Electrochemical Detection of $17{\beta}-estradiol$ by using DNA Aptamer Immobilized Nanowell Gold Electrodes

  • Kim, Yeon-Seok (Dept. of environmental science and engineering, Gwangju Institute of Science and Technology (GIST)) ;
  • Jung, Ho-Sup (Institute for Scientific and Industrial Research, Osaka University) ;
  • Lee, Hea-Yeon (Institute for Scientific and Industrial Research, Osaka University) ;
  • Kawai, Tomoji (Institute for Scientific and Industrial Research, Osaka University) ;
  • Gu, Man-Bock (Dept. of environmental science and engineering, Gwangju Institute of Science and Technology (GIST))
  • Published : 2005.04.15

Abstract

Aptamer is the single-stranded oligonucleotide which binds to various target molecules such as proteins, peptides, lipids and small organic molecules with high affinity and specificity. DNA aptamers specific for the $17{\beta}-estradiol$ were selected by SELEX (Systematic Evolution of Ligands by EXponential enrichment) process from a random DNA library. These DNA aptamers have a high affinity to $17{\beta}-estradiol$ as an endocrine disrupting chemical. Nanowell and $200{\mu}m$ gold electrode were used as substrate for DNA aptamer immobilization and electrochemical analysis. Especially, nanowell gold electrode was fabricated by e-beam lithography. The size of single nanowell is 130nm and 40,000 nanowells were deposited on one gold electrode. The immobilization method was based on the interaction between the biotinylated aptamer and streptavidin deposited on gold electrode previously. Immobilization procedure was optimized by surface plasma resonance (SPR) and electrochemical analysis. After the immobilization of DNA aptamer on streptavidin modified gold electrode, $17{\beta}-estradiol$ solution was treated on aptamer immobilized gold electrode. The current of gold electrode was decreased by the binding of $17{\beta}-estradiol$ to DNA aptamer immobilized on gold electrode. However, in negative control experiments of 1-aminoanthraquinone and 2-methoxynaphthalene, the current was rarely decreased. And more sensitive data was obtained from nanowell gold electrode comparing with $200{\mu}m$ gold electrode.

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