Chiral nanoenzymes: synthesis and applications.

Mikrochim Acta

College of Petrochemical Technology, Lanzhou University of Technology, 730050, Lanzhou, P.R. China.

Published: November 2024

AI Article Synopsis

  • Chiral nanoenzymes are innovative materials that combine chiral nanostructures with enzymatic catalytic activity, providing unique selectivity in biological processes.
  • They offer benefits over natural enzymes due to their strong stereospecificity, biocompatibility, and diverse applications in fields like medicine, biosensing, and environmental protection.
  • Recent research has focused on the design, development, and practical uses of chiral nanoenzymes, along with the challenges and future directions in this area.

Article Abstract

Chiral nanoenzymes are a new type of material that possesses both chiral nanostructures and enzymatic catalytic activity. These materials exhibit selectivity in their catalytic activity towards organisms due to the introduction of chiral features in nanomaterials and have inherent chiral discrimination in organisms. As synthetic enzymes, chiral nanoenzymes offer significant advantages over natural enzymes. Due to their unique chiral structure and distinctive physicochemical properties, chiral nanoenzymes play an important role in various fields, including biology, medicine, and environmental protection. Their strong stereospecificity and biocompatibility make them useful in disease therapy, biosensing, and chiral catalysis, setting them apart from conventional and natural enzymes. In recent years, the design of synthetic methods and biological applications of chiral nanoenzymes has received significant attention and extensive research among scientists. This paper provides a systematic review of the research progress in the discovery, development, and application of chiral nanoenzymes in the last decade. Additionally, it presents various applications of chiral nanoenzymes, such as disease therapy, biosensing, and chiral catalysis. Finally, the challenges and future prospects of chiral nanoenzymes are discussed.

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http://dx.doi.org/10.1007/s00604-024-06803-5DOI Listing

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