<p>Mechanical and physical stimuli including material stiffness and topography or applied mechanical strain have been demonstrated to modulate differentiation of glial progenitor and neural stem cells. Recent studies probing such mechanotransduction in oligodendrocytes have focused chiefly on the biomolecular components. However, the cell-level biophysical changes associated with such responses remain largely unknown. Here, we explored mechanotransduction in oligodendrocyte progenitor cells (OPCs) during the first 48 h of differentiation induction by quantifying the biophysical state in terms of nuclear dynamics, cytoskeleton organization, and cell migration. We compared these mechanophenotypic changes in OPCs exposed to both chemical cues ...
Mechanical stimuli are important in directing the fate of stem cells; the effects of mechanical stim...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
The central nervous system (CNS) controls crucial functions in mammals ranging from sensory processi...
<p>Mechanical and physical stimuli including material stiffness and topography or applied mechanical...
Mechanical and physical stimuli including material stiffness and topography or applied mechanical st...
Mechanical and physical stimuli including material stiffness and topography or applied mechanical st...
Oligodendrocyte and oligodendrocyte progenitor cell (OPC) biology is modulated in vitro by mechanica...
Oligodendrocyte progenitors respond to biophysical or mechanical signals, and it has been reported t...
© 2020 The Royal Society of Chemistry. While the mechanotransduction-induced fate of adult neural st...
Myelination and its regenerative counterpart remyelination represent one of the most complex cell-ce...
Mesenchymal stem cell (MSC) differentiation is mediated by soluble and physical cues. In this study,...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Cell differentiation, proliferation and migration are essential processes in tissue regenera-tion. E...
Differentiation of oligodendrocyte progenitor cells (OPC) to oligodendrocytes and subsequent axon my...
Mechanical stimuli are important in directing the fate of stem cells; the effects of mechanical stim...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
The central nervous system (CNS) controls crucial functions in mammals ranging from sensory processi...
<p>Mechanical and physical stimuli including material stiffness and topography or applied mechanical...
Mechanical and physical stimuli including material stiffness and topography or applied mechanical st...
Mechanical and physical stimuli including material stiffness and topography or applied mechanical st...
Oligodendrocyte and oligodendrocyte progenitor cell (OPC) biology is modulated in vitro by mechanica...
Oligodendrocyte progenitors respond to biophysical or mechanical signals, and it has been reported t...
© 2020 The Royal Society of Chemistry. While the mechanotransduction-induced fate of adult neural st...
Myelination and its regenerative counterpart remyelination represent one of the most complex cell-ce...
Mesenchymal stem cell (MSC) differentiation is mediated by soluble and physical cues. In this study,...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Cell differentiation, proliferation and migration are essential processes in tissue regenera-tion. E...
Differentiation of oligodendrocyte progenitor cells (OPC) to oligodendrocytes and subsequent axon my...
Mechanical stimuli are important in directing the fate of stem cells; the effects of mechanical stim...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
The central nervous system (CNS) controls crucial functions in mammals ranging from sensory processi...