Nanotopography Influences Adhesion, Spreading, and Self-Renewal of Human Embryonic Stem Cells
- 9 April 2012
- journal article
- research article
- Published by American Chemical Society (ACS) in ACS Nano
- Vol. 6 (5), 4094-4103
- https://doi.org/10.1021/nn3004923
Abstract
Human embryonic stem cells (hESCs) have great potentials for future cell-based therapeutics. However, their mechanosensitivity to biophysical signals from the cellular microenvironment is not well characterized. Here we introduced an effective microfabrication strategy for accurate control and patterning of nanoroughness on glass surfaces. Our results demonstrated that nanotopography could provide a potent regulatory signal over different hESC behaviors, including cell morphology, adhesion, proliferation, clonal expansion, and self-renewal. Our results indicated that topological sensing of hESCs might include feedback regulation involving mechanosensory integrin-mediated cell–matrix adhesion, myosin II, and E-cadherin. Our results also demonstrated that cellular responses to nanotopography were cell-type specific, and as such, we could generate a spatially segregated coculture system for hESCs and NIH/3T3 fibroblasts using patterned nanorough glass surfaces.Keywords
This publication has 51 references indexed in Scilit:
- Role of Mechanical Factors in Fate Decisions of Stem CellsRegenerative Medicine, 2011
- Nanolithographic Control of the Spatial Organization of Cellular Adhesion Receptors at the Single-Molecule LevelNano Letters, 2011
- Neurons sense nanoscale roughness with nanometer sensitivityProceedings of the National Academy of Sciences, 2010
- Substrate topography shapes cell functionSoft Matter, 2009
- Environmental sensing through focal adhesionsNature Reviews Molecular Cell Biology, 2009
- Local force and geometry sensing regulate cell functionsNature Reviews Molecular Cell Biology, 2006
- Tissue Cells Feel and Respond to the Stiffness of Their SubstrateScience, 2005
- Exploring and Engineering the Cell Surface InterfaceScience, 2005
- Transmembrane crosstalk between the extracellular matrix and the cytoskeletonNature Reviews Molecular Cell Biology, 2001
- Topographical control of cellsBiomaterials, 1997