In 2011, the first in-man successful transplantation of a tissue engineered trachea-bronchial graft, using a synthetic POSS-PCU nanocomposite construct seeded with autologous stem cells, was performed. To further improve this technology, we investigated the feasibility of using polymers with a three dimensional structure more closely mimicking the morphology and size scale of native extracellular matrix (ECM) fibers. We therefore investigated the in vitro biocompatibility of electrospun polyethylene terephthalate (PET) and polyurethane (PU) scaffolds, and determined the effects on cell attachment by conditioning the fibers with adhesion proteins. Rat mesenchymal stromal cells (MSCs) were seeded on either PET or PU fiber-layered culture plat...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Stem cells have become increasingly important in the biomedical field because they have the potentia...
In 2011, the first in-man successful transplantation of a tissue engineered trachea-bronchial graft,...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Electrospinning (ESP) has lately shown a great potential as a novel scaffold fabrication technique f...
Transparent, flexible, biaxially oriented polyethylene terephthalate (PET) sheets were modified by b...
In tissue engineering, degradable or non-degradable polymer matrices can act as cell-carrier-scaffol...
Extracellular matrix (ECM) components play a critical role in regulating cell behaviors. Interaction...
Polymers such as polyethylene terephthalate (PET) have been used for large-caliber vascular prosthes...
This work reports a preliminary biological study performed on nanofibrous biocompatible polylactidec...
A large variety of natural and synthetic polymers have been explored as scaffolds for the seeding an...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
This work combines experimental and computational study of Balb/3T3 clone A31 mouse embryo fibroblas...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Stem cells have become increasingly important in the biomedical field because they have the potentia...
In 2011, the first in-man successful transplantation of a tissue engineered trachea-bronchial graft,...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Electrospinning (ESP) has lately shown a great potential as a novel scaffold fabrication technique f...
Transparent, flexible, biaxially oriented polyethylene terephthalate (PET) sheets were modified by b...
In tissue engineering, degradable or non-degradable polymer matrices can act as cell-carrier-scaffol...
Extracellular matrix (ECM) components play a critical role in regulating cell behaviors. Interaction...
Polymers such as polyethylene terephthalate (PET) have been used for large-caliber vascular prosthes...
This work reports a preliminary biological study performed on nanofibrous biocompatible polylactidec...
A large variety of natural and synthetic polymers have been explored as scaffolds for the seeding an...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
This work combines experimental and computational study of Balb/3T3 clone A31 mouse embryo fibroblas...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Stem cells have become increasingly important in the biomedical field because they have the potentia...