AbstractMembrane tension has been proposed to be important in regulating cell functions such as endocytosis and cell motility. The apparent membrane tension has been calculated from tether forces measured with laser tweezers. Both membrane-cytoskeleton adhesion and membrane tension contribute to the tether force. Separation of the plasma membrane from the cytoskeleton occurs in membrane blebs, which could remove the membrane-cytoskeleton adhesion term. In renal epithelial cells, tether forces are significantly lower on blebs than on membranes that are supported by cytoskeleton. Furthermore, the tether forces are equal on apical and basolateral blebs. In contrast, tether forces from membranes supported by the cytoskeleton are greater in apic...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
AbstractLateral tension in cell plasma membranes plays an essential role in regulation of a number o...
AbstractThe therapeutic efficacy of mesenchymal stem cells (MSCs) in tissue engineering and regenera...
AbstractMembrane tension has been proposed to be important in regulating cell functions such as endo...
AbstractWhen membrane-attached beads are pulled vertically by a laser tweezers, a membrane tube of c...
AbstractFundamental to all mammalian cells is the adherence of the lipid bilayer membrane to the und...
Here, we describe how to extract tethers or lipid membrane nanotubes from the plasma membrane of cel...
SummaryBackgroundMembrane tension plays an essential role in cell motility. The load imposed by the ...
AbstractFundamental to all mammalian cells is the adherence of the lipid bilayer membrane to the und...
Abstract only availableMembrane tethers play a critical role in cell adhesion and cell motility. Thi...
Membrane tethers are extracted at constant velocity from neuronal growth cones using a force generat...
AbstractLiving cells maintain a huge transmembrane electric field across their membranes. This elect...
Many cell phenomena involve major morphological changes, particularly in mitosis and the process of ...
Abstract only availableMembrane tethers are ubiquitous nanometer-diameter cylindrical extensions of ...
AbstractBinding interactions between the plasma membrane and the cytoskeleton define cell functions ...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
AbstractLateral tension in cell plasma membranes plays an essential role in regulation of a number o...
AbstractThe therapeutic efficacy of mesenchymal stem cells (MSCs) in tissue engineering and regenera...
AbstractMembrane tension has been proposed to be important in regulating cell functions such as endo...
AbstractWhen membrane-attached beads are pulled vertically by a laser tweezers, a membrane tube of c...
AbstractFundamental to all mammalian cells is the adherence of the lipid bilayer membrane to the und...
Here, we describe how to extract tethers or lipid membrane nanotubes from the plasma membrane of cel...
SummaryBackgroundMembrane tension plays an essential role in cell motility. The load imposed by the ...
AbstractFundamental to all mammalian cells is the adherence of the lipid bilayer membrane to the und...
Abstract only availableMembrane tethers play a critical role in cell adhesion and cell motility. Thi...
Membrane tethers are extracted at constant velocity from neuronal growth cones using a force generat...
AbstractLiving cells maintain a huge transmembrane electric field across their membranes. This elect...
Many cell phenomena involve major morphological changes, particularly in mitosis and the process of ...
Abstract only availableMembrane tethers are ubiquitous nanometer-diameter cylindrical extensions of ...
AbstractBinding interactions between the plasma membrane and the cytoskeleton define cell functions ...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
AbstractLateral tension in cell plasma membranes plays an essential role in regulation of a number o...
AbstractThe therapeutic efficacy of mesenchymal stem cells (MSCs) in tissue engineering and regenera...