AbstractMotile cells explore their surrounding milieu by extending thin dynamic protrusions, or filopodia. The growth of filopodia is driven by actin filament bundles that polymerize underneath the cell membrane. We compute the mechanical and dynamical features of the protrusion growth process by explicitly incorporating the flexible plasma membrane. We find that a critical number of filaments are needed to generate net filopodial growth. Without external influences, the filopodium can extend indefinitely up to the buckling length of the F-actin bundle. Dynamical calculations show that the protrusion speed is enhanced by the thermal fluctuations of the membrane; a filament bundle encased in a flexible membrane grows much faster. The protrus...
Numerous F-actin containing structures are involved in regulating protrusion of membrane at the lead...
AbstractDuring cell motion on a substratum, eukaryotic cells project sheetlike lamellipodia which co...
AbstractA motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, m...
ABSTRACT Motile cells explore their surrounding milieu by extending thin dynamic protrusions, or fil...
AbstractMotile cells explore their surrounding milieu by extending thin dynamic protrusions, or filo...
AbstractFilopodium, a spike-like actin protrusion at the leading edge of migrating cells, functions ...
AbstractA filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends fro...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
ABSTRACT A motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, ...
AbstractA motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, m...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
A filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends from the le...
A filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends from the le...
Lamellipodia are flat membrane protrusions formed during mesenchymal motion. Polymerization at the l...
Numerous F-actin containing structures are involved in regulating protrusion of membrane at the lead...
AbstractDuring cell motion on a substratum, eukaryotic cells project sheetlike lamellipodia which co...
AbstractA motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, m...
ABSTRACT Motile cells explore their surrounding milieu by extending thin dynamic protrusions, or fil...
AbstractMotile cells explore their surrounding milieu by extending thin dynamic protrusions, or filo...
AbstractFilopodium, a spike-like actin protrusion at the leading edge of migrating cells, functions ...
AbstractA filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends fro...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
ABSTRACT A motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, ...
AbstractA motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, m...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
Leading edge protrusion of migrating cells involves tightly coordinated changes in the plasma membra...
A filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends from the le...
A filopodium is a cytoplasmic projection, exquisitely built and regulated, which extends from the le...
Lamellipodia are flat membrane protrusions formed during mesenchymal motion. Polymerization at the l...
Numerous F-actin containing structures are involved in regulating protrusion of membrane at the lead...
AbstractDuring cell motion on a substratum, eukaryotic cells project sheetlike lamellipodia which co...
AbstractA motile cell, when stimulated, shows a dramatic increase in the activity of its membrane, m...