To study the compressional forces exerted by a bundle of living stiff filaments pressing on a surface, akin to the case of an actin bundle in filopodia structures, we have performed particulate molecular dynamics simulations of a grafted bundle of parallel living (self-assembling) filaments, in chemical equilibrium with a solution of their constitutive monomers. Equilibrium is established as these filaments, grafted at one end to a wall of the simulation box, grow at their chemically active free end, and encounter the opposite confining wall of the simulation box. Further growth of filaments requires bending and thus energy, which automatically limit the populations of longer filaments. The resulting filament sizes distribution and the forc...
A comparative dynamic Monte Carlo simulation study of polydisperse living polymer brushes, created b...
We propose a hybrid molecular dynamics/multi-particle collision dynamics model to simulate a set of ...
We investigate the force generation by polymerizing bundles of filaments, which form because of shor...
The properties of a bundle of grafted semi-flexible living filaments in ideal solution facing an obs...
We report a coarse-grained molecular dynamics simulation study of a bundle of parallel actin filamen...
We establish the statistical mechanics framework for a bundle of Nf living and uncrosslinked actin f...
The dynamic behavior of bundles of actin filaments growing against a loaded obstacle is investigated...
In various cellular processes, bio-filaments like F-actin and F-tubulin are able to exploit chemical...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
Abstract Polymerising filaments generate force against an obstacle, as in, e.g., microtubule-kinetoc...
International audienceWe develop a model to describe the force generated by the polymerization of an...
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Collective dynamics and force generation by cytoskeletal filaments are crucial in many cellular proc...
Actin polymerization is the primary mechanism for overcoming the large turgor pressure that opposes ...
The entropic force exerted by the Brownian fluctuations of a grafted semiflexible polymer upon a rig...
A comparative dynamic Monte Carlo simulation study of polydisperse living polymer brushes, created b...
We propose a hybrid molecular dynamics/multi-particle collision dynamics model to simulate a set of ...
We investigate the force generation by polymerizing bundles of filaments, which form because of shor...
The properties of a bundle of grafted semi-flexible living filaments in ideal solution facing an obs...
We report a coarse-grained molecular dynamics simulation study of a bundle of parallel actin filamen...
We establish the statistical mechanics framework for a bundle of Nf living and uncrosslinked actin f...
The dynamic behavior of bundles of actin filaments growing against a loaded obstacle is investigated...
In various cellular processes, bio-filaments like F-actin and F-tubulin are able to exploit chemical...
We study force generation and actin filament dynamics using stochastic and deterministic methods. Fi...
Abstract Polymerising filaments generate force against an obstacle, as in, e.g., microtubule-kinetoc...
International audienceWe develop a model to describe the force generated by the polymerization of an...
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Collective dynamics and force generation by cytoskeletal filaments are crucial in many cellular proc...
Actin polymerization is the primary mechanism for overcoming the large turgor pressure that opposes ...
The entropic force exerted by the Brownian fluctuations of a grafted semiflexible polymer upon a rig...
A comparative dynamic Monte Carlo simulation study of polydisperse living polymer brushes, created b...
We propose a hybrid molecular dynamics/multi-particle collision dynamics model to simulate a set of ...
We investigate the force generation by polymerizing bundles of filaments, which form because of shor...