Here we describe development of a human ‘lung small airway-on-a-chip’ containing a differentiated, mucociliary, bronchiolar epithelium and an underlying microvascular endothelium that experiences fluid flow, which enables analysis of organ-level lung pathophysiology in vitro. Exposure of the epithelium to IL-13 reconstitutes the goblet cell hyperplasia, cytokine hypersecretion and decreased ciliary function of asthmatics. Small airway chips lined by epithelial cells from chronic obstructive pulmonary disease patients recapitulate features of the disease including selective cytokine hypersecretion, increased neutrophil recruitment, and clinical exacerbations by exposure to viral and bacterial infections. Using this robust in vitro method for...
Air-liquid interface (ALI) cultures are frequently used in lung research but require substantial cel...
Novel therapeutic treatments are required for patients suffering from chronic respiratory diseases. ...
In drug discovery, there is an increasing demand for more physiological in vitro models that recapit...
The microfluidic organ-on-chip platform exhibits promise for helping bridge the in vitro-in vivo gap...
The airway epithelium is exposed to a variety of harmful agents during breathing and appropriate cel...
The studies presented in this thesis were aimed at developing and using in vitro model...
The airway epithelium is exposed to a variety of harmful agents during breathing and appropriate cel...
Lung exposure to inhaled particulate matter may injure the epithelial tissue and lead to a loss of f...
The airway epithelium is exposed to a variety of harmful agents during breathing and appro-priate ce...
<div><p>The airway epithelium is exposed to a variety of harmful agents during breathing and appropr...
Organ-on-a-chip technologies have made significant strides in recapitulating the complex multicellul...
The airway epithelium is the first point of contact in the lung for inhaled material, including infe...
Bacterial invasion of the respiratory system leads to complex immune responses involving many cell t...
Lung-on-a-chip is a micro device that combines the techniques of bioengineering, microbiology, polym...
The epithelium of the human airways protects us against harm and helps maintain immune homeostasis. ...
Air-liquid interface (ALI) cultures are frequently used in lung research but require substantial cel...
Novel therapeutic treatments are required for patients suffering from chronic respiratory diseases. ...
In drug discovery, there is an increasing demand for more physiological in vitro models that recapit...
The microfluidic organ-on-chip platform exhibits promise for helping bridge the in vitro-in vivo gap...
The airway epithelium is exposed to a variety of harmful agents during breathing and appropriate cel...
The studies presented in this thesis were aimed at developing and using in vitro model...
The airway epithelium is exposed to a variety of harmful agents during breathing and appropriate cel...
Lung exposure to inhaled particulate matter may injure the epithelial tissue and lead to a loss of f...
The airway epithelium is exposed to a variety of harmful agents during breathing and appro-priate ce...
<div><p>The airway epithelium is exposed to a variety of harmful agents during breathing and appropr...
Organ-on-a-chip technologies have made significant strides in recapitulating the complex multicellul...
The airway epithelium is the first point of contact in the lung for inhaled material, including infe...
Bacterial invasion of the respiratory system leads to complex immune responses involving many cell t...
Lung-on-a-chip is a micro device that combines the techniques of bioengineering, microbiology, polym...
The epithelium of the human airways protects us against harm and helps maintain immune homeostasis. ...
Air-liquid interface (ALI) cultures are frequently used in lung research but require substantial cel...
Novel therapeutic treatments are required for patients suffering from chronic respiratory diseases. ...
In drug discovery, there is an increasing demand for more physiological in vitro models that recapit...