Efficient AC electrothermal flow (ACET) on-chip for enhanced immunoassays

被引:10
|
作者
Draz, Muaz S. S. [1 ,2 ]
Uning, Kevin [1 ]
Dupouy, Diego [2 ]
Gijs, Martin A. M. [1 ]
机构
[1] Ecole Polytech Fed Lausanne EPFL, Lab Microsyst 2, CH-1015 Lausanne, Switzerland
[2] Lunaphore Technol SA, CH-1131 Tolochenaz, Switzerland
关键词
INDUCED FLUID-FLOW; MICROFLUIDICS; ELECTROKINETICS; IMMUNOHISTOCHEMISTRY; MICROCHANNEL; BIOSENSOR; DIFFUSION;
D O I
10.1039/d2lc01147f
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Biochemical reaction rates in microfluidic systems are known to be limited by the diffusional transport of reagents, leading often to lowered sensitivity and/or longer detection times in immunoassays. Several methods, including electrically powering electrodes to generate AC electrothermal flow (ACET) on-chip, have been adopted to enhance the mass transport of the reagents and improve microfluidic mixing. Here, we report a novel ACET electrode design concept for generating in-plane microfluidic mixing vortices that act over a large volume close to the reaction surface of interest. This is different from the traditional ACET parallel electrode design that provides rather local vertical mixing vortices directly above the electrodes. Both numerical simulation and experimental studies were performed to validate the new design. Moreover, numerical simulation was carried out to show the effects of experimental factors such as the reaction kinetics (association constant) and the reagent concentration on the ACET-enhanced surface-based assays. As a proof of concept, the new design for the ACET-enhanced immunoassays was used to improve the immunostaining signal of the HER2 (human epidermal growth factor receptor 2) cancer biomarker on breast cancer cells. Finally, the concept of scaling up the design has been validated by experiments (immunoassays on breast cancer cells for different ACET power and different assay times). In particular, we show that larger ACET in-plane designs can agitate and mix the fluid over large microfluidic volumes, which further enhances the immunoassay's output. We have achieved a 6-times enhancement in the assay signal with a 75% reduction in assay time.
引用
收藏
页码:1637 / 1648
页数:12
相关论文
共 50 条
  • [21] A Flow Regulator for On-Chip Communication
    Lu, Zhonghai
    Brachos, Dimitris
    Jantsch, Axel
    IEEE INTERNATIONAL SOC CONFERENCE, PROCEEDINGS, 2009, : 151 - 154
  • [22] ON CHIP MICROPUMPING FOR BIOFLUIDS BY TEMPERATURE BIASED AC ELECTROTHERMAL EFFECT
    Wu, Jie
    Yang, Kai
    Yuan, Quan
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION (IMECE 2010), VOL 10, 2012, : 831 - 836
  • [23] Genetic Algorithm Based On-Chip Communication Link Reconfiguration for Efficient On-Chip Communication
    Hemalatha, S. Beulah
    Vigneswaran, T.
    2017 INTERNATIONAL CONFERENCE ON ALGORITHMS, METHODOLOGY, MODELS AND APPLICATIONS IN EMERGING TECHNOLOGIES (ICAMMAET), 2017,
  • [24] Register organization for enhanced on-chip parallelism
    Sangireddy, R
    15TH IEEE INTERNATIONAL CONFERENCE ON APPLICATION-SPECIFIC SYSTEMS, ARCHITECTURES AND PROCESSORS, PROCEEDINGS, 2004, : 180 - 190
  • [25] An efficient approach to on-chip logic minimization
    Ahmad, Seraj
    Mahapatra, Rabi N.
    IEEE TRANSACTIONS ON VERY LARGE SCALE INTEGRATION (VLSI) SYSTEMS, 2007, 15 (09) : 1040 - 1050
  • [26] AC Electrothermal Flow-Enhanced, Label-Free Immunosensor for Rapid Electrochemical Sensing
    Li, Jiran
    Lillehoj, Peter B.
    2020 IEEE 15TH INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEM (IEEE NEMS 2020), 2020, : 554 - 558
  • [27] Study on the use of dielectrophoresis and electrothermal forces to produce on-chip micromixers and microconcentrators
    Gunda, Naga Siva Kumar
    Bhattacharjee, Subir
    Mitra, Sushanta K.
    BIOMICROFLUIDICS, 2012, 6 (03)
  • [28] Efficient on-chip isolation of HIV subtypes
    Wang, ShuQi
    Esfahani, Matin
    Gurkan, Umut A.
    Inci, Fatih
    Kuritzkes, Daniel R.
    Demirci, Utkan
    LAB ON A CHIP, 2012, 12 (08) : 1508 - 1515
  • [29] An efficient clocking scheme for on-chip communications
    Bojnordi, Mahdi Nazm
    Madani, Nariman Moezzi
    Semsarzade, Mehdi
    Afzali-Kusha, An
    2006 IEEE ASIA PACIFIC CONFERENCE ON CIRCUITS AND SYSTEMS, 2006, : 119 - +
  • [30] Efficient On-chip Communication for Neuromorphic Systems
    Kumar, Shobhit
    Das, Shirshendu
    Jamadar, Manaal Mukhtar
    Kaur, Jaspinder
    2021 IEEE SMARTWORLD, UBIQUITOUS INTELLIGENCE & COMPUTING, ADVANCED & TRUSTED COMPUTING, SCALABLE COMPUTING & COMMUNICATIONS, INTERNET OF PEOPLE, AND SMART CITY INNOVATIONS (SMARTWORLD/SCALCOM/UIC/ATC/IOP/SCI 2021), 2021, : 234 - 239