Osmotic regulation of intracellular water during mitosis is poorly understood because methods for monitoring relevant cellular physical properties with sufficient precision have been limited. Here we use a suspended microchannel resonator to monitor the volume and density of single cells in suspension with a precision of 1% and 0.03%, respectively. We find that for transformed murine lymphocytic leukemia and mouse pro–B cell lymphoid cell lines, mitotic cells reversibly increase their volume by more than 10% and decrease their density by 0.4% over a 20-min period. This response is correlated with the mitotic cell cycle but is not coupled to nuclear osmolytes released by nuclear envelope breakdown, chromatin condensation, or cytokinesis and ...
AbstractCellular physical properties are important indicators of specific cell states. Although chan...
<div><p>As the microenvironment of a cell changes, associated mechanical cues may lead to changes in...
Little is known about how mitotic cells round against epithelial confinement. At the beginning of mi...
Osmotic regulation of intracellular water during mitosis is poorly understood because methods for mo...
Using single cell-imaging methods we have found that the volume of adherent cells grown in culture d...
International audienceThe extent, mechanism, and function of cell volume changes during specific cel...
Cellular physical properties are important indicators of specific cell states. Although changes in i...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Ca...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
Abstract Biophysical cues such as osmotic pressure modulate proliferation and growth arrest of bacte...
© 2020 National Academy of Sciences. All rights reserved. Cell size is believed to influence cell gr...
AbstractCellular physical properties are important indicators of specific cell states. Although chan...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
AbstractCellular physical properties are important indicators of specific cell states. Although chan...
<div><p>As the microenvironment of a cell changes, associated mechanical cues may lead to changes in...
Little is known about how mitotic cells round against epithelial confinement. At the beginning of mi...
Osmotic regulation of intracellular water during mitosis is poorly understood because methods for mo...
Using single cell-imaging methods we have found that the volume of adherent cells grown in culture d...
International audienceThe extent, mechanism, and function of cell volume changes during specific cel...
Cellular physical properties are important indicators of specific cell states. Although changes in i...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Ca...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
Abstract Biophysical cues such as osmotic pressure modulate proliferation and growth arrest of bacte...
© 2020 National Academy of Sciences. All rights reserved. Cell size is believed to influence cell gr...
AbstractCellular physical properties are important indicators of specific cell states. Although chan...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
AbstractCellular physical properties are important indicators of specific cell states. Although chan...
<div><p>As the microenvironment of a cell changes, associated mechanical cues may lead to changes in...
Little is known about how mitotic cells round against epithelial confinement. At the beginning of mi...