4.7 Article

An impedance-based flow microcytometer for single cell morphology discrimination

Journal

LAB ON A CHIP
Volume 14, Issue 14, Pages 2548-2555

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c4lc00221k

Keywords

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Funding

  1. FP7 DIMID project, Development of Innovative Microfluidic Impedance-based Devices - European Community [FP7-SME-2011-1, GA 286692]
  2. National University of Singapore
  3. Singapore International Graduate Award (SINGA)
  4. European Community

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Cell shape is a fundamental biological feature, providing specific information about physiological or pathological cellular conditions. Most of the state-of-the-art microfluidic cytometers, however, only allow simple cell analysis, including viability studies, cell counting and sorting. In this work, we present a non-invasive, label-free device capable of single cell morphology discrimination in continuous flow. The device is based on the principle of liquid electrodes, fabricated in a cross configuration around a sensing zone. This arrangement allows measurement of cell impedance along orthogonal orientations and extraction of an index describing cell shape anisotropy. By adding prior to the sensing volume a series of lateral liquid electrodes, the particle stream was focused toward the channel midline and each cell was oriented in a specific direction before shape sensing. We demonstrate the proof of concept by performing spherical and elongated particle discrimination. As an application, we show that the shape changes experienced during cell division can be monitored and characterized. In particular, budding yeasts at different stages of the mitotic cycle were identified by extracting their anisotropy index.

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