[PDF][PDF] Material cues as potent regulators of epigenetics and stem cell function

SW Crowder, V Leonardo, T Whittaker… - Cell stem cell, 2016 - cell.com
SW Crowder, V Leonardo, T Whittaker, P Papathanasiou, MM Stevens
Cell stem cell, 2016cell.com
Biophysical signals act as potent regulators of stem cell function, lineage commitment, and
epigenetic status. In recent years, synthetic biomaterials have been used to study a wide
range of outside-in signaling events, and it is now well appreciated that material cues
modulate the epigenome. Here, we review the role of extracellular signals in guiding stem
cell behavior via epigenetic regulation, and we stress the role of physicochemical material
properties as an often-overlooked modulator of intracellular signaling. We also highlight …
Biophysical signals act as potent regulators of stem cell function, lineage commitment, and epigenetic status. In recent years, synthetic biomaterials have been used to study a wide range of outside-in signaling events, and it is now well appreciated that material cues modulate the epigenome. Here, we review the role of extracellular signals in guiding stem cell behavior via epigenetic regulation, and we stress the role of physicochemical material properties as an often-overlooked modulator of intracellular signaling. We also highlight promising new research tools for ongoing interrogation of the stem cell-material interface.
cell.com