Microfluidic rapid isolation and electrochemical detection of S. pneumonia via aptamer-decorated surfaces

Zahra Babaie1, Güneş Kibar2, Hasan Yeşilkaya3

  • 1Microfluidics & Lab-on-a-chip Research Group, Department of Mech. Eng., İ.D. Bilkent University, Ankara 06800, Turkiye; UNAM-National Nanotech. Research Center & Inst. Materials Science & Nanotech. İ.D. Bilkent University, Ankara 06800, Turkiye.

Analytica Chimica Acta
|February 27, 2025
PubMed
Abstract

Insights

A new microfluidic magnetic platform rapidly detects Streptococcus pneumoniae (S. pneumoniae) in blood. This technology offers a faster, more sensitive method for diagnosing pneumococcal bacteremia, improving upon existing techniques.

Area of Science:

  • Biotechnology
  • Medical Diagnostics
  • Microfluidics

Background:

  • Streptococcus pneumoniae (S. pneumoniae) causes severe respiratory infections globally.
  • Microfluidic technologies offer rapid, sensitive, and cost-effective diagnostics.
  • Pneumococcal bacteremia detection remains a critical challenge in healthcare.

Purpose of the Study:

  • To develop a microfluidic magnetic platform for rapid isolation of S. pneumoniae.
  • To utilize an aptamer-decorated electrode array for electrochemical detection of S. pneumoniae.
  • To enhance the speed and sensitivity of pneumococcal bacteremia diagnostics.

Main Methods:

  • Synthesized and aptamer-decorated silica magnetic microparticles for bacteria isolation.
  • Employed aptamer-decorated gold interdigitated electrodes (IDEs) for electrochemical detection.
  • Utilized electrical impedance spectroscopy (EIS) for bacteria detection.

Main Results:

  • Achieved comparable isolation efficiency to batch systems in approximately one minute.
  • Demonstrated a limit of detection (LOD) of 962 CFU/mL for S. pneumoniae.
  • Established a linear detection range between 10^4 and 10^7 CFU/mL.

Conclusions:

  • The microfluidic platform isolates bacteria from 60 μL samples within one minute.
  • The entire diagnostic process, including detection, takes approximately two minutes.
  • Achieved improved detection limits compared to conventional ELISA and magnetic microfluidics ELISA.