Ceria-Based Nanozymes in Point-of-Care Diagnosis: An Emerging Futuristic Approach for Biosensing

ACS Sens. 2023 Dec 22;8(12):4442-4467. doi: 10.1021/acssensors.3c01692. Epub 2023 Dec 13.

Abstract

In recent years, there has been a notable increase in interest surrounding nanozymes due to their ability to imitate the functions and address the limitations of natural enzymes. The scientific community has been greatly intrigued by the study of nanoceria, primarily because of their distinctive physicochemical characteristics, which include a variety of enzyme-like activities, affordability, exceptional stability, and the ability to easily modify their surfaces. Consequently, nanoceria have found extensive use in various biosensing applications. However, the impact of its redox activity on the enzymatic catalytic mechanism remains a subject of debate, as conflicting findings in the literature have presented both pro-oxidant and antioxidant effects. Herein, we creatively propose a seesaw model to clarify the regulatory mechanism on redox balance and survey possible mechanisms of multienzyme mimetic properties of nanoceria. In addition, this review aims to showcase the latest advancements in this field by systematically discussing over 180 research articles elucidating the significance of ceria-based nanozymes in enhancing, downsizing, and enhancing the efficacy of point-of-care (POC) diagnostics. These advancements align with the ASSURED criteria established by the World Health Organization (WHO). Furthermore, this review also examines potential constraints in order to offer readers a concise overview of the emerging role of nanoceria in the advancement of POC diagnostic systems for future biosensing applications.

Keywords: ASSURED criteria; catalytic mechanisms; enzyme-like activity; nanoceria; nanoenzyme materials; point-of-care (POC) diagnosis; redox balance; sensors; structural activity relation; surface functionalization.

Publication types

  • Review

MeSH terms

  • Antioxidants
  • Cerium* / chemistry
  • Oxidation-Reduction
  • Point-of-Care Systems*

Substances

  • ceric oxide
  • Cerium
  • Antioxidants