4.8 Review

Enzyme Mimics for Engineered Biomimetic Cascade Nanoreactors: Mechanism, Applications, and Prospects

Journal

ADVANCED FUNCTIONAL MATERIALS
Volume 31, Issue 50, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.202106139

Keywords

biomedicine; biomimetic cascade catalysis; biosensing; enzyme mimics; nanoreactors; nanozymes

Funding

  1. National Natural Science Foundation of China [21677085]
  2. Science and Technology Nova Plan of Shaanxi Province [2019KJXX-010]
  3. Newton International Fellowships Programme of Royal Society [NIF\R1\192293]
  4. China Postdoctoral Science Foundation [2018 M640574]
  5. Youth Innovation Team of Shaanxi Universities (Food Quality and Safety)
  6. Royal Society
  7. Open Research Fund of the School of Chemistry and Chemical Engineering, Henan Normal University [2020ZD01]

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Multiple enzyme-driven biological catalytic cascades occur in living organisms, and efforts have been devoted to developing novel cascade catalytic systems mimicking these biological cascades. Nanozymes, as enzyme mimics, have significantly advanced the development of biomimetic cascade nanoreactors, leading to advancements in biosensing and biomedical applications. Progress in understanding and utilizing nanozyme-engineered biomimetic cascade catalytic nanoreactors for biosensing and biomedical applications is comprehensively covered in this article.
Multiple enzyme-driven biological catalytic cascades occur in living organisms, guiding highly efficient and selective transformations of substrates. Inspired by the merits of these biological catalytic cascade systems, enormous efforts have been devoted to developing novel cascade catalytic systems to mimic biological cascade catalytic reactions over the past few years. Nanozymes, a class of enzyme mimics, are nanomaterials with enzyme-like catalytic activity. The emergence and development of nanozymes has significantly advanced the development of biomimetic cascade nanoreactors. Currently, biomimetic cascade nanoreactors driven by advanced nanozymes have been widely used and exhibit many advantages such as superior cascade catalytic efficiency and high stability, resulting in significant advancements in biosensing and biomedical applications. The latest advances in understanding the cascade catalytic mechanism of nanozyme-engineered biomimetic cascade catalytic nanoreactors and their progressive applications for biosensing and biomedical applications are comprehensively covered here. First, nanozyme and enzyme/nanozyme-engineered biomimetic cascade catalytic nanoreactors are categorized according to their catalytic mechanism and properties. Then, the biosensing and biomedical applications, including cancer therapy, antibacterial activity, antioxidation, and hyperuricemia therapy of the cascade catalytic systems are covered. The conclusion describes the most important challenges and opportunities remaining in this exciting area of research.

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