Although adhesive interactions between cells and nanostructured interfaces have been studied extensively, there is a paucity of data on how nanostructured interfaces repel cells by directing cell migration and cell-colony organization. Here, by using multiphoton ablation lithography to pattern surfaces with nanoscale craters of various aspect ratios and pitches, we show that the surfaces altered the cells' focal-adhesion size and distribution, thus affecting cell morphology, migration and ultimately localization. We also show that nanocrater pitch can disrupt the formation of mature focal adhesions to favour the migration of cells towards higher-pitched regions, which present increased planar area for the formation of stable focal adhesions...
The development of biomaterials ensuring proper cell adhesion, polarization, migration and different...
This journal is © The Royal Society of Chemistry.Understanding cell responses to the topography they...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
This dissertation focuses on methods to understand and improve surface modifications for 2D and 3D c...
Cell migration plays fundamental roles in the development and maintenance of organisms such as wound...
Topographic patterns are known to affect cellular processes such as adhesion, migration and differen...
International audienceUnderstanding how topographical cues can control cell behavior is a major fund...
It is well known that the surface features, including both chemical cues and morphology, can affect ...
Cellular migration plays a vital role in many physiological processes. To elucidate the role of surf...
Spatial molecular patterning enables the regulation of adhesion receptor clustering and can thus pla...
Cell-repellent interfaces have various applications, including microfluidic devices, biosensors, and...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
The cell adhesion and migration behavior on different nanopatterned surfaces was investigated to det...
Cells in the human body come across many types of information, which they respond to. Both material ...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The development of biomaterials ensuring proper cell adhesion, polarization, migration and different...
This journal is © The Royal Society of Chemistry.Understanding cell responses to the topography they...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
This dissertation focuses on methods to understand and improve surface modifications for 2D and 3D c...
Cell migration plays fundamental roles in the development and maintenance of organisms such as wound...
Topographic patterns are known to affect cellular processes such as adhesion, migration and differen...
International audienceUnderstanding how topographical cues can control cell behavior is a major fund...
It is well known that the surface features, including both chemical cues and morphology, can affect ...
Cellular migration plays a vital role in many physiological processes. To elucidate the role of surf...
Spatial molecular patterning enables the regulation of adhesion receptor clustering and can thus pla...
Cell-repellent interfaces have various applications, including microfluidic devices, biosensors, and...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
The cell adhesion and migration behavior on different nanopatterned surfaces was investigated to det...
Cells in the human body come across many types of information, which they respond to. Both material ...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
The development of biomaterials ensuring proper cell adhesion, polarization, migration and different...
This journal is © The Royal Society of Chemistry.Understanding cell responses to the topography they...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...