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A Microfluidic Technique to Probe Cell Deformability
Published on: September 3, 2014
Investigation of temperature effect on cell mechanics by optofluidic microchips
Tie Yang1, Giovanni Nava2, Paolo Minzioni1
1Dip. Ingegneria Industriale e dell'Informazione, Università di Pavia, Via Ferrata 5A, 27100 Pavia, Italy.
Abstract:
Here we present the results of a study concerning the effect of temperature on cell mechanical properties. Two different optofluidic microchips with external temperature control are used to investigate the temperature-induced changes of highly metastatic human melanoma cells (A375MC2) in the range of ~0 - 35 °C. By means of an integrated optical stretcher, we observe that cells' optical deformability is strongly enhanced by increasing cell and buffer-fluid temperature. This finding is supported by the results obtained from a second device, which probes the cells' ability to be squeezed through a constriction. Measured data demonstrate a marked dependence of cell mechanical properties on temperature, thus highlighting the importance of including a proper temperature-control system in the experimental apparatus.

