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Target-triggered cascade assembly of a catalytic network as an artificial enzyme for highly efficient sensing

机译:目标触发的催化网络级联组件作为一种用于高效传感的人工酶

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摘要

Determining the catalytic activity of artificial enzymes is an ongoing challenge. In this work, we design a porphyrin-based enzymatic network through the target-triggered cascade assembly of catalytic nanoparticles. The nanoparticles are synthesized via the covalent binding of hemin to amino-coated gold nanoparticles and then the axial coordination of the Fe center with a dual-functional imidazole or pyridine derivative. The network, which is specifically formed by coordination polymerization triggered by Hg2+ as the target, shows high catalytic activity due to the triple amplification of enzymatic activity during the cascade assembly. The catalytic dynamics are comparable to those of natural horseradish peroxidase. The catalytic characteristics can be ultrasensitively regulated by the target, leading to a selective methodology for the analysis of sub-attomolar Hg2+. It has also been used for “signal-on” imaging of reactive oxygen species in living cells. This work provides a new avenue for the design of enzyme mimics, and a powerful biocatalyst with signal switching for the development of biosensing protocols.
机译:确定人造酶的催化活性是一个持续的挑战。在这项工作中,我们通过催化纳米颗粒的目标触发级联装配设计了基于卟啉的酶网络。纳米颗粒是通过血红素与氨基包覆的金纳米颗粒的共价结合,然后通过双官能咪唑或吡啶衍生物的轴向对铁中心进行配位而合成的。该网络特别是由Hg 2 + 作为目标引发的配位聚合而形成的,由于级联组装过程中酶活性的三倍放大,显示出高催化活性。催化动力学与天然辣根过氧化物酶相当。靶可以超灵敏地调节其催化特性,从而为亚亚汞Hg 2 + 的分析提供了一种选择性的方法。它也已用于活细胞中活性氧物种的“信号传递”成像。这项工作为酶模拟物的设计提供了新途径,并为信号交换提供了功能强大的生物催化剂,以开发生物传感方案。

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