Controlled counter-flow motion of magnetic bead chains rolling along microchannels

被引:0
作者
Marc Karle
Johannes Wöhrle
Junichi Miwa
Nils Paust
Günter Roth
Roland Zengerle
Felix von Stetten
机构
[1] HSG-IMIT,Department of Microsystems Engineering
[2] Laboratory for MEMS Applications,Centre for Biological Signalling Studies (bioss)
[3] IMTEK,undefined
[4] University of Freiburg,undefined
[5] University of Freiburg,undefined
来源
Microfluidics and Nanofluidics | 2011年 / 10卷
关键词
Magnetic beads; Lab-on-a-chip; Transport; Handling;
D O I
暂无
中图分类号
学科分类号
摘要
We demonstrate controlled transport of superparamagnetic beads in the opposite direction of a laminar flow. A permanent magnet assembles 200 nm magnetic particles into about 200 μm long bead chains that are aligned in parallel to the magnetic field lines. Due to a magnetic field gradient, the bead chains are attracted towards the wall of a microfluidic channel. A rotation of the permanent magnet results in a rotation of the bead chains in the opposite direction to the magnet. Due to friction on the surface, the bead chains roll along the channel wall, even in counter-flow direction, up to at a maximum counter-flow velocity of 8 mm s−1. Based on this approach, magnetic beads can be accurately manoeuvred within microfluidic channels. This counter-flow motion can be efficiently be used in Lab-on-a-Chip systems, e.g. for implementing washing steps in DNA purification.
引用
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页码:935 / 939
页数:4
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