Strategies in Tissue Engineering and Regenerative Medicine are often based on the use of biomaterials able to support and control cellular activity. Two aspects should be considered in the development of high performance bioinstructive biomaterials. (i) The inherent complexity associated with the multiple possibilities in the biomaterials/cells selection, usually addressed using high-throughput combinatorial tests; and (ii) the unpredictability of the biological outcome of a particular solution. The last facet requires a rational decomposition of the main spatial and temporal cues at the cellular level that drive new-tissue formation upon injury, to be then transposed into adequate biomaterialsâ design. Several nano/micro-technologies may...
The complex interaction of cells with biomaterials (i.e., materiobiology) plays an increasingly pivo...
Tissue engineering aims at replicating tissues and organs to develop applications in vivo and in vit...
Nanobiotechnology-enabled tissue engineering strategies have emerged as an innovative and promising ...
Strategies in Tissue Engineering and Regenerative Medicine are often based on the use of biomaterial...
Synthetic biological systems are used for a myriad of applications, including tissue engineered cons...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
For the author there are three major challenges in Regenerative Medicine (RegMed), namely to develop...
This paper focuses on tissue engineering (TE) from the biomaterialist’s point of view. With the aim ...
The field of tissue engineering has tantalizingly offered the possibility of regenerating new tissue...
Synthetic biological systems are used for a myriad of applications, including tissue engineered cons...
132 p.The thesis reports on the design, fabrication and validation of a new generation of bioreactor...
This is an accepted manuscript of an article published by Elsevier in Reference Module in Materials ...
In nature, cells respond to complex mechanical and biological stimuli whose understanding is require...
The complex interaction of cells with biomaterials (i.e., materiobiology) plays an increasingly pivo...
Tissue engineering aims at replicating tissues and organs to develop applications in vivo and in vit...
Nanobiotechnology-enabled tissue engineering strategies have emerged as an innovative and promising ...
Strategies in Tissue Engineering and Regenerative Medicine are often based on the use of biomaterial...
Synthetic biological systems are used for a myriad of applications, including tissue engineered cons...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
Organs are complex systems composed of different cells, proteins and signalling molecules that are a...
For the author there are three major challenges in Regenerative Medicine (RegMed), namely to develop...
This paper focuses on tissue engineering (TE) from the biomaterialist’s point of view. With the aim ...
The field of tissue engineering has tantalizingly offered the possibility of regenerating new tissue...
Synthetic biological systems are used for a myriad of applications, including tissue engineered cons...
132 p.The thesis reports on the design, fabrication and validation of a new generation of bioreactor...
This is an accepted manuscript of an article published by Elsevier in Reference Module in Materials ...
In nature, cells respond to complex mechanical and biological stimuli whose understanding is require...
The complex interaction of cells with biomaterials (i.e., materiobiology) plays an increasingly pivo...
Tissue engineering aims at replicating tissues and organs to develop applications in vivo and in vit...
Nanobiotechnology-enabled tissue engineering strategies have emerged as an innovative and promising ...