Literature DB >> 34359904

Self-Assembled Permanent Micro-Magnets in a Polymer-Based Microfluidic Device for Magnetic Cell Sorting.

Lucie Descamps1, Marie-Charlotte Audry1, Jordyn Howard1, Samir Mekkaoui1, Clément Albin2, David Barthelemy3, Léa Payen3, Jessica Garcia3, Emmanuelle Laurenceau4, Damien Le Roy2, Anne-Laure Deman1.   

Abstract

Magnetophoresis-based microfluidic devices offer simple and reliable manipulation of micro-scale objects and provide a large panel of applications, from selective trapping to high-throughput sorting. However, the fabrication and integration of micro-scale magnets in microsystems involve complex and expensive processes. Here we report on an inexpensive and easy-to-handle fabrication process of micrometer-scale permanent magnets, based on the self-organization of NdFeB particles in a polymer matrix (polydimethylsiloxane, PDMS). A study of the inner structure by X-ray tomography revealed a chain-like organization of the particles leading to an array of hard magnetic microstructures with a mean diameter of 4 µm. The magnetic performance of the self-assembled micro-magnets was first estimated by COMSOL simulations. The micro-magnets were then integrated into a microfluidic device where they act as micro-traps. The magnetic forces exerted by the micro-magnets on superparamagnetic beads were measured by colloidal probe atomic force microscopy (AFM) and in operando in the microfluidic system. Forces as high as several nanonewtons were reached. Adding an external millimeter-sized magnet allowed target magnetization and the interaction range to be increased. Then, the integrated micro-magnets were used to study the magnetophoretic trapping efficiency of magnetic beads, providing efficiencies of 100% at 0.5 mL/h and 75% at 1 mL/h. Finally, the micro-magnets were implemented for cell sorting by performing white blood cell depletion.

Entities:  

Keywords:  magnetophoresis; micro-magnets; microfluidic devices; particle separation; polymer composite

Year:  2021        PMID: 34359904     DOI: 10.3390/cells10071734

Source DB:  PubMed          Journal:  Cells        ISSN: 2073-4409            Impact factor:   6.600


  2 in total

1.  Microscale magnetic field modulation using rapidly patterned soft magnetic microstructures.

Authors:  Fengshan Shen; Yan Yu; Yuexuan Li; Hongtao Feng; Tianzhun Wu; Yan Chen
Journal:  RSC Adv       Date:  2021-10-27       Impact factor: 4.036

2.  Design and Construction of a Chamber Enabling the Observation of Living Cells in the Field of a Constant Magnetic Force.

Authors:  Daniel Dziob; Jakub Ramian; Jan Ramian; Bartosz Lisowski; Jadwiga Laska
Journal:  Cells       Date:  2021-11-28       Impact factor: 6.600

  2 in total

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