Spontaneous self-organization of active matter has been demonstrated in a number of biological systems including bacteria, cells, and cytoskeletal filaments. Cytoskeletal filaments act as active polar rods when they are propelled along a glass surface via motor proteins. Actin has previously been shown to display polar or nematic ordering, whereas microtubules have been shown to create large vortices. For the first time, we combine both the actin and microtubule gliding into a composite active system. In the absence of actin filaments, microtubule filament organization transitions from isotropic to nematic to polar as a function of filament density. We find that the presence of a crowder, methylcellulose, is essential for this transition. I...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
Self-organization is a common way of forming functional structures in biology. It involves biochemic...
Actin and microtubule filaments, with their auxiliary proteins, enable the cytoskeleton to perform v...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
Spontaneous self-organization of active matter has been demonstrated in a number of biological syste...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
This thesis discusses circularization and supercoiling of actin biofilaments, as well as the various...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
Self-organization is a common way of forming functional structures in biology. It involves biochemic...
Actin and microtubule filaments, with their auxiliary proteins, enable the cytoskeleton to perform v...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
Spontaneous self-organization of active matter has been demonstrated in a number of biological syste...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
<p>Spontaneous self-organization of active matter has been demonstrated in a number of biological sy...
This thesis discusses circularization and supercoiling of actin biofilaments, as well as the various...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
International audienceActive cytoskeletal materials in vitro demonstrate self-organizing properties ...
Self-organization is a common way of forming functional structures in biology. It involves biochemic...
Actin and microtubule filaments, with their auxiliary proteins, enable the cytoskeleton to perform v...