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Investigating the interplay between substrate stiffness and ligand chemistry in directing mesenchymal stem cell differentiation within 3D macro-porous substrates.

Biomaterials. 2018; 
HaughMatthew G,VaughanTed J,MadlChristopher M,RafteryRosanne M,McNamaraLaoise M,O'BrienFergal J,HeilshornSar
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摘要

Dimensionality can have a profound impact on stiffness-mediated differentiation of mesenchymal stem cells (MSCs). However, while we have begun to understand cellular response when encapsulated within 3D substrates, the behavior of cells within macro-porous substrates is relatively underexplored. The goal of this study was to determine the influence of macro-porous topographies on stiffness-mediated differentiation of MSCs. We developed macro-porous recombinant elastin-like protein (ELP) substrates that allow independent control of mechanical properties and ligand chemistry. We then used computational modeling to probe the impact of pore topography on the mechanical stimulus that cells are exposed to within ... More

关键词

Cell-matrix interactions,Differentiation,Macro-porosity,Mechanotransduction,Mesenchymal stem cells,Substrate stiffness,Tissue enginee