Bundled actin structures play an essential role in the mechanical response of the actin cytoskeleton in eukaryotic cells. Although responsible for crucial cellular processes, they are rarely investigated in comparison to single filaments and isotropic networks. Presenting a highly anisotropic structure, the determination of the mechanical properties of individual bundles was previously achieved through passive approaches observing bending deformations induced by thermal fluctuations. We present a new method to determine the bending stiffness of individual bundles, by measuring the decay of an actively induced oscillation. This approach allows us to systematically test anisotropic, bundled structures. Our experiments revealed that thin, depl...
Bundled actin structures play a key role in maintaining cellular shape, in aiding force transmission...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...
Bundled actin structures play an essential role in the mechanical response of the actin cytoskeleton...
AbstractThe mechanical properties of cytoskeletal actin bundles play an essential role in numerous p...
The mechanical properties of cytoskeletal actin bundles play an essential role in numerous physiolog...
International audienceActin is one of the main components of the architecture of cells. Actin filame...
Actin bundles are an important structure within the cytoskeleton of the cell that give the cell stru...
International audienceBundles of actin filaments are central to a large variety of cellular structur...
International audienceBundles of actin filaments are central to a large variety of cellular structur...
Bundles of filamentous polymers are primary structural components of a broad range of cytoskeletal s...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Filamentous actin (F-actin) bundles form primary structural components of a broad range of cytoskele...
While actin bundles are used by living cells for structural fortification, the microscopic origin of...
Bundled actin structures play a key role in maintaining cellular shape, in aiding force transmission...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...
Bundled actin structures play an essential role in the mechanical response of the actin cytoskeleton...
AbstractThe mechanical properties of cytoskeletal actin bundles play an essential role in numerous p...
The mechanical properties of cytoskeletal actin bundles play an essential role in numerous physiolog...
International audienceActin is one of the main components of the architecture of cells. Actin filame...
Actin bundles are an important structure within the cytoskeleton of the cell that give the cell stru...
International audienceBundles of actin filaments are central to a large variety of cellular structur...
International audienceBundles of actin filaments are central to a large variety of cellular structur...
Bundles of filamentous polymers are primary structural components of a broad range of cytoskeletal s...
Networks of cross-linked and bundled actin filaments are ubiquitous in the cellular cytoskeleton, bu...
Filamentous actin (F-actin) bundles form primary structural components of a broad range of cytoskele...
While actin bundles are used by living cells for structural fortification, the microscopic origin of...
Bundled actin structures play a key role in maintaining cellular shape, in aiding force transmission...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...
Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical ...