The extracellular matrix is highly influential in regulating cell fate and function in vivo. Biophysical cues from the microenvironment are involved in nearly every cellular phenomenon, from initial embryogenesis to diseases such as atherosclerosis and cancer. This dissertation seeks to develop 3D hydrogel models to more accurately recapitulate the in vivo microenvironment by allowing for temporal modulation of stiffness. A strategy is presented to spatially and temporally tune the mechanical properties of 3D alginate-based hydrogels using a light-triggered mechanism. This approach is demonstrated to be cytocompatible and highly tunable. The system is employed to elucidate the morphological response of fibroblasts to stiffening 3D environme...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The extracellular environment defines a physical boundary condition with which cells interact. Howev...
The extracellular matrix is highly influential in regulating cell fate and function in vivo. Biophys...
Biomechanical properties of the extracellular matrix, such as stiffness and porosity, are known to i...
Our bodies are composed of complex tissues and organs, and each tissue is governed by the careful co...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
This thesis describes approaches to resolve inadequacies with current hydrogels used for cancer mode...
Synthetic hydrogels are an attractive class of materials for the design of well-defined cell culture...
Thesis (Master's)--University of Washington, 2019The extracellular matrix (ECM) plays an important r...
textA multitude of biophysical signals, including chemical, mechanical, and contact guidance cues, a...
This doctoral thesis reports an in vitro light-responsive hydrogel system that rapidly actuates with...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
Hydrogel materials are commonly used to model the mechanical properties of the extracellular matrix ...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The extracellular environment defines a physical boundary condition with which cells interact. Howev...
The extracellular matrix is highly influential in regulating cell fate and function in vivo. Biophys...
Biomechanical properties of the extracellular matrix, such as stiffness and porosity, are known to i...
Our bodies are composed of complex tissues and organs, and each tissue is governed by the careful co...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
This thesis describes approaches to resolve inadequacies with current hydrogels used for cancer mode...
Synthetic hydrogels are an attractive class of materials for the design of well-defined cell culture...
Thesis (Master's)--University of Washington, 2019The extracellular matrix (ECM) plays an important r...
textA multitude of biophysical signals, including chemical, mechanical, and contact guidance cues, a...
This doctoral thesis reports an in vitro light-responsive hydrogel system that rapidly actuates with...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
Hydrogel materials are commonly used to model the mechanical properties of the extracellular matrix ...
As cell function and phenotype can be directed by the mechanical characteristics of the surrounding ...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
The extracellular environment defines a physical boundary condition with which cells interact. Howev...