Differentiating neurons process the mechanical stimulus by exerting the protrusive forces through lamellipodia and filopodia. We used optical tweezers, video imaging and immunocytochemistry to analyze the role of non-muscle myosin-II on the protrusive force exerted by lamellipodia and filopodia from developing growth cones (GCs) of isolated Dorsal Root Ganglia (DRG) neurons. When the activity of myosin-II was inhibited by 30â ... 1/4M Blebbistatin protrusion/retraction cycles of lamellipodia slowed down and during retraction lamellipodia could not lift up axially as in control condition. Inhibition of actin polymerization with 25â ...nM Cytochalasin-D and of microtubule polymerization with 500â ...nM Nocodazole slowed down the protrusion/re...
AbstractPolymerization of actin filaments is the primary source of motility in lamellipodia and it i...
Polymerization of actin filaments is the primary source of motility in lamellipodia and it is contro...
We identify an actin-based protrusive structure in growth cones termed “intrapodium.” Unlike filopod...
Differentiating neurons process the mechanical stimulus by exerting the protrusive forces through la...
Understanding the dynamical and molecular properties of force generation in neuronal growth cones i...
We used optical tweezers to analyze the effect of jasplakinolide and cyclodextrin on the force exert...
AbstractWe used optical tweezers to analyze the effect of jasplakinolide and cyclodextrin on the for...
During neuronal differentiation, lamellipodia and filopodia explore the environment in search for th...
Nonmuscle myosin II is among the most abundant forms of myosin in nerve growth cones. At least two i...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractWe addressed the mechanical basis for how embryonic chick dorsal root ganglion growth cones ...
We used optical tweezers, video imaging, immunocytochemistry and a variety of inhibitors to analyze ...
<div><p>Mechanical properties such as force generation are fundamental for neuronal motility, develo...
The contractile system of nonmuscle cells consists of interconnected actomyosin networks and bundles...
Mechanical properties such as force generation are fundamental for neuronal motility, development an...
AbstractPolymerization of actin filaments is the primary source of motility in lamellipodia and it i...
Polymerization of actin filaments is the primary source of motility in lamellipodia and it is contro...
We identify an actin-based protrusive structure in growth cones termed “intrapodium.” Unlike filopod...
Differentiating neurons process the mechanical stimulus by exerting the protrusive forces through la...
Understanding the dynamical and molecular properties of force generation in neuronal growth cones i...
We used optical tweezers to analyze the effect of jasplakinolide and cyclodextrin on the force exert...
AbstractWe used optical tweezers to analyze the effect of jasplakinolide and cyclodextrin on the for...
During neuronal differentiation, lamellipodia and filopodia explore the environment in search for th...
Nonmuscle myosin II is among the most abundant forms of myosin in nerve growth cones. At least two i...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractWe addressed the mechanical basis for how embryonic chick dorsal root ganglion growth cones ...
We used optical tweezers, video imaging, immunocytochemistry and a variety of inhibitors to analyze ...
<div><p>Mechanical properties such as force generation are fundamental for neuronal motility, develo...
The contractile system of nonmuscle cells consists of interconnected actomyosin networks and bundles...
Mechanical properties such as force generation are fundamental for neuronal motility, development an...
AbstractPolymerization of actin filaments is the primary source of motility in lamellipodia and it i...
Polymerization of actin filaments is the primary source of motility in lamellipodia and it is contro...
We identify an actin-based protrusive structure in growth cones termed “intrapodium.” Unlike filopod...