Synchronous control of magnetic particles and magnetized cells in a tri-axial magnetic field

被引:14
|
作者
Abedini-Nassab, Roozbeh [1 ]
Bahrami, Sajjad [2 ]
机构
[1] Univ Neyshabur, Dept Biomed Engn, Neyshabur, Iran
[2] Univ Neyshabur, Dept Elect Engn, Neyshabur, Iran
关键词
Controlled drug delivery - Magnetic bubbles - Molecular biology - Targeted drug delivery - Lab-on-a-chip;
D O I
10.1039/d1lc00097g
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Precise manipulation of single particles is one of the main goals in the lab-on-a-chip field. Here, we present a microfluidic platform with "T" and "I" shaped magnetic tracks on the substrate to transport magnetic particles and magnetized cells in a tri-axial time-varying magnetic field. The driving magnetic field is composed of a vertical field bias and an in-plane rotating field component, with the advantage of lowering the attraction tendency and cluster formation between the particles compared to the traditional magnetophoretic circuits. We demonstrate three fundamental achievements. First, all the particle movements are synced with the external rotating field to achieve precise control over individual particles. Second, single-particle and single living cell transport in a controlled fashion is achieved for a large number of them in parallel, without the need for a complicated control system to send signals to individual particles. We carefully study the proposed design and introduce proper operating parameters. Finally, in addition to moving the particles along straight tracks, transporting them using a similar to 60 degrees bend is demonstrated. The proposed chip has direct applications in the fields of lab-on-a-chip, single-cell biology, and drug screening, where precise control over single particles is needed.
引用
收藏
页码:1998 / 2007
页数:10
相关论文
共 50 条
  • [1] Magnetophoretic transistors in a tri-axial magnetic field
    Abedini-Nassab, Roozbeh
    Joh, Daniel Y.
    Albarghouthi, Faris
    Chilkoti, Ashutosh
    Murdoch, David M.
    Yellen, Benjamin B.
    LAB ON A CHIP, 2016, 16 (21) : 4181 - 4188
  • [2] Magnetic field uniformity of the practical tri-axial Helmholtz coils systems
    Beiranvand, R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2014, 85 (05):
  • [3] Attitude Stabilization of the Tri-axial Satellites using Active Magnetic Control
    Abd El-Salam, F. A.
    INTERNATIONAL JOURNAL OF APPLIED MATHEMATICS & STATISTICS, 2012, 29 (05): : 63 - 75
  • [4] Development of a magnetic field measurement system using a tri-axial search coil
    Tosaka, T
    Nagano, I
    Yagitani, S
    EMC 2005: IEEE International Symposium on Electromagnetic Compatibility, Vols 1-3, Proceedings, 2005, : 102 - 106
  • [5] CHARACTERIZATION OF THE EFFECTIVE OUTPUT MAGNETIC FIELD OF A TRI-AXIAL SQUARE HELMHOLTZ CAGE
    Jain, Ankit
    Kroeker, Erik
    Vedant
    Ghosh, Alexander
    Haddox, Patrick
    SPACEFLIGHT MECHANICS 2016, PTS I-IV, 2016, 158 : 113 - 130
  • [6] Calibration of Tri-Axial Sensor Coil for Magnetic Tracking
    Shankar, R. Abhishek
    Jung, Byunghoo
    IEEE SENSORS JOURNAL, 2024, 24 (04) : 4365 - 4372
  • [7] Howland Current Source Applied to Magnetic Field Generation in a Tri-Axial Helmholtz Coil
    Batista, Daniel S.
    Silva, Guilherme B.
    Granziera Jr, Francisco
    Tosin, Marcelo C.
    Gazzoni Filho, Decio L.
    Melo, Leonimer F.
    IEEE ACCESS, 2019, 7 : 125649 - 125661
  • [8] A Magnetic Sensor Calibration System Based on a Closed-Loop Tri-Axial Field Simulator
    Ramdas, Vinitha
    Sethunadh, R.
    IEEE ACCESS, 2022, 10 : 81846 - 81855
  • [9] TRI-AXIAL MAGNETIC FIELD EXPOSURE SYSTEM FOR A PATCH-CLAMP SET-UP
    Gavoci, E.
    Procopio, M. G.
    Mesirca, P.
    Kuqi, Dh.
    Zironi, I.
    Remondini, D.
    Ahmetaga, Sh.
    Bersani, F.
    JOURNAL OF ENVIRONMENTAL PROTECTION AND ECOLOGY, 2013, 14 (03): : 1115 - 1122
  • [10] A Fast Magnetic Deviation Calibration Algorithm for Tri-Axial Electronic Compass
    Yan, Wei
    Li, Heng
    Jin, Yufeng
    Wang, Zhenyu
    Shi, Guangyi
    2016 IEEE INTERNATIONAL CONFERENCE ON CYBER TECHNOLOGY IN AUTOMATION, CONTROL, AND INTELLIGENT SYSTEMS (CYBER), 2016, : 131 - 134