Air−liquid interface (ALI) culture models currently represent a valid instrument to recreate the typical aspects of the respiratory tract in vitro in both healthy and diseased state. They can help reducing the number of animal experiments, and hence support the 3R principle. This review discusses ALI cultures and co‐cultures derived from immortalized as well as primary cells, which are used to study the most common disorders of the respiratory tract, in terms of both pathophysiology and drug screening. The article displays ALI models used to simulate inflammatory lung diseases such as chronic obstructive pulmonary disease (COPD), asthma, cystic fibrosis, lung cancer, and viral infections. It also focuses on ALI cultures described in literat...
Respiratory diseases account for over 5 million deaths yearly and are a huge burden to health-care s...
The epithelial tissues of the distal lung are continuously exposed to inhaled air, and are thus of r...
air liquid interface cultured human airway epithelial cell model for HRV infection, and 2) to ident...
In vitro air–liquid interface (ALI) cell culture models can potentially be used to assess inhalation...
In recent years there has been lot of effort to develop more relevant and real life resembling expos...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Infections of emerging and reemerging viruses (SARS-CoVs, influenza H1N1, etc.) largely and globally...
© 2021 Qianyu ChenRespiratory diseases, including severe asthma and chronic obstructive pulmonary di...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Air-liquid interface (ALI) cultures are frequently used in lung research but require substantial cel...
In vitro air–liquid interface (ALI) cell culture models can potentially be used to assess inhalation...
Human coronaviruses (HCoVs) are large RNA viruses that infect the human respiratory tract. The emerg...
7 pagesInternational audienceAbstractBackgroundBronchial epithelium plays a key role in orchestratin...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Human airway epithelial cells are the principal target of human rhinovirus (HRV), a common cold path...
Respiratory diseases account for over 5 million deaths yearly and are a huge burden to health-care s...
The epithelial tissues of the distal lung are continuously exposed to inhaled air, and are thus of r...
air liquid interface cultured human airway epithelial cell model for HRV infection, and 2) to ident...
In vitro air–liquid interface (ALI) cell culture models can potentially be used to assess inhalation...
In recent years there has been lot of effort to develop more relevant and real life resembling expos...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Infections of emerging and reemerging viruses (SARS-CoVs, influenza H1N1, etc.) largely and globally...
© 2021 Qianyu ChenRespiratory diseases, including severe asthma and chronic obstructive pulmonary di...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Air-liquid interface (ALI) cultures are frequently used in lung research but require substantial cel...
In vitro air–liquid interface (ALI) cell culture models can potentially be used to assess inhalation...
Human coronaviruses (HCoVs) are large RNA viruses that infect the human respiratory tract. The emerg...
7 pagesInternational audienceAbstractBackgroundBronchial epithelium plays a key role in orchestratin...
Respiratory tract infections (RTI) are a major cause of morbidity and mortality in humans. A large n...
Human airway epithelial cells are the principal target of human rhinovirus (HRV), a common cold path...
Respiratory diseases account for over 5 million deaths yearly and are a huge burden to health-care s...
The epithelial tissues of the distal lung are continuously exposed to inhaled air, and are thus of r...
air liquid interface cultured human airway epithelial cell model for HRV infection, and 2) to ident...