Cell migration is crucial in physiological and pathological processes such as embryonic development and wound healing; such migration is strongly guided by the surrounding nanostructured extracellular matrix. Previous studies have extensively studied the cell migration on anisotropic nanotopographic surfaces; however, only a few studies have reported cell migration on isotropic nanotopographic surfaces. We herein, for the first time, propose a novel concept of adherable area on cell migration using isotropic nanopore surfaces with sufficient nanopore depth by adopting a high aspect ratio. As the pore size of the nanopore surface was controlled to 200, 300, and 400 nm in a fixed center-to-center distance of 480 nm, it produced 86, 68, and 36...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration plays fundamental roles in the development and maintenance of organisms such as wound...
Cellular migration plays a vital role in many physiological processes. To elucidate the role of surf...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
MasterCell migration plays pivotal roles in embryonic development, wound healing and immunes respons...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration is crucial in physiological and pathological processes such as embryonic development ...
Cell migration plays fundamental roles in the development and maintenance of organisms such as wound...
Cellular migration plays a vital role in many physiological processes. To elucidate the role of surf...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Nanotopography mimicking extracellular environments reportedly impact cell morphological changes; ho...
MasterCell migration plays pivotal roles in embryonic development, wound healing and immunes respons...
Although nanotopography has been shown to be a potent modulator of cell behavior, it is unclear how ...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...
Organised nanotopography mimicking the natural extracellular matrix can be used to control morpholog...