Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue culture. Composed of actin filaments, myosin II, and many other proteins, SFs are force-generating and tension-bearing structures that respond to the surrounding physical environment. New work is shedding light on the mechanosensitive properties of SFs, including that these structures can respond to mechanical tension by rapid reinforcement and that there are mechanisms to repair strain-induced damage. Although SFs are superficially similar in organization to the sarcomeres of striated muscle, there are intriguing differences in their organization and behavior, indicating that much still needs to be learned about these structures
One of the most exciting recent developments in cell biology is the recognition that the geometry, t...
Actomyosin stress fibers (SFs) play key roles in driving polarized motility and generating traction ...
none3siWe apply a recently developed model of cytoskeletal force generation to study a cell’s intrin...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
Stress fibers and focal adhesions are complex protein arrays that produce, transmit and sense mechan...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
Mechanotransduction is the process through which cells survey the mechanical properties of their env...
Stress fibers are contractile bundles in the cytoskeleton that stabilize cell structure by exerting ...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
AbstractActin stress fibers (SFs) are load-bearing and mechanosensitive structures. To our knowledge...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
AbstractStress fibers and focal adhesions are complex protein arrays that produce, transmit and sens...
One of the most exciting recent developments in cell biology is the recognition that the geometry, t...
Actomyosin stress fibers (SFs) play key roles in driving polarized motility and generating traction ...
none3siWe apply a recently developed model of cytoskeletal force generation to study a cell’s intrin...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
Stress fibers and focal adhesions are complex protein arrays that produce, transmit and sense mechan...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
Mechanotransduction is the process through which cells survey the mechanical properties of their env...
Stress fibers are contractile bundles in the cytoskeleton that stabilize cell structure by exerting ...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
AbstractActin stress fibers (SFs) are load-bearing and mechanosensitive structures. To our knowledge...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
AbstractStress fibers and focal adhesions are complex protein arrays that produce, transmit and sens...
One of the most exciting recent developments in cell biology is the recognition that the geometry, t...
Actomyosin stress fibers (SFs) play key roles in driving polarized motility and generating traction ...
none3siWe apply a recently developed model of cytoskeletal force generation to study a cell’s intrin...