Tissue engineering is a promising approach to treat massive airway dysfunctions such as tracheomalacia or tumors. Currently, there is no adequate solution for patients requiring the resection of more than half of the length of their trachea. In this study, the best conditions for combination of three different cell types from the respiratory airway system were investigated to develop a functional ciliated and pre-vascularized mucosal substitute in vitro. Primary human fibroblasts were combined with respiratory epithelial cells and endothelial cells. As scaffolds, fibrin gel and agarose-type I collagen blends were used and cultured with different medium compositions to optimize both vascularization and differentiation of the respiratory epit...
Tracheal obstruction caused by malignancies are critical situations in clinic. Untill now nobody has...
Airway epithelial cells are a key barrier to inhaled toxicants, pollutants and infectious agents. Du...
ObjectiveWe sought to grow in vitro functional smooth muscle cells, chondrocytes, and respiratory ep...
Tissue engineering is a promising approach to treat massive airway dysfunctions such as tracheomalac...
Tracheal tissue engineering is a promising option for the treatment of tracheal defects. In a previo...
Patients suffering from irresectable tracheal stenosis often face limited treatment options associat...
The field of tissue engineering offers novel and innovative treatments for tissue/organ dysfunction ...
To make tissue engineering a truly effective tool, it is necessary to understand how the patterns of...
In vitro differentiation of airway epithelium is of interest for respiratory tissue engineering and ...
Respiratory diseases and major airway trauma represent a global healthcare emergency with most treat...
Today, lung disease and major airway trauma are a significant global healthcare concern with limited...
We have reported morphological and functional features of cells isolated from human bronchial biopsi...
In vitro airway models are increasingly important for pathomechanistic analyses of respiratory disea...
Developing a biologically representative complex tissue of the respiratory airway is challenging, ho...
Tracheal obstruction caused by malignancies are critical situations in clinic. Untill now nobody has...
Airway epithelial cells are a key barrier to inhaled toxicants, pollutants and infectious agents. Du...
ObjectiveWe sought to grow in vitro functional smooth muscle cells, chondrocytes, and respiratory ep...
Tissue engineering is a promising approach to treat massive airway dysfunctions such as tracheomalac...
Tracheal tissue engineering is a promising option for the treatment of tracheal defects. In a previo...
Patients suffering from irresectable tracheal stenosis often face limited treatment options associat...
The field of tissue engineering offers novel and innovative treatments for tissue/organ dysfunction ...
To make tissue engineering a truly effective tool, it is necessary to understand how the patterns of...
In vitro differentiation of airway epithelium is of interest for respiratory tissue engineering and ...
Respiratory diseases and major airway trauma represent a global healthcare emergency with most treat...
Today, lung disease and major airway trauma are a significant global healthcare concern with limited...
We have reported morphological and functional features of cells isolated from human bronchial biopsi...
In vitro airway models are increasingly important for pathomechanistic analyses of respiratory disea...
Developing a biologically representative complex tissue of the respiratory airway is challenging, ho...
Tracheal obstruction caused by malignancies are critical situations in clinic. Untill now nobody has...
Airway epithelial cells are a key barrier to inhaled toxicants, pollutants and infectious agents. Du...
ObjectiveWe sought to grow in vitro functional smooth muscle cells, chondrocytes, and respiratory ep...