Hydrogels with tunable stress relaxation regulate stem cell fate and activity

具有可调节应力松弛功能的水凝胶可调节干细胞的命运和活性

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作者:Ovijit Chaudhuri, Luo Gu, Darinka Klumpers, Max Darnell, Sidi A Bencherif, James C Weaver, Nathaniel Huebsch, Hong-Pyo Lee, Evi Lippens, Georg N Duda, David J Mooney

Abstract

Natural extracellular matrices (ECMs) are viscoelastic and exhibit stress relaxation. However, hydrogels used as synthetic ECMs for three-dimensional (3D) culture are typically elastic. Here, we report a materials approach to tune the rate of stress relaxation of hydrogels for 3D culture, independently of the hydrogel's initial elastic modulus, degradation, and cell-adhesion-ligand density. We find that cell spreading, proliferation, and osteogenic differentiation of mesenchymal stem cells (MSCs) are all enhanced in cells cultured in gels with faster relaxation. Strikingly, MSCs form a mineralized, collagen-1-rich matrix similar to bone in rapidly relaxing hydrogels with an initial elastic modulus of 17 kPa. We also show that the effects of stress relaxation are mediated by adhesion-ligand binding, actomyosin contractility and mechanical clustering of adhesion ligands. Our findings highlight stress relaxation as a key characteristic of cell-ECM interactions and as an important design parameter of biomaterials for cell culture.

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