Literature DB >> 22635042

Extracellular-matrix tethering regulates stem-cell fate.

Britta Trappmann1, Julien E Gautrot, John T Connelly, Daniel G T Strange, Yuan Li, Michelle L Oyen, Martien A Cohen Stuart, Heike Boehm, Bojun Li, Viola Vogel, Joachim P Spatz, Fiona M Watt, Wilhelm T S Huck.   

Abstract

To investigate how substrate properties influence stem-cell fate, we cultured single human epidermal stem cells on polydimethylsiloxane (PDMS) and polyacrylamide (PAAm) hydrogel surfaces, 0.1 kPa-2.3 MPa in stiffness, with a covalently attached collagen coating. Cell spreading and differentiation were unaffected by polydimethylsiloxane stiffness. However, cells on polyacrylamide of low elastic modulus (0.5 kPa) could not form stable focal adhesions and differentiated as a result of decreased activation of the extracellular-signal-related kinase (ERK)/mitogen-activated protein kinase (MAPK) signalling pathway. The differentiation of human mesenchymal stem cells was also unaffected by PDMS stiffness but regulated by the elastic modulus of PAAm. Dextran penetration measurements indicated that polyacrylamide substrates of low elastic modulus were more porous than stiff substrates, suggesting that the collagen anchoring points would be further apart. We then changed collagen crosslink concentration and used hydrogel-nanoparticle substrates to vary anchoring distance at constant substrate stiffness. Lower collagen anchoring density resulted in increased differentiation. We conclude that stem cells exert a mechanical force on collagen fibres and gauge the feedback to make cell-fate decisions.

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Year:  2012        PMID: 22635042     DOI: 10.1038/nmat3339

Source DB:  PubMed          Journal:  Nat Mater        ISSN: 1476-1122            Impact factor:   43.841


  28 in total

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  438 in total

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5.  Stiffness-controlled three-dimensional extracellular matrices for high-resolution imaging of cell behavior.

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7.  Controlling stem cell-mediated bone regeneration through tailored mechanical properties of collagen scaffolds.

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8.  Biomembrane-mimicking lipid bilayer system as a mechanically tunable cell substrate.

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9.  Combinatorial screening of mesenchymal stem cell adhesion and differentiation using polymer pen lithography.

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