High-throughput multi-gate microfluidic resistive pulse sensing for biological nanoparticle detection

  • Kim, June Soo; 
  • Kwon, Soon Yeol; 
  • Lee, Jae Yong; 
  • Kim, Seung Deok; 
  • Kim, Da Ye; 
  • ... Kong, Seong Ho; 
  • 외 4명
Citations

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Citations

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13

초록

A microfluidic resistive pulse sensing technique offers a simple method for detecting and analysing microparticles in various fields, yet it has challenges such as the noise during detection and low throughput as the signal obtained from a small single sensing aperture and particle position is nonuniform. This study presents a microfluidic chip with multiple detection gates in the main channel to enhance the throughput while maintaining a simple operational system. A hydrodynamic sheathless particle focusing on a detection gate by modulation of the channel structure and measurement circuit with a reference gate to minimize the noise during detection is used for detecting resistive pulses. The proposed microfluidic chip can analyse the physical properties of 200 nm polystyrene particles and exosomes from MDA-MB-231 with high sensitivity with an error of <10% and high-throughput screening of more than 200 000 exosomes per seconds. The proposed microfluidic chip can analyse the physical properties with high sensitivity, so that it can be potentially used for exosome detection in biological and in vitro clinical applications.

키워드

SOLID-STATE NANOPORES; PARTICLES; FABRICATION; CELLS; FLOW
제목
High-throughput multi-gate microfluidic resistive pulse sensing for biological nanoparticle detection
저자
Kim, June Soo; Kwon, Soon Yeol; Lee, Jae Yong; Kim, Seung Deok; Kim, Da Ye; Kim, Hyunjun; Jang, Noah; Wang, Jiajie; Han, Maeum; Kong, Seong Ho
DOI
10.1039/d2lc01064j
발행일
2023-03-28
유형
Article
저널명
Lab on a Chip
권
23
호
7
페이지
1945 ~ 1953