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基于钌(III)的金属有机凝胶:内源性辣根过氧化物酶和 NADH 模拟纳米酶。

Ru(III)-Based Metal-Organic Gels: Intrinsic Horseradish and NADH Peroxidase-Mimicking Nanozyme.

机构信息

Education Ministry Key Laboratory on Luminescence and Real-Time Analytical Chemistry, School of Chemistry and Chemical Engineering , Southwest University , Chongqing 400715 , China.

Chongqing Key Laboratory of Biomedical Analysis, Chongqing Science & Technology Commission, College of Pharmaceutical Sciences , Southwest University , Chongqing 400716 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29158-29166. doi: 10.1021/acsami.9b09283. Epub 2019 Jul 30.

Abstract

Highly active, stable, and cost-effective enzyme-mimicking nanomaterials (nanozymes) hold the potential to be an alternative to replace natural enzymes for the catalysis of enzyme-like reactions in various applications. Here, novel 3D ruthenium-based metal-organic gels (Ru-MOGs) with fibrillar network structures have been successfully synthesized using a facile one-step strategy at room temperature. Surprisingly, the developed 3D fibrillar networked Ru-MOGs simultaneously possess intrinsic horseradish peroxidase and NADH peroxidase mimetic activities. Meanwhile, the horseradish peroxidase mimetic catalytic activity displays well in both acidic environment and alkaline condition. Kinetic analysis reveals that Ru-MOGs make an effective peroxidase mimic with exceptionally high catalytic velocity (), substrate binding affinity (), and catalytic efficiency (/). Furthermore, as a proof-of-concept, the mimetic enzyme property of this material was further used to establish a chemiluminescent biosensing platform for glucose detection. These easily synthesized Ru-MOGs as highly active and novel nanozymes not only suggests a bright future for the nanomaterials as enzyme mimics but also provides new insights into the properties of MOGs, greatly broadening and advancing their applications in biocatalysis and bioassays.

摘要

高活性、稳定且经济高效的酶模拟纳米材料(纳米酶)具有替代天然酶的潜力,可用于各种应用中模拟酶反应的催化。在这里,我们使用简便的一步室温策略成功合成了具有纤维状网络结构的新型 3D 钌基金属有机凝胶(Ru-MOGs)。令人惊讶的是,所开发的 3D 纤维状网络 Ru-MOGs 同时具有内在辣根过氧化物酶和 NADH 过氧化物酶模拟活性。同时,辣根过氧化物酶模拟催化活性在酸性和碱性环境中均表现良好。动力学分析表明,Ru-MOGs 是一种有效的过氧化物酶模拟物,具有异常高的催化速度()、底物结合亲和力()和催化效率(/)。此外,作为概念验证,该材料的模拟酶特性进一步用于建立用于葡萄糖检测的化学发光生物传感平台。这些易于合成的 Ru-MOGs 作为高活性和新型纳米酶,不仅为纳米材料作为酶模拟物带来了光明的前景,而且为 MOGs 的特性提供了新的见解,极大地拓宽和推进了它们在生物催化和生物分析中的应用。

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