Mechanosensing proteins have mainly been investigated in 2D culture platforms, while understanding their regulation in 3D enviroments is critical for tissue engineering. Among mechanosensing proteins, the actin cytoskeleton plays a key role in human mesenchymal stromal cells (hMSCs) activity, but its regulation in 3D tissue engineered scaffolds remains poorly studied. Here, we show that human mesenchymal stromal cells (hMSCs) cultured on 3D electrospun scaffolds made of a stiff material do not form actin stress fibers, contrary to hMSCs on 2D films of the same material. On 3D electrospun and additive manufactured scaffolds, hMSCs also displayed fewer focal adhesions, lower lamin A and C expression and less YAP1 nuclear localization and myos...
Biophysical properties of the cellular microenvironment, including stiffness and geometry, have been...
While stem cells can sense and respond to physical properties of their environment, the molecular as...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...
Mechanosensing proteins have mainly been investigated in 2D culture platforms, while understanding t...
Mechanobiology, translating mechanical signals into biological ones, greatly affects cellular behavi...
Recent studies have found discordant mechanosensitive outcomes when comparing 2D and 3D, highlightin...
SummaryTissue microenvironments are characterized not only in terms of chemical composition but also...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
nt laboratories [1–5]. Recently, it has differentiation of pluripotent cells published in Developmen...
3-dimensional microcarrier (3D-MC) cell culture systems are often used for expansion of stem cells i...
Mechanical stimuli from the extracellular environment affect cell morphology and functionality. Rece...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
Focal adhesions (FAs) are specialized structures that enable cells to sense their extracellular matr...
The ability of a cell to regulate its mechanical properties is central to its function. Emerging evi...
Biophysical properties of the cellular microenvironment, including stiffness and geometry, have been...
While stem cells can sense and respond to physical properties of their environment, the molecular as...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...
Mechanosensing proteins have mainly been investigated in 2D culture platforms, while understanding t...
Mechanobiology, translating mechanical signals into biological ones, greatly affects cellular behavi...
Recent studies have found discordant mechanosensitive outcomes when comparing 2D and 3D, highlightin...
SummaryTissue microenvironments are characterized not only in terms of chemical composition but also...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
nt laboratories [1–5]. Recently, it has differentiation of pluripotent cells published in Developmen...
3-dimensional microcarrier (3D-MC) cell culture systems are often used for expansion of stem cells i...
Mechanical stimuli from the extracellular environment affect cell morphology and functionality. Rece...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
Focal adhesions (FAs) are specialized structures that enable cells to sense their extracellular matr...
The ability of a cell to regulate its mechanical properties is central to its function. Emerging evi...
Biophysical properties of the cellular microenvironment, including stiffness and geometry, have been...
While stem cells can sense and respond to physical properties of their environment, the molecular as...
Cells are able to perceive complex mechanical cues from their microenvironment, which in turn influe...