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首页> 外文期刊>Angewandte Chemie >Self-Boosting Catalytic Nanoreactors Integrated with Triggerable Crosslinking Membrane Networks for Initiation of Immunogenic Cell Death by Pyroptosis
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Self-Boosting Catalytic Nanoreactors Integrated with Triggerable Crosslinking Membrane Networks for Initiation of Immunogenic Cell Death by Pyroptosis

机译:自增强催化纳米反应器与可触发的交联膜网络集成,用于通过辐射滴眼发育免疫原性细胞死亡

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摘要

Synthetic polymer vesicles spur novel strategies for producing intelligent nanodevices with precise and specific functions. Engineering vesicular nanodevices with tunable permeability by a general platform without involving trade-offs between structural integrity, flexibility, and functionality remains challenging. Herein, we present a general strategy to construct responsive nanoreactors based on polyion complex vesicles by integrating stimuli-responsive linkers into a crosslinking membrane network. The formulated ROS-responsive nanoreactor with self-boosting catalytic glucose oxidation could protect glucose oxidase (GOD) to achieve cytocidal function by oxidative stress induction and glucose starvation, which is ascribed to stimuli-responsive vesicle expansion without fracture and size-selective cargo release behavior. The GOD-loaded therapeutic nanoreactor induced an immunostimulatory form of cell death by pyroptosis, which has the great potential to prime anti-tumor immune responses.
机译:合成聚合物囊泡采用精确且特定的功能生产智能纳米型型号的新型策略。工程纳米纳米纳米型在不涉及结构完整性,灵活性和功能之间的权衡而不涉及权衡的渗透性,仍然有挑战性。在此,我们通过将刺激响应式接头集成到交联膜网络中,提出了一种基于聚硫综合囊泡的响应性纳米反应器来构建响应性纳米反应器。具有自增强催化葡萄糖氧化的配制的ROS响应纳米反应器可以保护葡萄糖氧化酶(上帝)通过氧化应激诱导和葡萄糖饥饿来实现细胞癌功能,这归因于刺激响应囊泡膨胀而不裂缝和大小选择性货物释放行为。上帝加载的治疗性纳米反应器诱导糊化瘤诱导免疫刺激形式的细胞死亡,这具有赋予抗肿瘤免疫应答的巨大潜力。

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