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Updated: Jul 13, 2026

A Microfluidic Chip for the Versatile Chemical Analysis of Single Cells
Published on: October 15, 2013
A Microwave-Based Microfluidic Cell Detecting Biosensor for Biological Quantification Using the Metallic
Atena Amanati Shahri1, Amir Hossein Omidvar1, Gustavo Pamplona Rehder1
1Escola Politécnica, Universidade de São Paulo, São Paulo 05508-010, Brazil.
A novel biosensor detects living cells in real-time using a microstrip stub resonator and microfluidic technology. This label-free device shows significant phase shifts, enabling early disease diagnosis and monitoring.
Area of Science:
- Biosensing and Microfluidics
- Electromagnetics and Materials Science
Background:
- Label-free detection of living cells is crucial for disease diagnosis.
- Existing methods often lack sensitivity or real-time capabilities for flowing cells.
Purpose of the Study:
- To develop a sensitive, miniaturized, label-free biosensor for detecting living cells in a flow stream.
- To leverage microstrip stub resonator and metallic nanowire-filled membrane technology for enhanced cell detection.
Main Methods:
- Integration of a microstrip stub resonator with a microfluidic channel using metallic nanowire-filled membrane technology.
- Analysis of changes in the phase of the transmitted signal (S21) due to the dielectric properties of living cells.
- Utilizing the concentrated electromagnetic field distribution within the microfluidic channel.
Main Results:
- Demonstrated outstanding performance in distinguishing living cells in suspension.
- Observed an average phase variation of 22.85 ± 1.65° at approximately 11.1 GHz for living cell sensing.
- Achieved real-time detection of rapidly flowing cells in their biological medium.
Conclusions:
- The developed biosensor offers a sensitive and label-free method for real-time cell detection.
- This technology holds potential as an early diagnostic and monitoring tool for various diseases.
- The integration of microfluidics and electromagnetic resonators provides a powerful platform for biosensing applications.
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