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将天然/模拟酶级联限制在无定形金属-有机骨架中,用于构建具有催化活性的可回收生物材料。

Confining Natural/Mimetic Enzyme Cascade in an Amorphous Metal-Organic Framework for the Construction of Recyclable Biomaterials with Catalytic Activity.

机构信息

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, China.

出版信息

Langmuir. 2022 Jan 25;38(3):927-936. doi: 10.1021/acs.langmuir.1c02093. Epub 2022 Jan 12.

Abstract

Integrating nanozymes with natural enzymes to form cascade reactions is one of the most promising ways to develop biocatalysts with versatile performance; however, the applicability of the cascade is typically hampered by the instability of enzymes and the hindrance of mass transfer in the host environment. Utilizing amorphous ZIF-90 (aZIF-90) as a host material, herein, we have reported a one-pot way to encapsulate glucose oxidase (GOx) and magnetic nanoparticles (MNP) to form GOx/MNP@aZIF-90. We reasoned that the amorphous structure of ZIF-90 not only provides a protected environment to confine the cascade reaction but also generates mesopores and internal voids to improve the performance of the enzymatic cascade. The catalytic activity of aZIF-90 was almost 4 times higher than that of crystalline composites, and the residual activity was higher than 80% after being stored for 9 days. This is the first time that GOx and MNP were simultaneously confined in aZIF-90 with mesopores, which suggested that an amorphous metal-organic framework is promising in the development of an enzymatic cascade.

摘要

将纳米酶与天然酶集成形成级联反应是开发多功能生物催化剂最有前途的方法之一;然而,级联的适用性通常受到酶的不稳定性和主客体环境中传质的阻碍。利用无定形 ZIF-90(aZIF-90)作为主体材料,本文报道了一种将葡萄糖氧化酶(GOx)和磁性纳米颗粒(MNP)封装形成 GOx/MNP@aZIF-90 的一锅法。我们认为 ZIF-90 的无定形结构不仅提供了一个封闭的环境来限制级联反应,而且还产生了介孔和内部空隙来提高酶级联的性能。aZIF-90 的催化活性几乎是结晶复合材料的 4 倍,储存 9 天后的剩余活性高于 80%。这是首次将 GOx 和 MNP 同时封装在具有介孔的 aZIF-90 中,这表明无定形金属有机骨架在开发酶级联反应方面具有广阔的前景。

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