Shape-dependent local differentials in cell proliferation are considered to be a major driving mechanism of structuring processes in vivo, such as embryogenesis, wound healing, and angiogenesis. However, the specific biophysical signaling by which changes in cell shape contribute to cell cycle regulation remains poorly understood. Here, we describe our study of the roles of nuclear volume and cytoskeletal mechanics in mediating shape control of proliferation in single endothelial cells. Micropatterned adhesive islands were used to independently control cell spreading and elongation. We show that, irrespective of elongation, nuclear volume and apparent chromatin decondensation of cells in G1 systematically increased with cell spreading and h...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
<div><p>It is well known that substrate properties like stiffness and adhesivity influence stem cell...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
AbstractShape-dependent local differentials in cell proliferation are considered to be a major drivi...
Shape-dependent local differentials in cell proliferation are considered to be a major driving mecha...
AbstractThe nucleus has a smooth, regular appearance in normal cells, and its shape is greatly alter...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
AbstractVascular smooth muscle cells (SMCs) play an important role in vascular remodeling. Heterogen...
<div><p>Regulation of cell growth and cell division has a fundamental role in tissue formation, orga...
Regulation of cell growth and cell division has a fundamental role in tissue formation, organ develo...
Regulation of cell growth and cell division has a fundamental role in tissue formation, organ develo...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
open AccessIt is well known that substrate properties like stiffness and adhesivity influence stem c...
The nucleus of a living cell is constantly undergoing changes in shape and size as a result of vario...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
<div><p>It is well known that substrate properties like stiffness and adhesivity influence stem cell...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
AbstractShape-dependent local differentials in cell proliferation are considered to be a major drivi...
Shape-dependent local differentials in cell proliferation are considered to be a major driving mecha...
AbstractThe nucleus has a smooth, regular appearance in normal cells, and its shape is greatly alter...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
AbstractVascular smooth muscle cells (SMCs) play an important role in vascular remodeling. Heterogen...
<div><p>Regulation of cell growth and cell division has a fundamental role in tissue formation, orga...
Regulation of cell growth and cell division has a fundamental role in tissue formation, organ develo...
Regulation of cell growth and cell division has a fundamental role in tissue formation, organ develo...
Background InformationTissue morphogenesis results from the interplay between cell growth and mechan...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
open AccessIt is well known that substrate properties like stiffness and adhesivity influence stem c...
The nucleus of a living cell is constantly undergoing changes in shape and size as a result of vario...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
<div><p>It is well known that substrate properties like stiffness and adhesivity influence stem cell...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...