米级POP的治疗剂的新地平线,并且还实现了对多孔材料的光活性机制的理解范式转变。

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