基于 AuPt NPs@ZIF-90 的高效仿生纳米酶用于循环催化多模式肿瘤治疗。

Wan Huang, Song Zhang, Li Luo, Yalong Pan, Lijun Han, Yao Yu
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引用次数: 0

摘要

基于纳米酶的多模式疗法有望成为治疗肿瘤的新选择。然而,纳米酶的催化效率和肿瘤的缺氧微环境限制了纳米酶的治疗效果。在此,我们筛选了一种咪达唑-2-甲醛(ICA)小分子制备ZIF-90,并嵌入金和铂纳米颗粒得到ZAAP。ZAAP具有多酶级联催化过程,包括通过 "仿生 "催化微环境大大增强过氧化物酶活性(增强了23倍)、过氧化氢酶和葡萄糖氧化酶活性,从而分解葡萄糖以持续提供H2O2、过氧化氢酶分解H2O2以产生ROS,以及过氧化物酶诱导制氧以持续氧化葡萄糖。上述过程构建了一个催化循环,极大地促进了 ROS 和氧的生成以及葡萄糖的消耗,从而发挥化学动态治疗功能,缓解肿瘤缺氧。除了ZAAP的光热作用外,还实现了化学动态/光热/饥饿疗法的协同治疗,2周内肿瘤抑制率达到96.4%,表明ZAAP在基于纳米酶的肿瘤多模式协同治疗中具有巨大潜力。
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Efficient bionic nanozyme based on AuPt NPs@ZIF-90 used for cyclic catalysis multimodal tumor therapy.

Multimodal therapy based on nanozyme is expected to become a novel option for tumor treatment. However, the catalytic efficiency of nanozymes and the hypoxia microenvironment of tumors limit the therapeutic effect of nanozymes. Herein, we screened a small molecule of midazole-2-carboxaldehyde (ICA) to prepare ZIF-90 and embedded gold and platinum nanoparticles to obtain ZAAP. ZAAP possessed a multi-enzymatic cascade of catalytic processes including greatly enhanced peroxidase activity via a "bionic" catalytic microenvironment (enhanced 23-fold), catalase and glucose oxidase activities, resulting in glucose decomposition to continuously supply H2O2, peroxidases for the catabolism of H2O2 to generate ROS and peroxidase-induced oxygen generation for continuous oxidation of glucose. All the above processes built a catalysis cycle that greatly promotes the generation of ROS and oxygen as well as the consumption of glucose, leading to the chemical dynamic therapy function and alleviating tumor hypoxia. In addition to the photothermal effect of ZAAP, a synergistic treatment of chemical dynamic/photothermal/starvation therapy was achieved, and the tumor inhibition rate reached 96.4% within 2 weeks, indicating that ZAAP shows great potential in nanozyme-based synergistic multimodal tumor treatment.

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来源期刊
Journal of materials chemistry. B
Journal of materials chemistry. B 化学科学, 工程与材料, 生命科学, 分析化学, 高分子组装与超分子结构, 高分子科学, 免疫生物学, 免疫学, 生化分析及生物传感, 组织工程学, 生物力学与组织工程学, 资源循环科学, 冶金与矿业, 生物医用高分子材料, 有机高分子材料, 金属材料的制备科学与跨学科应用基础, 金属材料, 样品前处理方法与技术, 有机分子功能材料化学, 有机化学
CiteScore
12.00
自引率
0.00%
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0
审稿时长
1 months
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