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The aim of this study was to develop human bronchial and nasal epithelium culture models that are relevant to investigate the impact of cigarette smoke (CS) observed in vivo in respiratory tract tissues in contact with inhaled CS. We used two organotypic cultures generated from primary cells derive...
ORGANISM(S): Homo sapiens 
Organotypic culture of human primary bronchial epithelial cells is a useful in vitro system to study normal biological processes and lung disease mechanisms, to develop new therapies, and to assess the biological perturbations induced by environmental pollutants. Herein, we further develop this in v...
ORGANISM(S): Homo sapiens 
In vitro toxicology approaches have evolved, from a focus on the molecular changes within a cell to understanding of toxicity-related mechanisms that simulate the in vivo environment. The recent development of three dimensional (3-D) organotypic nasal epithelial culture models offer a physiologicall...
ORGANISM(S): Homo sapiens 
Oral mucosa of smokers is subject to cigarette smoke (CS)-related cytological, genomic, and transcriptional changes that could potentially lead to the development of mouth diseases. In order to further characterize CS effects, we took advantage of two human organotypic in vitro models of the buccal ...
ORGANISM(S): Homo sapiens 
Organotypic culture of human primary bronchial epithelial cells is a useful in vitro system to study normal biological processes and lung disease mechanisms, to develop new therapies, and to assess the biological perturbations induced by environmental pollutants. Herein, we further develop this in v...
ORGANISM(S): Homo sapiens 
High-throughput measurement technologies produce data sets that have the potential to elucidate the biological impact of disease, drug treatment, and environmental agents on humans. The scientific community faces an ongoing challenge in the analysis of these rich data sources to more accurately char...
ORGANISM(S): Homo sapiens 
The development of reduced-risk products is aimed at providing adult smokers, who are unable to quit, with alternatives to cigarettes that present less risk of harm and smoking-related disease. The use of flavors in the development of these reduced-risk products fulfils an important role in product ...
ORGANISM(S): Homo sapiens 
The biological impact of an aerosol of a potential modified-risk tobacco product, carbon heated tobacco product 1.2 (CHTP1.2), was comprehensively assessed for the first time in vitro using human small airway and nasal epithelial models following a systems toxicology approach. The potentially reduce...
ORGANISM(S): Homo sapiens 
The biological impact of an aerosol of a potential modified-risk tobacco product, carbon heated tobacco product 1.2 (CHTP1.2), was comprehensively assessed for the first time in vitro using human small airway and nasal epithelial models following a systems toxicology approach. The potentially reduce...
ORGANISM(S): Homo sapiens 
The biological impact of an aerosol of a potential modified-risk tobacco product, carbon heated tobacco product 1.2 (CHTP1.2), was comprehensively assessed for the first time in vitro using human small airway and nasal epithelial models following a systems toxicology approach. The potentially reduce...
ORGANISM(S): Homo sapiens 
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