In this work, we present a method to fabricate a hyaluronic acid hydrogel with spatially controlled cell-adhesion properties based on photo-polymerisation cross-linking and functionalisation. The approach utilises the same reaction pathway for both steps meaning that it is user-friendly and allows for adaptation at any stage during the fabrication process. Moreover, the process does not require any additional cross-linkers. The hydrogel is formed by UV initiated radical addition reaction between acrylamide groups on the hyaluronic acid backbone. Cell adhesion is modulated by functionalising the adhesion peptide sequence RGD (arginine-glycine-aspartate) onto the hydrogel surface via radical mediated thiol-ene reaction using the non-reacted a...
The cellular microenvironment plays a major role in the biological functions of cells. Thus, biomate...
International audienceHyaluronic acid (HA) is a natural polysaccharide abundant in biological tissue...
The design and implementation of extracellular matrix (ECM)-mimetic hydrogels for tissue engineering...
In this work, we present a method to fabricate a hyaluronic acid hydrogel with spatially controlled ...
In this work, we present a method to fabricate a hyaluronic acid hydrogel with spatially controlled ...
Abstract In this work, we present a method to fabricate a hyaluronic acid (HA) hydrogel with spatial...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
Cell behavior is influenced to a large extent by the surrounding microenvironment. Therefore, in the...
The cellular microenvironment plays a major role in the biological functions of cells. Thus, biomate...
International audienceHyaluronic acid (HA) is a natural polysaccharide abundant in biological tissue...
The design and implementation of extracellular matrix (ECM)-mimetic hydrogels for tissue engineering...
In this work, we present a method to fabricate a hyaluronic acid hydrogel with spatially controlled ...
In this work, we present a method to fabricate a hyaluronic acid hydrogel with spatially controlled ...
Abstract In this work, we present a method to fabricate a hyaluronic acid (HA) hydrogel with spatial...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
Organs-on-chips technologies require the development of micro engineered devices to represent functi...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The building blocks of human tissues are cells. The cells interact and respond to the characteristic...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
The human body consist of a vast number of cells, and jointly, the cells, form tissues and organs. T...
Cell behavior is influenced to a large extent by the surrounding microenvironment. Therefore, in the...
The cellular microenvironment plays a major role in the biological functions of cells. Thus, biomate...
International audienceHyaluronic acid (HA) is a natural polysaccharide abundant in biological tissue...
The design and implementation of extracellular matrix (ECM)-mimetic hydrogels for tissue engineering...