Natural polymers, such as hyaluronan, are considered as good candidates to substitute synthetic materials in many biological applications due to their intrinsic biocompatibility for in vitro and living cell experiments. This work describes surface modifications performed over modified hyaluronan derivatives which could help to understand the physical and biochemical cues on the cell-behaviour. A photocrosslinkable methacrylated hyaluronan was microstructured using soft lithography techniques to obtain a microenvironment suitable for cell-behaviour experiments, which might mimic the extra-cellular matrix. In addition, sulphated and non-sulphated oxidized hyaluronan were immobilized on bare substrates and micrometric features of cell adhesive...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
We report on the creation of films of end-grafted hyaluronan, based on solid-supported lipid membran...
Cell behavior is influenced to a large extent by the surrounding microenvironment. Therefore, in the...
Surface microfabrication techniques were widely utilised for the spatial control of in vitro cell be...
A study aimed at determining how the geometry and chemistry of pattern influence the behavior of dif...
Micropatterned surfaces with different chemical topographies were synthesised in order to investigat...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The supramolecular presentation of extracellular matrix components on surfaces provides a platform f...
International audienceHyaluronic acid (HA) is a natural polysaccharide abundant in biological tissue...
The modulation of biological interactions with artificial surfaces is a vital aspect of biomaterials...
Abstract Spiral and squared micropatterned surfaces of decreasing dimensions were realized by photo-...
Hyaluronic acid (HA) was patterned using two soft lithographic methods on various substrates includi...
Cell adhesion to biomaterials is an important prerequisite of tissue cells in successful incorporati...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
We report on the creation of films of end-grafted hyaluronan, based on solid-supported lipid membran...
Cell behavior is influenced to a large extent by the surrounding microenvironment. Therefore, in the...
Surface microfabrication techniques were widely utilised for the spatial control of in vitro cell be...
A study aimed at determining how the geometry and chemistry of pattern influence the behavior of dif...
Micropatterned surfaces with different chemical topographies were synthesised in order to investigat...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The supramolecular presentation of extracellular matrix components on surfaces provides a platform f...
International audienceHyaluronic acid (HA) is a natural polysaccharide abundant in biological tissue...
The modulation of biological interactions with artificial surfaces is a vital aspect of biomaterials...
Abstract Spiral and squared micropatterned surfaces of decreasing dimensions were realized by photo-...
Hyaluronic acid (HA) was patterned using two soft lithographic methods on various substrates includi...
Cell adhesion to biomaterials is an important prerequisite of tissue cells in successful incorporati...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
We report on the creation of films of end-grafted hyaluronan, based on solid-supported lipid membran...
Cell behavior is influenced to a large extent by the surrounding microenvironment. Therefore, in the...