Methods to rapidly assess cell growth would be useful for many applications, including drug susceptibility testing, but current technologies have limited sensitivity or throughput. Here we present an approach to precisely and rapidly measure growth rates of many individual cells simultaneously. We flow cells in suspension through a microfluidic channel with 10-12 resonant mass sensors distributed along its length, weighing each cell repeatedly over the 4-20 min it spends in the channel. Because multiple cells traverse the channel at the same time, we obtain growth rates for >60 cells/h with a resolution of 0.2 pg/h for mammalian cells and 0.02 pg/h for bacteria. We measure the growth of single lymphocytic cells, mouse and human T cells, pri...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We present a microfluidic system that facilitates long-term measurements of single cell response to ...
Thesis: Ph. D., Massachusetts Institute of Technology, Computational and Systems Biology Program, 20...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
We introduce a microfluidic system for simultaneously measuring single-cell mass and cell cycle prog...
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 ...
Mass and growth rate are highly integrative measures of cell physiology not discernable via genomic ...
Mass and growth rate are highly integrative measures of cell physiology not discernable via genomic ...
Abstract Mass and growth rate are highly integrative measures of cell physiology not discernable via...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We report an automated microfluidic-based platform for single cell analysis that allows for cell cul...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2014.Ca...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We present a microfluidic system that facilitates long-term measurements of single cell response to ...
Thesis: Ph. D., Massachusetts Institute of Technology, Computational and Systems Biology Program, 20...
We used a suspended microchannel resonator (SMR) combined with picoliter-scale microfluidic control ...
We introduce a microfluidic system for simultaneously measuring single-cell mass and cell cycle prog...
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 ...
Mass and growth rate are highly integrative measures of cell physiology not discernable via genomic ...
Mass and growth rate are highly integrative measures of cell physiology not discernable via genomic ...
Abstract Mass and growth rate are highly integrative measures of cell physiology not discernable via...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We report an automated microfluidic-based platform for single cell analysis that allows for cell cul...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2014.Ca...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
We present two methods by which single cells can be mechanically trapped and continuously monitored ...
We present a microfluidic system that facilitates long-term measurements of single cell response to ...