Suspensions of microtubules and nonadsorbing particles form thick and long bundles due to depletion forces. Such interactions act at the nanometer scale and define the structural and dynamical properties of the resulting networks. In this study, we analyze the depletion forces exerted by two types of nonadsorbing particles, namely, the polymer, poly(ethylene glycol) (PEG), and the block copolymer, Pluronic. We characterize their effects both in passive and active networks by adding motor proteins to the suspensions. By exploiting its bundling effect via entropic forces, we observed that PEG generates a network with thick structures showing a nematic order and larger mesh size. On the other hand, Pluronic builds up a much denser gel-like net...
The cytoskeleton is a network of interconnected protein filaments, which provide a three-dimensional...
Cytoskeletal filaments and molecular motors facilitate the micron-scale force generation necessary f...
We present a generic coarse-grained model to describe molecular motors acting on polymer substrates,...
Suspensions of microtubules and nonadsorbing particles form thick and long bundles due to depletion ...
Suspensions of microtubules and nonadsorbing particles form thick and long bundles due to depletion ...
The physical properties of polymeric actin facilitate many mechanical processes within the cell, inc...
Living systems naturally exhibit internal driving: active, molecular processes drive non-equilibrium...
Many cellular processes are driven by cytoskeletal assemblies. It remains unclear how cytoskeletal f...
Active matter is a field that continues to grow in interest because of its widespread relevance to f...
AbstractThe structure and rheology of cytoskeletal networks are regulated by actin binding proteins....
International audienceActive gels made of cytoskeletal proteins are valuable materials with attracti...
Microtubules and motor proteins form active filament networks that are critical for a variety of fun...
Microtubules and motor proteins form active filament networks that are critical for a variety of fun...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
This thesis discusses circularization and supercoiling of actin biofilaments, as well as the various...
The cytoskeleton is a network of interconnected protein filaments, which provide a three-dimensional...
Cytoskeletal filaments and molecular motors facilitate the micron-scale force generation necessary f...
We present a generic coarse-grained model to describe molecular motors acting on polymer substrates,...
Suspensions of microtubules and nonadsorbing particles form thick and long bundles due to depletion ...
Suspensions of microtubules and nonadsorbing particles form thick and long bundles due to depletion ...
The physical properties of polymeric actin facilitate many mechanical processes within the cell, inc...
Living systems naturally exhibit internal driving: active, molecular processes drive non-equilibrium...
Many cellular processes are driven by cytoskeletal assemblies. It remains unclear how cytoskeletal f...
Active matter is a field that continues to grow in interest because of its widespread relevance to f...
AbstractThe structure and rheology of cytoskeletal networks are regulated by actin binding proteins....
International audienceActive gels made of cytoskeletal proteins are valuable materials with attracti...
Microtubules and motor proteins form active filament networks that are critical for a variety of fun...
Microtubules and motor proteins form active filament networks that are critical for a variety of fun...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
This thesis discusses circularization and supercoiling of actin biofilaments, as well as the various...
The cytoskeleton is a network of interconnected protein filaments, which provide a three-dimensional...
Cytoskeletal filaments and molecular motors facilitate the micron-scale force generation necessary f...
We present a generic coarse-grained model to describe molecular motors acting on polymer substrates,...