Aptamer-based colorimetric detection of the DNA damage marker 8-oxo-dG using cysteamine-stabilised gold nanoparticles

Chadamas Sakonsinsiri1,2, Theerapong Puangmali3, Kaniknun Sreejivungsa1

  • 1Department of Biochemistry, Faculty of Medicine, Khon Kaen University Khon Kaen 40002 Thailand schadamas@kku.ac.th.

RSC Advances
|October 6, 2022
PubMed

Insights

This study introduces a new colorimetric method using gold nanoparticles for detecting 8-Oxo-7,8-dihydro-2'-deoxyguanosine (8-oxo-dG), a marker of DNA damage. The simple, rapid test accurately measures 8-oxo-dG in urine, offering an accessible alternative for on-site analysis.

Area of Science:

  • Nanotechnology
  • Biomarker Detection
  • Analytical Chemistry

Background:

  • 8-Oxo-7,8-dihydro-2 -deoxyguanosine (8-oxo-dG) is a key biomarker for oxidative DNA damage and cancer risk.
  • Existing detection methods for 8-oxo-dG are often complex, requiring specialized equipment and expertise.
  • There is a need for simpler, more accessible methods for quantifying 8-oxo-dG, particularly for on-site applications.

Purpose of the Study:

  • To develop a novel, rapid, and cost-effective colorimetric method for detecting 8-oxo-dG in urine.
  • To utilize cysteamine-stabilised gold nanoparticles (cyst-AuNPs) and aptamer recognition for sensitive 8-oxo-dG sensing.
  • To validate the method's performance using real urine samples and compare it with existing techniques.

Main Methods:

  • Synthesis of cysteamine-stabilised gold nanoparticles (cyst-AuNPs).
  • Development of an aptamer-based colorimetric assay leveraging the anti-aggregation properties of cyst-AuNPs.
  • Visual and spectrophotometric analysis of color changes in response to 8-oxo-dG concentrations.

Main Results:

  • The aptamer/cyst-AuNPs system enabled colorimetric detection of 8-oxo-dG with a visual detection limit of 12 nM and an analytical detection limit of 10.3 nM.
  • The method demonstrated a linear response in the 15-100 nM range with a rapid 30-minute detection time.
  • Successful application to real urine samples yielded high recovery rates (93.6-94.1%) and a limit of quantification (LOQ) of 34.3 nM, comparable to ELISA.

Conclusions:

  • A simple, rapid, and sensitive colorimetric method for 8-oxo-dG detection in urine has been established using aptamer-functionalized gold nanoparticles.
  • This approach offers a promising alternative for on-site, point-of-care analysis of oxidative DNA damage biomarkers.
  • The developed method overcomes limitations of traditional techniques, enhancing accessibility for routine monitoring.