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首页> 外文期刊>Nanoscale >A polydopamine-gated biodegradable cascade nanoreactor for pH-triggered and photothermal-enhanced tumor-specific nanocatalytic therapy
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A polydopamine-gated biodegradable cascade nanoreactor for pH-triggered and photothermal-enhanced tumor-specific nanocatalytic therapy

机译:一个polydopamine-gated可生物降解的级联nanoreactor pH-triggered和photothermal-enhanced肿瘤特异性nanocatalytic疗法

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摘要

Despite the great potential of cascade catalytic reactions in tumor treatment, uncontrolled catalytic activities in vivo lead to inevitable off-target toxicity to normal tissues, which greatly hampers their clinical conversion. Herein, an intelligent cascade nanoreactor (hMnO(2)-Au@PDA, hMAP) was constructed by depositing glucose oxidase (GOx)-mimicking ultrasmall gold nanoparticles (Au NPs) into honeycomb-shaped manganese oxide (hMnO(2)) nanostructures and then coating them with polydopamine (PDA) to achieve pH-responsive and photothermal-enhanced nanocatalytic therapy. Upon exposure to the mild acidic tumor microenvironment (TME), the PDA gatekeeper would collapse, and the inner hMnO(2) could simultaneously deplete glutathione (GSH) and generate Mn2+, while a considerable amount of H2O2 produced from the oxidation of glucose by GOx-mimicking Au NPs could accelerate the Mn2+-mediated Fenton-like reaction, yielding sufficient highly toxic OH. More importantly, the pH-responsive cascade reaction between Au NPs and hMnO(2) could be further enhanced by localized hyperthermia induced from PDA under near-infrared (NIR) laser irradiation, thereby inducing significant cell apoptosis in vitro and tumor inhibition in vivo. This work provided a promising paradigm by innovatively designing a TME-responsive and photothermal-enhanced cascade catalytic nanoreactor for safe and efficient cancer therapy.
机译:尽管级联催化的巨大潜力反应在肿瘤治疗中,不受控制在体内催化活动导致不可避免的不相干的,正常组织毒性极大地妨碍了他们的临床转化。在此,一个聪明的级联nanoreactor(hMnO (2) -Au@PDA hMAP)是由将葡萄糖氧化酶(气态氧)模仿超微金纳米粒子(Au NPs)蜂巢形锰氧化物(hMnO (2))纳米结构和涂层实现pH-responsive和polydopamine (PDA)photothermal-enhanced nanocatalytic疗法。暴露在温和的酸性肿瘤微环境(时差),PDA的看门人崩溃,内心hMnO (2)同时耗尽谷胱甘肽(GSH)和生成Mn2 +,而大量的过氧化氢氧化葡萄糖的产生GOx-mimicking盟NPs可能加速Mn2 +介导Fenton-like反应,产生足够的剧毒哦。pH-responsive盟NPs与级联反应hMnO(2)可以进一步加强本地化高热从PDA在近红外感应(NIR)激光照射,从而诱导显著的体外细胞凋亡和肿瘤抑制体内。有前途的范式的创新设计TME-responsive和photothermal-enhanced级联催化nanoreactor安全、高效癌症治疗。

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