An acoustically actuated, bubble-based technique is developed to investigate the deformability of cells suspended in microfluidic devices. A microsized bubble is generated by an optothermal effect near the targeted cells, which are suspended in a microfluidic chamber. Subsequently, acoustic actuation is employed to create localized acoustic streaming. In turn, the streaming flow results in hydrodynamic forces that deform the cells in situ. The deformability of the cells is indicative of their mechanical properties. The method in this study measures mechanical biomarkers from multiple cells in a single experiment, and it can be conveniently integrated with other bioanalysis and drug-screening platforms. Using this technique, the mean deforma...
Cellular processes including adhesion, migration, and differentiation are governed by the distinct m...
© 2021 Yanqi WuCells are dynamic, living structures that remodel themselves in response to stimuli f...
Acoustic radiation forces have been used to manipulate cells and bacteria in a number of recent micr...
An acoustically actuated, bubble-based technique is developed to investigate the deformability of ce...
We realized an integrated microfluidic chip that allows measuring both optical deformability and aco...
We realized an integrated microfluidic chip that allows measuring both optical deformability and aco...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
The measurement of cell mechanics is crucial for a better understanding of cellular responses during...
AbstractCell stiffness is a sensitive indicator of physiological and pathological changes in cells, ...
The deformability of single cells can be used as a biomarker to evaluate the status of many diseases...
The measurement of cell mechanics is crucial for a better understanding of cellular responses during...
The changes in cellular mechanical properties are linked to several biological activities such as ce...
Background: Elasticity of cells is determined by their cytoskeleton. Changes in cellular function ar...
Cellular processes including adhesion, migration, and differentiation are governed by the distinct m...
© 2021 Yanqi WuCells are dynamic, living structures that remodel themselves in response to stimuli f...
Acoustic radiation forces have been used to manipulate cells and bacteria in a number of recent micr...
An acoustically actuated, bubble-based technique is developed to investigate the deformability of ce...
We realized an integrated microfluidic chip that allows measuring both optical deformability and aco...
We realized an integrated microfluidic chip that allows measuring both optical deformability and aco...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
The measurement of cell mechanics is crucial for a better understanding of cellular responses during...
AbstractCell stiffness is a sensitive indicator of physiological and pathological changes in cells, ...
The deformability of single cells can be used as a biomarker to evaluate the status of many diseases...
The measurement of cell mechanics is crucial for a better understanding of cellular responses during...
The changes in cellular mechanical properties are linked to several biological activities such as ce...
Background: Elasticity of cells is determined by their cytoskeleton. Changes in cellular function ar...
Cellular processes including adhesion, migration, and differentiation are governed by the distinct m...
© 2021 Yanqi WuCells are dynamic, living structures that remodel themselves in response to stimuli f...
Acoustic radiation forces have been used to manipulate cells and bacteria in a number of recent micr...