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Hollow MnO 2 as a tumor-microenvironment-responsive biodegradable nano-platform for combination therapy favoring antitumor immune responses

机译:空心MnO 2作为肿瘤微环境响应性可生物降解的纳米平台,用于联合治疗,有利于抗肿瘤免疫反应

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Herein, an intelligent biodegradable hollow manganese dioxide (H-MnO2) nano-platform is developed for not only tumor microenvironment (TME)-specific imaging and on-demand drug release, but also modulation of hypoxic TME to enhance cancer therapy, resulting in comprehensive effects favoring anti-tumor immune responses. With hollow structures, H-MnO2 nanoshells post modification with polyethylene glycol (PEG) could be co-loaded with a photodynamic agent chlorine e6 (Ce6), and a chemotherapy drug doxorubicin (DOX). The obtained H-MnO2-PEG/C&D would be dissociated under reduced pH within TME to release loaded therapeutic molecules, and in the meantime induce decomposition of tumor endogenous H2O2 to relieve tumor hypoxia. As a result, a remarkable in vivo synergistic therapeutic effect is achieved through the combined chemo-photodynamic therapy, which simultaneously triggers a series of anti-tumor immune responses. Its further combination with checkpoint-blockade therapy would lead to inhibition of tumors at distant sites, promising for tumor metastasis treatment.
机译:本文中,开发了一种智能的可生物降解的中空二氧化锰(H-MnO2)纳米平台,不仅用于肿瘤微环境(TME)特定的成像和按需释放药物,还用于调节低氧TME以增强癌症治疗,从而获得全面的治疗效果。有利于抗肿瘤免疫反应的作用。具有空心结构,用聚乙二醇(PEG)修饰后的H-MnO2纳米壳可以与光动力剂氯e6(Ce6)和化疗药物阿霉素(DOX)共同装载。所获得的H-MnO2-PEG / C&D将在TME中降低的pH下解离以释放负载的治疗分子,同时诱导肿瘤内源性H2O2分解以缓解肿瘤缺氧。结果,通过组合的化学光动力疗法实现了显着的体内协同治疗效果,其同时触发了一系列的抗肿瘤免疫反应。它与检查点封锁疗法的进一步结合将导致在远处抑制肿瘤,有望用于肿瘤转移治疗。

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