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Related Experiment Video

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Microfluidic Platform with Multiplexed Electronic Detection for Spatial Tracking of Particles
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Recent advances in microfluidic chip integrated electronic biosensors for multiplexed detection.

Zerong Liao1, Jianfeng Wang2, Pengjie Zhang1

  • 1School of Life Science, Beijing Institute of Technology, 5 South Zhongguancun Street, Haidian District, Beijing 100081, PR China.

Biosensors & Bioelectronics
|September 18, 2018
PubMed
Summary

Multiplexed biosensors on microfluidic chips enhance high-throughput analysis. This review covers integrated electronic biosensors and emerging technologies for simultaneous multi-analyte detection, aiming for advanced lab-on-a-chip systems.

Keywords:
Electronic biosensor sensorMicrofluidic chipMultiplexed detection

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Area of Science:

  • Analytical Chemistry
  • Biotechnology
  • Microfluidics

Background:

  • Biosensors enable high-throughput analysis for increased data acquisition.
  • Microfluidic chips (micro-total analysis systems, µTAS) are essential platforms for portable, high-throughput biosensors.
  • Integrating biosensors with microfluidic chips offers significant advantages for biological and analytical applications.

Purpose of the Study:

  • To review microfluidic-chip-integrated electronic biosensors for multiplexed detection.
  • To discuss emerging technologies for simultaneous multi-analyte detection.
  • To provide an overview of current developments in lab-on-a-chip multisensor technology.

Main Methods:

  • Comprehensive literature review of microfluidic-chip-integrated electronic biosensors.
  • Analysis of emerging technologies for simultaneous detection of multiple analytes.
  • Examination of strategies to mitigate cross-talk in multisensor systems.

Main Results:

  • Detailed overview of various microfluidic-chip-integrated electronic biosensor types.
  • Identification of emerging technologies enabling simultaneous multi-analyte detection.
  • Discussion of methods to reduce or avoid cross-talk in multisensor platforms.

Conclusions:

  • The integration of biosensors and microfluidic chips is crucial for advancing analytical and biological applications.
  • Ongoing efforts focus on developing sophisticated lab-on-a-chip multisensor systems.
  • Minimizing cross-talk is a key consideration for effective multiplexed detection.