Development of laccase-like nanozymes and the analytical applications in conjunction with emerging sensing technologies

Разработка наноферментов с ляказоподобной активностью и их аналитические применения в сочетании с новыми сенсорными технологиями
Ke Li, Yongxin Li, Xuesong Wang, Qing Han, Xixingchi Chen, Jiakang Hu, Yunlong Wang, Hui Huang
2025-07-01

copper-based nanozymeslaccase-like nanozymeslogic gates and time-temperature indicatorsmachine learning-assisted sensor arrayssmall-molecule ligands (abiotic and biological)
Laccase-like nanozymes, as a significant category of nanozymes, have garnered considerable research attention. Studies primarily focused on the exploration of new nanozymes with laccase-like activity. However, in recent years, the diversity of small-molecule ligands (biological and abiotic) and the rapid advancement of pollutant sensing technologies have contributed to the growing interest in integrating laccase-like nanozymes into various novel analytical applications. This review summarized the laccase-like nanozymes prepared from copper and small-molecule ligands, especially the abiotic ligands over the last three years for the first time. The review further highlights novel intelligent analytical methods based on nanozymes in conjunction with emerging sensing technologies, such as machine learning-assisted sensor arrays, logic gates and time-temperature indicators. We propose possible future directions for the development of laccase-like nanozymes in the hope of deepening the understanding of laccase-like nanozymes by researchers in the fields of food safety, environmental management, etc., and enhancing the application potential of laccase-like nanozymes.
1
Diversity of biological and abiotic small-molecule ligands and advances in pollutant sensing technologies drive interest in analytical applications of laccase-like nanozymes.
2
Integration of laccase-like nanozymes with emerging sensing technologies (machine learning-assisted sensor arrays, logic gates, time-temperature indicators) enables novel intelligent analytical methods.
3
Recent research primarily explored new laccase-like nanozymes, with growing focus on those prepared from copper and small-molecule ligands.
4
The review proposes future development directions to enhance understanding and application potential of laccase-like nanozymes in food safety and environmental management.
5
This review is the first to summarize laccase-like nanozymes prepared from copper and especially abiotic small-molecule ligands over the last three years.

Laccase-like nanozymes (particularly copper-based nanozymes coordinated with small-molecule ligands)

Development, ligand-driven design (abiotic and biological small-molecule ligands), and analytical applications of laccase-like nanozymes integrated with emerging sensing technologies (machine-learning-assisted sensor arrays, logic gates, time–temperature indicators)

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Publication Date
2025-07-01
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Authors
Ke Li
Yongxin Li
Xuesong Wang
Qing Han
Xixingchi Chen
Jiakang Hu
Yunlong Wang
Hui Huang
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