化学
生物分析
过氧化物酶
DNA
纳米技术
合理设计
组合化学
计算生物学
酶
生物化学
色谱法
生物
材料科学
作者
Wenjing Mei,Weixuanzi Huang,Xiaofeng Liu,Hongqiang Wang,Qing Wang,Xiaohai Yang,Kemin Wang
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2023-07-17
卷期号:95 (30): 11391-11398
被引量:12
标识
DOI:10.1021/acs.analchem.3c01564
摘要
Rational regulation of nanozyme activity can promote biochemical sensing by expanding sensing strategies and improving sensing performance, but the design of effective regulatory strategies remains a challenge. Herein, a rapid DNA-encoded strategy was developed for the efficient regulation of Pt nanozyme activity. Interestingly, we found that the catalytic activity of Pt nanozymes was sequence-dependent, and its peroxidase activity was significantly enhanced only in the presence of T-rich sequences. Thus, different DNA sequences realized bidirectional regulation of Pt nanozyme peroxidase activity. Furthermore, the DNA-encoded strategy can effectively enhance the stability of Pt nanozymes at high temperatures, freezing, and long-term storage. Meanwhile, a series of studies demonstrated that the presence of DNA influenced the reduction degree of H2PtCl6 precursors, which in turn affected the peroxidase activity of Pt nanozymes. As a proof of application, the sensor array based on the Pt nanozyme system showed superior performance in the accurate discrimination of antioxidants. This study obtained the regulation rules of DNA on Pt nanozymes, which provided theoretical guidance for the development of new sensing platforms and new ideas for the regulation of other nanozyme activities.
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