Most tissue cells grown in sparse cultures on linearly elastic substrates typically display a small, round phenotype on soft substrates and become increasingly spread as the modulus of the substrate increases until their spread area reaches a maximum value. As cell density increases, individual cells retain the same stiffness-dependent differences unless they are very close or in molecular contact. On nonlinear strain-stiffening fibrin gels, the same cell types become maximally spread even when the low strain elastic modulus would predict a round morphology, and cells are influenced by the presence of neighbors hundreds of microns away. Time lapse microscopy reveals that fibroblasts and human mesenchymal stem cells on fibrin deform the subs...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractRecent observations suggest that cells on fibrous extracellular matrix materials sense mecha...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Many cell types alter their morphology and gene expression profile when grown on chemically equivale...
Animal cells in tissues are supported by biopolymer matrices, which typically exhibit highly nonline...
Contains fulltext : 171545.pdf (publisher's version ) (Closed access)The multistep...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
The effect of substrate stiffness on the cellular morphology, proliferation, and differentiation of ...
Tissue healing and regeneration is strongly influenced by the mechanical properties of the extracell...
Extracellular matrix stiffness has a profound effect on the behavior of many cell types. Adherent ce...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
AbstractRecent observations suggest that cells on fibrous extracellular matrix materials sense mecha...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Many cell types alter their morphology and gene expression profile when grown on chemically equivale...
Animal cells in tissues are supported by biopolymer matrices, which typically exhibit highly nonline...
Contains fulltext : 171545.pdf (publisher's version ) (Closed access)The multistep...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
The effect of substrate stiffness on the cellular morphology, proliferation, and differentiation of ...
Tissue healing and regeneration is strongly influenced by the mechanical properties of the extracell...
Extracellular matrix stiffness has a profound effect on the behavior of many cell types. Adherent ce...
AbstractThe role of matrix mechanics on cell behavior is under intense investigation. Cells exert co...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...