Metal surface nanostructuring to guide cell behavior is an attractive strategy to improve parts of medical implants, lab-on-a-chip, soft robotics, self-assembled microdevices, and bionic devices. Here, we discus important parameters, relevant trends, and specific examples of metal surface nanostructuring to guide cell behavior on metal-based hybrid surfaces. Surface nanostructuring allows precise control of cell morphology, adhesion, internal organization, and function. Pre-organized metal nanostructuring and dynamic stimuli-responsive surfaces are used to study various cell behaviors. For cells dynamics control, the oscillating stimuli-responsive layer-by-layer (LbL) polyelectrolyte assemblies are discussed to control drug delivery, coatin...
Surface modifications of materials are used to monitor and evaluate cellular function for several de...
It is well known that the surface features, including both chemical cues and morphology, can affect ...
Understanding of cell-substrate interaction will help us to gain insight into differences in cell be...
Metal surface nanostructuring to guide cell behavior is an attractive strategy to improve parts of m...
International audienceThe human body is an intricate biochemical–mechanical system, with an exceedin...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
Growing cells are sensitive to the chemical composition, the topography and the mechanical propertie...
In the field of regenerative medicine, nanoscale physical cuing is clearly becoming a compelling det...
Nanotopographical cues are used to stimulate and manipulate cell responses. Hence, the development o...
Cells are inherently sensitive to local mesoscale, microscale, and nanoscale patterns of chemistry a...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
An in vivo cellular microenvironment in which cells are immobilized contribute an essential role in ...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
Surface modifications of materials are used to monitor and evaluate cellular function for several de...
It is well known that the surface features, including both chemical cues and morphology, can affect ...
Understanding of cell-substrate interaction will help us to gain insight into differences in cell be...
Metal surface nanostructuring to guide cell behavior is an attractive strategy to improve parts of m...
International audienceThe human body is an intricate biochemical–mechanical system, with an exceedin...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
Growing cells are sensitive to the chemical composition, the topography and the mechanical propertie...
In the field of regenerative medicine, nanoscale physical cuing is clearly becoming a compelling det...
Nanotopographical cues are used to stimulate and manipulate cell responses. Hence, the development o...
Cells are inherently sensitive to local mesoscale, microscale, and nanoscale patterns of chemistry a...
The development of homogenously nano-patterned chemically modified surfaces that can be used to init...
An in vivo cellular microenvironment in which cells are immobilized contribute an essential role in ...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
Surface modifications of materials are used to monitor and evaluate cellular function for several de...
It is well known that the surface features, including both chemical cues and morphology, can affect ...
Understanding of cell-substrate interaction will help us to gain insight into differences in cell be...