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Versatile and High-throughput Force Measurement Platform for Dorsal Cell Mechanics.


ABSTRACT: We present a high-throughput microfluidics technique facilitating in situ measurements of cell mechanics parameters at the dorsal side of the cell, including molecular binding strengths, local traction forces, and viscoelastic properties. By adjusting the flow rate, the force magnitude exerted on the cell can be modulated ranging from ~14 pN to 2 nN to perturb various force-dependent processees in cells. Time-lapse images were acquired to record events due to such perturbation. The values of various mechanical parameters are subsequently obtained by single particle tracking. Up to 50 events can be measured simultaneously in a single experiment. Integrating the microfluidic techniques with the analytic framework established in computational fluid dynamics, our method is physiologically relevant, reliable, economic and efficient.

SUBMITTER: Park S 

PROVIDER: S-EPMC6746792 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Versatile and High-throughput Force Measurement Platform for Dorsal Cell Mechanics.

Park Seungman S   Joo Yoon Ki YK   Chen Yun Y  

Scientific reports 20190916 1


We present a high-throughput microfluidics technique facilitating in situ measurements of cell mechanics parameters at the dorsal side of the cell, including molecular binding strengths, local traction forces, and viscoelastic properties. By adjusting the flow rate, the force magnitude exerted on the cell can be modulated ranging from ~14 pN to 2 nN to perturb various force-dependent processees in cells. Time-lapse images were acquired to record events due to such perturbation. The values of var  ...[more]

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