Characterization of an in vitro model for human nasal polyp epithelial cells cultured at an air-liquid interface (ALI) system

F. D. B. Callejas, A. Martínez-Antón, E. Donet, N. Cortadellas, J. Roca-Ferrer, C. Picado, J. Mullol (Barcelona, Madrid, Spain)

Source: Annual Congress 2010 - Novel cellular mechanisms in lung disease
Session: Novel cellular mechanisms in lung disease
Session type: E-Communication Session
Number: 5686
Disease area: Airway diseases

Congress or journal article abstractE-poster

Rating: 0
You must login to grade this presentation.

Share or cite this content

Citations should be made in the following way:
F. D. B. Callejas, A. Martínez-Antón, E. Donet, N. Cortadellas, J. Roca-Ferrer, C. Picado, J. Mullol (Barcelona, Madrid, Spain). Characterization of an in vitro model for human nasal polyp epithelial cells cultured at an air-liquid interface (ALI) system. Eur Respir J 2010; 36: Suppl. 54, 5686

You must login to share this Presentation/Article on Twitter, Facebook, LinkedIn or by email.

Member's Comments

No comment yet.
You must Login to comment this presentation.


Related content which might interest you:
Characterization of two epithelial cell air-liquid interface (ALI) culture models for human healthy nasal mucosa and nasal polyps
Source: Annual Congress 2013 –The pulmonary epithelium: recent developments
Year: 2013

Comparison of respiratory virus infection between human nasal epithelial cell monolayer and air-liquid interface 3D culture
Source: Annual Congress 2011 - Insight into mechanisms of respiratory infections
Year: 2011


PP225 – Development of a 3D in vitro co-culture model of the airway mucosa using human primary cells
Source: ERS Lung Science Conference 2021
Year: 2021

Olodaterol and anti-inflammatory effects on differentiated air-liquid interface cultures of airway epithelial cells
Source: International Congress 2017 – Infection and exacerbation science
Year: 2017


LSC Abstract – Global gene expression analysis of the mucociliary differentiation process of human bronchial epithelial cells at the air-liquid interface
Source: International Congress 2016 – New genomic targets in pulmonary disease
Year: 2016


Creating the human alveolar air-liquid interface in vitro
Source: International Congress 2017 – PG19 In vitro models of the pulmonary epithelium: beyond simple culture
Year: 2017


LSC - 2021 - Development of a 3D in vitro co-culture model of the airway mucosa using human primary cells
Source: Virtual Congress 2021 – Paediatric lung disease: novel mechanisms, methods and translational studies
Year: 2021



Air-liquid interface (ALI) model of human bronchial epithelia cells for the investigation of asthma exacerbations
Source: International Congress 2017 – New insights into pathogenesis of lung disease 
Year: 2017

Porcine alveolar epithelial primary cells (pAEpC) as a model for drug permeability assays
Source: Annual Congress 2008 - Novel experimental approaches to understanding asthma and COPD
Year: 2008


LSC Abstract – Chronic cigarette smoke (CS) exposure alters differentiation of primary bronchial epithelial cells, cultured at the air-liquid interface (PBEC-ALI)
Source: International Congress 2015 – Cellular and molecular mechanisms of COPD and emphysema
Year: 2015

Differential responses of monolayer and differentiated airway epithelial cell cultures to NTHi infection
Source: Annual Congress 2012 - Airway infections in children: from risk factors to treatment
Year: 2012


Lung on Chip: In vitro HGF effects on injured alveolar A549 epithelial cells in microfluidic system
Source: Annual Congress 2011 - Lung cell injury and repair
Year: 2011

Highly efficient genome editing in primary human bronchial epithelial cells differentiated at air–liquid interface
Source: Eur Respir J, 55 (5) 1900950; 10.1183/13993003.00950-2019
Year: 2020



Characterization of an in-vitro co-culture model for the human alveolar barrier
Source: Annual Congress 2010 - Epithelial cells: cell biology and role in lung disease
Year: 2010

Characterisation of an ex vivo model of human airway epithelium
Source: International Congress 2019 – Novel insights from in vitro and in vivo models of lung disease
Year: 2019


Epithelial wound repair is increased by farm dust in a co-culture model of airway epithelial cells and macrophages
Source: Virtual Congress 2020 – Effects of environmental exposures on lung pathology
Year: 2020


In vitro models of the fully differentiated human large airway epithelium
Source: International Congress 2017 – PG19 In vitro models of the pulmonary epithelium: beyond simple culture
Year: 2017


Three-dimensional culture model to distinguish normal from malignant human bronchial epithelial cells
Source: Eur Respir J 2013; 42: 1345-1356
Year: 2013



Conditioned medium from human mesenchymal stem cells restores both amiloride sensitive sodium transport and epithelial permeability to protein across alveolar epithelial cell monolayers in an in vitro model of alveolar injury
Source: Annual Congress 2011 - Barrier functions in sepsis and acute lung injury
Year: 2011


Cigarette smoke alters primary human bronchial epithelial cell (PBEC) differentiation at air-liquid interface (ALI) and induces expression of CD105 and CD146
Source: International Congress 2016 – Novel insights into alveolar and bronchial epithelial cell injury and repair
Year: 2016