We report the characterization of three-dimensional membrane waves for migrating single and collective cells and describe their propagation using wide-field optical profiling technique with nanometer resolution. We reveal the existence of small and large membrane waves the amplitudes of which are in the range of ∼ 3-7 nm to ∼ 16-25 nm respectively, through the cell. For migrating single-cells, the amplitude of these waves is about 30 nm near the cell edge. Two or more different directions of propagation of the membrane nanowaves inside the same cell can be observed. After increasing the migration velocity by BMP-2 treatment, only one wave direction of propagation exists with an increase in the average amplitude (more than 80 nm near the cel...
We have monitored active movements of the cell circumference on specifically coated substrates for a...
Unlike molecules, which are driven thermally by Brownian motion, eukaryotic cells move in a particul...
The structural and functional organization of biological tissues relies on the intricate interplay b...
<div><p>We report the characterization of three-dimensional membrane waves for migrating single and ...
We report the characterization of three-dimensional membrane waves for migrating single and collecti...
<p>(a) Phase-contrast Micrograph showing the progression of migrating cells after scratching. (b) Ph...
<p>(a) Surface optical profilometry technique micrograph showing a single-cell migration. (b) Surfac...
<p>(a) Immunofluorescence staining of migrating pre-osteoblastic cells without and with BMP-2 after ...
<p>(a) Schematic drawing of a cell migrating. (b) Surface optical profilometry technique micrograph ...
Plasma membrane of live cells undergo active membrane fluctuations. Scrupulous study of single cell ...
International audienceThe structural and functional organization of biological tissues relies on the...
Biological cells continuously change shape allowing essential functions such as cell motility, vesic...
International audienceIn vivo, cells migrate on complex three-dimensional (3D) fibrous matrices, whi...
International audienceThe structural and functional organization of biological tissues relies on the...
The collective motion of cell monolayers within a tissue is a fundamental biological process that oc...
We have monitored active movements of the cell circumference on specifically coated substrates for a...
Unlike molecules, which are driven thermally by Brownian motion, eukaryotic cells move in a particul...
The structural and functional organization of biological tissues relies on the intricate interplay b...
<div><p>We report the characterization of three-dimensional membrane waves for migrating single and ...
We report the characterization of three-dimensional membrane waves for migrating single and collecti...
<p>(a) Phase-contrast Micrograph showing the progression of migrating cells after scratching. (b) Ph...
<p>(a) Surface optical profilometry technique micrograph showing a single-cell migration. (b) Surfac...
<p>(a) Immunofluorescence staining of migrating pre-osteoblastic cells without and with BMP-2 after ...
<p>(a) Schematic drawing of a cell migrating. (b) Surface optical profilometry technique micrograph ...
Plasma membrane of live cells undergo active membrane fluctuations. Scrupulous study of single cell ...
International audienceThe structural and functional organization of biological tissues relies on the...
Biological cells continuously change shape allowing essential functions such as cell motility, vesic...
International audienceIn vivo, cells migrate on complex three-dimensional (3D) fibrous matrices, whi...
International audienceThe structural and functional organization of biological tissues relies on the...
The collective motion of cell monolayers within a tissue is a fundamental biological process that oc...
We have monitored active movements of the cell circumference on specifically coated substrates for a...
Unlike molecules, which are driven thermally by Brownian motion, eukaryotic cells move in a particul...
The structural and functional organization of biological tissues relies on the intricate interplay b...