The cellular environment impacts a myriad of cellular functions by providing signals that can modulate cell phenotype and function. Physical cues such as topography, roughness, gradients, and elasticity are of particular importance. Thus, synthetic substrates can be potentially useful tools for exploring the influence of the aforementioned physical properties on cellular function. Many micro‐ and nanofabrication processes have been employed to control substrate characteristics in both 2D and 3D environments. This review highlights strategies for modulating the physical properties of surfaces, the influence of these changes on cell responses, and the promise and limitations of these surfaces in in‐vitro settings. While both hard and soft mat...
Surface interaction at the biomaterial�cell interface is essential for a variety of cellular funct...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
This dissertation focuses on methods to understand and improve surface modifications for 2D and 3D c...
Topographical and mechanical properties of adhesive substrates provide important biological cues tha...
The use of synthetic surfaces and materials to influence and study cell behavior has vastly progress...
A cell’s interaction with its extracellular environment is critical to tissue structure and function...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
Growing cells are sensitive to the chemical composition, the topography and the mechanical propertie...
A plethora of work has been dedicated to the analysis of cell behavior on substrates with ordered to...
Topographical and mechanical properties of adhesive substrates provide important biological cues tha...
Interactions between cells and the microenvironment have been demonstrated to be key factors in cell...
Biomimetic materials have long been the (he)art of bioengineering. They usually aim at mimicking in ...
It has been clear that the surface properties of the materials used as substrates for cell culture c...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
International audienceBiomimetic materials have long been the (he)art of bioengineering. They usuall...
Surface interaction at the biomaterial�cell interface is essential for a variety of cellular funct...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
This dissertation focuses on methods to understand and improve surface modifications for 2D and 3D c...
Topographical and mechanical properties of adhesive substrates provide important biological cues tha...
The use of synthetic surfaces and materials to influence and study cell behavior has vastly progress...
A cell’s interaction with its extracellular environment is critical to tissue structure and function...
Cell substrate interactions play an important role in regulating cellular physiological and patholog...
Growing cells are sensitive to the chemical composition, the topography and the mechanical propertie...
A plethora of work has been dedicated to the analysis of cell behavior on substrates with ordered to...
Topographical and mechanical properties of adhesive substrates provide important biological cues tha...
Interactions between cells and the microenvironment have been demonstrated to be key factors in cell...
Biomimetic materials have long been the (he)art of bioengineering. They usually aim at mimicking in ...
It has been clear that the surface properties of the materials used as substrates for cell culture c...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
International audienceBiomimetic materials have long been the (he)art of bioengineering. They usuall...
Surface interaction at the biomaterial�cell interface is essential for a variety of cellular funct...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
This dissertation focuses on methods to understand and improve surface modifications for 2D and 3D c...