Chronic respiratory disease affects many people worldwide with little known about the intricate mechanisms driving the pathology, making it difficult to develop novel therapies. Improving the understanding of airway smooth muscle and extracellular matrix (ECM) interactions is key to developing treatments for this leading cause of death. With currently no relevant or controllable <i>in vivo</i> or <i>in vitro</i> models to investigate cell–ECM interactions in the small airways, the development of a biomimetic <i>in vitro</i> model with cell attachment, signaling, and organization is needed. The goal of this study was to create a biologically and structurally relevant <i>in vitro</i> model of small airway smooth muscle. In order to achieve th...
Differentiation of functional lung epithelial cells from pluripotent stem cells holds the potential ...
Conventional airway in vitro models focus upon the function of individual structural cells cultured ...
Acellular whole human lung scaffolds represent a unique opportunity for ex vivo tissue engineering. ...
Human airway smooth muscle (HASM) contraction plays a central role in regulating airway resistance i...
Chronic lung diseases are one of the leading causes of death worldwide. Lung transplantation is curr...
Electrospinning is a highly adaptable method producing porous 3D fibrous scaffolds that can be explo...
Tissue engineering of autologous lung tissue aims to become a therapeutic alternative to transplanta...
In vitro models for investigating mechanisms underlying repair and regeneration in lung disease have...
Complex human airway cellular organisation where extracellular matrix (ECM), epithelial and stromal ...
AbstractTissue engineering of autologous lung tissue aims to become a therapeutic alternative to tra...
The design and fabrication of a system to both mimic the multicellular composition of the lung and i...
Mesenchymal stromal cell (MSC)-based cell therapy in acute respiratory diseases is based on MSC secr...
Chronic obstructive pulmonary disease (COPD), is a leading cause of death in the United States and i...
Introduction: Different diseases may affect the trachea and, therefore, the quality of life. Tissue ...
Decellularized extracellular matrix (ECM) contains complex tissue-specific components that work in c...
Differentiation of functional lung epithelial cells from pluripotent stem cells holds the potential ...
Conventional airway in vitro models focus upon the function of individual structural cells cultured ...
Acellular whole human lung scaffolds represent a unique opportunity for ex vivo tissue engineering. ...
Human airway smooth muscle (HASM) contraction plays a central role in regulating airway resistance i...
Chronic lung diseases are one of the leading causes of death worldwide. Lung transplantation is curr...
Electrospinning is a highly adaptable method producing porous 3D fibrous scaffolds that can be explo...
Tissue engineering of autologous lung tissue aims to become a therapeutic alternative to transplanta...
In vitro models for investigating mechanisms underlying repair and regeneration in lung disease have...
Complex human airway cellular organisation where extracellular matrix (ECM), epithelial and stromal ...
AbstractTissue engineering of autologous lung tissue aims to become a therapeutic alternative to tra...
The design and fabrication of a system to both mimic the multicellular composition of the lung and i...
Mesenchymal stromal cell (MSC)-based cell therapy in acute respiratory diseases is based on MSC secr...
Chronic obstructive pulmonary disease (COPD), is a leading cause of death in the United States and i...
Introduction: Different diseases may affect the trachea and, therefore, the quality of life. Tissue ...
Decellularized extracellular matrix (ECM) contains complex tissue-specific components that work in c...
Differentiation of functional lung epithelial cells from pluripotent stem cells holds the potential ...
Conventional airway in vitro models focus upon the function of individual structural cells cultured ...
Acellular whole human lung scaffolds represent a unique opportunity for ex vivo tissue engineering. ...