We present two methods by which single cells can be mechanically trapped and continuously monitored within the suspended microchannel resonator (SMR) mass sensor. Since the fluid surrounding the trapped cell can be quickly and completely replaced on demand, our methods are well suited for measuring changes in cell size and growth in response to drugs or other chemical stimuli. We validate our methods by measuring the density of single polystyrene beads and Saccharomyces cerevisiae yeast cells with a precision of approximately 10−3 g cm−3, and by monitoring the growth of single mouse lymphoblast cells before and after drug treatment
The characterization of physical properties of cells such as their mass and stiffness has been of gr...
The size of a cell is a fundamental physiological property and is closely regulated by various envir...
Mechanical properties of single cells have been shown to relate to cell phenotype and malignancy. Ho...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
Understanding the effectiveness of a drug therapy on halting disease progression is an essential asp...
Characterizing the physical properties of single cells is of great interest for unraveling the heter...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2014.Ca...
MEMS-based resonant mass sensors can be sensitive tools to measure the physical properties of cells ...
Cell size, measured as either volume or mass, is a fundamental indicator of cell state. Far more tig...
Thesis: Ph. D., Massachusetts Institute of Technology, Computational and Systems Biology Program, 20...
Methods to rapidly assess cell growth would be useful for many applications, including drug suscepti...
The size of a cell is a fundamental physiological property and is closely regulated by various envir...
The characterization of physical properties of cells such as their mass and stiffness has been of gr...
The size of a cell is a fundamental physiological property and is closely regulated by various envir...
Mechanical properties of single cells have been shown to relate to cell phenotype and malignancy. Ho...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
Understanding the effectiveness of a drug therapy on halting disease progression is an essential asp...
Characterizing the physical properties of single cells is of great interest for unraveling the heter...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2014.Ca...
MEMS-based resonant mass sensors can be sensitive tools to measure the physical properties of cells ...
Cell size, measured as either volume or mass, is a fundamental indicator of cell state. Far more tig...
Thesis: Ph. D., Massachusetts Institute of Technology, Computational and Systems Biology Program, 20...
Methods to rapidly assess cell growth would be useful for many applications, including drug suscepti...
The size of a cell is a fundamental physiological property and is closely regulated by various envir...
The characterization of physical properties of cells such as their mass and stiffness has been of gr...
The size of a cell is a fundamental physiological property and is closely regulated by various envir...
Mechanical properties of single cells have been shown to relate to cell phenotype and malignancy. Ho...