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具有超氧化物歧化酶样活性的双金属铜/锌单原子纳米酶

Bimetallic Cu/Zn Single-Atom Nanozyme with Superoxide Dismutase-Like Activity.

作者信息

Hamed Eslam M, Fung Fun Man, Li Sam F Y

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore, 117543, Singapore.

Department of Chemistry, Faculty of Science, Ain Shams University, Abbassia, Cairo, 11566, Egypt.

出版信息

Small. 2025 Sep;21(36):e03879. doi: 10.1002/smll.202503879. Epub 2025 Jul 20.

Abstract

The superoxide ion (O), a radical species, is significant in chemical and biological systems. Nanozymes, enzyme-mimicking nanomaterials, have been developed to replicate superoxide dismutase (SOD), which counters O. Traditionally, nano ceria (CeO) is used for SOD mimicry due to its Ce/Ce cycling ability, but issues like toxicity, biodistribution, aggregation, and specificity hinder practical use. Single-atom nanozymes (SANs) offer a solution, with metal centers mimicking natural metal-based enzymes. A Cu/Zn bimetallic SAN is synthesized, structurally resembling natural SOD and exhibiting comparable activity. Its performance is assessed by capturing superoxide radicals and inhibiting Nitro-blue tetrazolium (NBT) photoreduction to blue Formazan. The Cu/Zn-SAN shows a half-maxima inhibitory concentration (IC) of 0.115 µg mL and a catalytic activity of 7820 U mg, compared to 4264 U mg for the natural SOD enzyme. Unlike many dual-metal nanozymes with multiple ROS activities, Cu/Zn-SAN selectively mimics SOD activity with no detectable oxidase or peroxidase-like behavior. Additionally, its performance in cigarette smoke extract demonstrates its practical relevance and biological safety. These findings highlight its potential for reducing oxidative stress in cardiovascular, inflammatory, and neurodegenerative diseases, as well as applications in cosmetic anti-aging products and skin protection, offering a promising alternative to traditional nanozymes.

摘要

超氧阴离子(O)作为一种自由基,在化学和生物系统中具有重要意义。纳米酶,即模拟酶的纳米材料,已被开发用于复制超氧化物歧化酶(SOD),以对抗O。传统上,纳米氧化铈(CeO)因其Ce/Ce循环能力而被用于模拟SOD,但毒性、生物分布、聚集和特异性等问题阻碍了其实际应用。单原子纳米酶(SANs)提供了一种解决方案,其金属中心可模拟天然金属基酶。合成了一种Cu/Zn双金属SAN,其结构类似于天然SOD并表现出可比的活性。通过捕获超氧自由基和抑制硝基蓝四唑(NBT)光还原为蓝色甲臜来评估其性能。Cu/Zn-SAN的半最大抑制浓度(IC)为0.115 µg mL,催化活性为7820 U mg,而天然SOD酶的催化活性为4264 U mg。与许多具有多种ROS活性的双金属纳米酶不同,Cu/Zn-SAN选择性地模拟SOD活性,未检测到氧化酶或过氧化物酶样行为。此外,其在香烟烟雾提取物中的性能证明了其实际相关性和生物安全性。这些发现突出了其在降低心血管、炎症和神经退行性疾病中的氧化应激方面的潜力,以及在化妆品抗老化产品和皮肤保护中的应用,为传统纳米酶提供了一种有前景的替代方案。

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