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首页> 外文期刊>Theranostics >A tumor microenvironment responsive biodegradable CaCOsub3/sub/MnOsub2/sub- based nanoplatform for the enhanced photodynamic therapy and improved PD-L1 immunotherapy
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A tumor microenvironment responsive biodegradable CaCOsub3/sub/MnOsub2/sub- based nanoplatform for the enhanced photodynamic therapy and improved PD-L1 immunotherapy

机译:一种肿瘤微环境响应性可生物降解的Caco 3 / mnO <亚> 2 基于增强的光动力治疗和改进的PD-L1免疫疗法

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The low efficiency of photodynamic therapy (PDT) is caused by tumor hypoxia and the adaptive immune resistance/evasion of tumor cells, while the currently emerging immune checkpoint therapy restores the intrinsic immune capacities but can't directly attack the tumor cells. Methods: Herein we report an integrated nanoplatform that combines PDT with immunotherapy to enhance photodynamic therapeutic effects and simultaneously inhibit tumor cells resistance/evasion. To achieve this, we fabricated Mn@CaCOsub3/sub/ICG nanoparticles and loaded them with PD-L1-targeting siRNA. Results: Thanks to the protection of CaCOsub3/sub on the loaded ICG and the oxygen produced by MnOsub2/sub, an enhanced photodynamic therapeutic effect in vitro was observed. In vivo experiments demonstrated that the nanoplatform could efficiently deliver the loaded drug to the tumor tissues and significantly improve tumor hypoxia, which further contributes to the therapeutic effect of PDT in vivo . Moreover, the synergistic benefits derived from the siRNA, which silenced the checkpoint gene PD-L1 that mediates the immune resistance/evasion, resulted in a surprising therapeutic effect to rouse the immune system. Conclusions: The combination treatment strategy has great potential to be developed as a new and robust method for enhanced PDT therapy with high efficiency and a powerful antitumor immune response based on PD-L1 blockade.
机译:光动力治疗(PDT)的低效率是由肿瘤缺氧和肿瘤细胞的自适应免疫抗性/逃避引起的,而目前出现的免疫检查点治疗恢复了内在的免疫容量,但不能直接攻击肿瘤细胞。方法:在此,我们报告了一种集成的纳米片,将PDT与免疫疗法结合以增强光动力治疗效果,同时抑制肿瘤细胞抗性/逃避。为此,我们制造了Mn @ Caco 3 / ICG纳米颗粒,并用PD-L1靶向siRNA加载它们。结果:由于Caco 3 在负载的ICG上的保护和MnO 2 产生的氧气,观察到体外增强的光动力治疗效果。体内实验表明,纳米纳薄作品可以有效地将负载药物递送至肿瘤组织,并显着改善肿瘤缺氧,这进一步有助于PDT在体内的治疗作用。此外,源自siRNA的协同益处,沉默介导免疫抗性/逃避的检查点基因PD-L1,导致唤醒免疫系统的令人惊讶的治疗效果。结论:组合治疗策略具有巨大的潜力,可作为增强PDT治疗的新的和稳健方法,并基于PD-L1封闭的抗肿瘤免疫应答。

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