Tunable microfluidic chip for single-cell deformation study

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Abstract

Microfluidic phenotyping methods have been of vital importance for cellular characterization, especially for evaluating single cells. In order to study the deformability of a single cell, we devised and tested a tunable microfluidic chip-based method. A pneumatic polymer polydimethylsiloxane (PDMS) membrane was designed and fabricated abutting a single-cell trapping structure, so the cell could be squeezed controllably in a lateral direction. Cell contour changes under increasing pressure were recorded, enabling the deformation degree of different types of single cell to be analyzed and compared using computer vision. This provides a new perspective for studying mechanical properties of cells at the single cell level.

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Zhang, R., Duan, X., Zhang, S., Guo, W., Sun, C., & Han, Z. (2023). Tunable microfluidic chip for single-cell deformation study. Nanotechnology and Precision Engineering, 6(2). https://doi.org/10.1063/10.0017649

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