Ultra-fast cell counters based on microtubular waveguides

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作者
Cornelius S. Bausch
Christian Heyn
Wolfgang Hansen
Insa M. A. Wolf
Björn-Philipp Diercks
Andreas H. Guse
Robert H. Blick
机构
[1] Institute of Nanostructure and Solid State Physics,Department of Biochemistry and Molecular Cell Biology
[2] University of Hamburg,undefined
[3] Center for Hybrid Nanostructures,undefined
[4] University of Hamburg,undefined
[5] Calcium Signaling Group,undefined
[6] University Medical Center Hamburg-Eppendorf,undefined
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摘要
We present a radio-frequency impedance-based biosensor embedded inside a semiconductor microtube for the in-flow detection of single cells. An impedance-matched tank circuit and a tight wrapping of the electrodes around the sensing region, which creates a close, leakage current-free contact between cells and electrodes, yields a high signal-to-noise ratio. We experimentally show a twofold improved sensitivity of our three-dimensional electrode structure to conventional planar electrodes and support these findings by finite element simulations. Finally, we report on the differentiation of polystyrene beads, primary mouse T lymphocytes and Jurkat T lymphocytes using our device.
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