Most of the scientists working in the field of tissue regeneration focus their research on creating a scaffold that allows cells to adhere, proliferate and differentiate. One of the most promising methods up to now consists in mimicking the natural environment of cells, namely the extracellular matrix (ECM). In this work, falling into the bone regeneration field, a new method is presented to synthesise a nanostructured biointerface mimicking the ECM of bone. It is composed of nanotubes made of collagen (Col) and hyaluronic acid (HA), two natural components composing the ECM in the human body. Those nanotubes are synthesised by combining the membrane templated and the layer-by-layer (LbL) methods. Intersected nanotubes are obtained by using ...
For the first time, a novel method for nucleation and deposition of vertically arrayed carbonated hy...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The scientific community is gathering an ever-growing collection of insights into how cell fate is f...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
The reassessment of the literature stipulates that an increasing amount of research in exploring the...
Nanobiomaterials based on superhydrophilic vertically-aligned multi-walled carbon nanotubes (VAMWCNT...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
For the first time, a novel method for nucleation and deposition of vertically arrayed carbonated hy...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The scientific community is gathering an ever-growing collection of insights into how cell fate is f...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
The reassessment of the literature stipulates that an increasing amount of research in exploring the...
Nanobiomaterials based on superhydrophilic vertically-aligned multi-walled carbon nanotubes (VAMWCNT...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
For the first time, a novel method for nucleation and deposition of vertically arrayed carbonated hy...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...