4.6 Review

Nanozymes-Hitting the Biosensing Target

期刊

SENSORS
卷 21, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/s21155201

关键词

nanozyme; biosensing; catalytic activity

资金

  1. National Science Foundation [CHE 1709160, 1946202]
  2. University of North Dakota Program for Applied Research to Address the State's Critical Needs Initiative
  3. National Institutes of Health Award COBRE grant [2P20GM104360-06A1]
  4. Office of Integrative Activities
  5. Office Of The Director [1946202] Funding Source: National Science Foundation

向作者/读者索取更多资源

Nanozymes are artificial enzymes with excellent catalytic activities, adaptable surface structures, and three main classes that catalyze specific reactions. They have expanded applications in diverse fields, with biosensing being the most popular. Nanozyme-based novel biosensors have been designed to detect various substances like ions, small molecules, nucleic acids, proteins, and cancer cells.
Nanozymes are a class of artificial enzymes that have dimensions in the nanometer range and can be composed of simple metal and metal oxide nanoparticles, metal nanoclusters, dots (both quantum and carbon), nanotubes, nanowires, or multiple metal-organic frameworks (MOFs). They exhibit excellent catalytic activities with low cost, high operational robustness, and a stable shelf-life. More importantly, they are amenable to modifications that can change their surface structures and increase the range of their applications. There are three main classes of nanozymes including the peroxidase-like, the oxidase-like, and the antioxidant nanozymes. Each of these classes catalyzes a specific group of reactions. With the development of nanoscience and nanotechnology, the variety of applications for nanozymes in diverse fields has expanded dramatically, with the most popular applications in biosensing. Nanozyme-based novel biosensors have been designed to detect ions, small molecules, nucleic acids, proteins, and cancer cells. The current review focuses on the catalytic mechanism of nanozymes, their application in biosensing, and the identification of future directions for the field.

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