Bundles and networks of semiflexible biopolymers are key elements in cells, lending them mechanical integrity while also enabling dynamic functions. Networks have been the subject of many studies, revealing a variety of fundamental characteristics often determined via bulk measurements. Although bundles are equally important in biological systems, they have garnered much less scientific attention since they have to be probed on the mesoscopic scale. Here, we review theoretical as well as experimental approaches, which mainly employ the naturally occurring biopolymer actin, to highlight the principles behind these structures on the single bundle level
This is an overview of theoretical approaches to semiflexible polymers and their networks. Such semi...
<div><p>Understanding the cytoskeletal functionality and its relation to other cellular components a...
Understanding the cytoskeletal functionality and its relation to other cellular components and prope...
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 ...
In the presence of condensing agents such as nonadsorbing polymer, multivalent counter ions, and spe...
While actin bundles are used by living cells for structural fortification, the microscopic origin of...
In the presence of condensing agents such as non-adsorbing polymer, multivalent counter ions and spe...
Polymers and their elementary subunits, called monomers, come in an immense variety of structures an...
The semiflexible polymers filamentous actin (F‑actin) and intermediate filaments (IF) both form comp...
The mechanical properties of cytoskeletal actin bundles play an essential role in numerous physiolog...
AbstractThe mechanical properties of cytoskeletal actin bundles play an essential role in numerous p...
[[abstract]]Cells and tissues are mechanical as well as biochemical machines, and cellular response ...
Biopolymer networks play a major role as part of the cytoskeleton. They provide stable structures an...
The actin cytoskeleton is organized into diverse meshworks and bundles that support many aspects of ...
This is an overview of theoretical approaches to semiflexible polymers and their networks. Such semi...
<div><p>Understanding the cytoskeletal functionality and its relation to other cellular components a...
Understanding the cytoskeletal functionality and its relation to other cellular components and prope...
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 ...
In the presence of condensing agents such as nonadsorbing polymer, multivalent counter ions, and spe...
While actin bundles are used by living cells for structural fortification, the microscopic origin of...
In the presence of condensing agents such as non-adsorbing polymer, multivalent counter ions and spe...
Polymers and their elementary subunits, called monomers, come in an immense variety of structures an...
The semiflexible polymers filamentous actin (F‑actin) and intermediate filaments (IF) both form comp...
The mechanical properties of cytoskeletal actin bundles play an essential role in numerous physiolog...
AbstractThe mechanical properties of cytoskeletal actin bundles play an essential role in numerous p...
[[abstract]]Cells and tissues are mechanical as well as biochemical machines, and cellular response ...
Biopolymer networks play a major role as part of the cytoskeleton. They provide stable structures an...
The actin cytoskeleton is organized into diverse meshworks and bundles that support many aspects of ...
This is an overview of theoretical approaches to semiflexible polymers and their networks. Such semi...
<div><p>Understanding the cytoskeletal functionality and its relation to other cellular components a...
Understanding the cytoskeletal functionality and its relation to other cellular components and prope...