Cell responses, such as positioning, morphological changes, proliferation, and apoptosis, are the result of complex chemical, topographical, and biological stimuli. Here we show the macroscopic responses of cells when nanoscale profiles made with inclusion bodies (IBs) are used for the 2D engineering of biological interfaces at the microscale. A deep statistical data treatment of fibroblasts cultivated on supports patterned with green fluorescent protein and human basic fibroblast growth factor-derived IBs demonstrates that these cells preferentially adhere to the IB areas and align and elongate according to specific patterns. These findings prove the potential of surface patterning with functional IBs as protein-based nanomaterials for tis...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
The aim of biomaterials design is to create an artificial environment that mimics the in vivo extrac...
Bacterial inclusion bodies (IBs) are proteinaceous aggregates that are used as nanoparticulate mate...
Cells are inherently sensitive to local mesoscale, microscale, and nanoscale patterns of chemistry a...
Aims: Bacterial inclusion bodies (IBs) are protein-based, amyloidal nanomaterials that mechanically ...
Engineering of biomimetic interfaces has become a valuable tool for guiding cellular processes such ...
Engineering of biomimetic interfaces has become a valuable tool for guiding cellular processes such ...
Nanopatterning of biomaterials is rapidly emerging as a tool to engineer cell function. Bulk metalli...
ovel patterning technologies have expanded the fundamental under-standing of cellular function at th...
Promising strategies for treating diseases and conditions like cancer, tissue necrosis from injury, ...
Altres ajuts: the COST Action CA15126, Fundació La Marató de TV3 Nr. 201812 i ICREA Academia AwardIn...
Bio-functional surfaces have been created by printing proteins on antifouling surfaces in a customis...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
The aim of biomaterials design is to create an artificial environment that mimics the in vivo extrac...
Bacterial inclusion bodies (IBs) are proteinaceous aggregates that are used as nanoparticulate mate...
Cells are inherently sensitive to local mesoscale, microscale, and nanoscale patterns of chemistry a...
Aims: Bacterial inclusion bodies (IBs) are protein-based, amyloidal nanomaterials that mechanically ...
Engineering of biomimetic interfaces has become a valuable tool for guiding cellular processes such ...
Engineering of biomimetic interfaces has become a valuable tool for guiding cellular processes such ...
Nanopatterning of biomaterials is rapidly emerging as a tool to engineer cell function. Bulk metalli...
ovel patterning technologies have expanded the fundamental under-standing of cellular function at th...
Promising strategies for treating diseases and conditions like cancer, tissue necrosis from injury, ...
Altres ajuts: the COST Action CA15126, Fundació La Marató de TV3 Nr. 201812 i ICREA Academia AwardIn...
Bio-functional surfaces have been created by printing proteins on antifouling surfaces in a customis...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
The rapid development of fabrication and processing technologies in the past two decades has enabled...
Surface nanotopography is widely employed to control cell behavior and in particular controlled diso...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
The aim of biomaterials design is to create an artificial environment that mimics the in vivo extrac...