Dual-amplification colorimetric detection of bisphenol A based on catalytic hairpin assembly and DNAzyme-caused fragment self-assembly hybridization chain reaction

Anal Methods. 2023 May 25;15(20):2522-2527. doi: 10.1039/d3ay00409k.

Abstract

An efficient and innovative strategy for colorimetric detection of bisphenol A (BPA) is shown here based on target-induced catalytic hairpin assembly (CHA) and DNAzyme-caused fragment self-assembly hybridization chain reaction (HCR). BPA can bind with its aptamer hairpin to trigger CHA, thus forming Y-shaped DNA nanostructures with an enzyme-strand (E-DNA) tail. Subsequently, the E-DNA can cyclically cleave the substrate hairpin, generating many fragments which can cause self-assembly HCR to form long strand DNA. Finally, the formed long strand DNA can hybridize with short single strand DNA on AuNPs, causing the color change of AuNPs from red to blue. Six important detection conditions of the proposed aptasensor were optimized. Under optimal conditions, the biosensor has high sensitivity for BPA detection at concentrations ranging from 0.8 pM to 500 pM and the detection limit is as low as 0.2 pM, providing a promising prospective ultrasensitive detection of BPA.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Colorimetry
  • DNA / chemistry
  • DNA, Catalytic* / chemistry
  • Gold / chemistry
  • Metal Nanoparticles* / chemistry
  • Prospective Studies

Substances

  • DNA, Catalytic
  • bisphenol A
  • Gold
  • DNA