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  3. A stretchable human lung-on-chip model of alveolar inflammation for evaluating anti-inflammatory drug response.
 

A stretchable human lung-on-chip model of alveolar inflammation for evaluating anti-inflammatory drug response.

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BORIS DOI
10.48620/84879
Date of Publication
January 2025
Publication Type
Article
Division/Institute

ARTORG Center for Bio...

Contributor
Richter, Clémentine
Latta, Lorenz
Harig, Daria
Carius, Patrick
Stucki, Janick
Hobi, Nina
Hugi, Andreas
Schumacher, Paul
Krebs, Tobias
Gamrekeli, Alexander
Stöckle, Felix
Urbschat, Klaus
Montalvo, Galia
Lautenschläger, Franziska
Loretz, Brigitta
Hidalgo, Alberto
Schneider-Daum, Nicole
Lehr, Claus-Michael
Subject(s)

600 - Technology::610...

Series
Bioengineering & translational medicine
ISSN or ISBN (if monograph)
2380-6761
Language
English
Publisher DOI
10.1002/btm2.10715
PubMed ID
39801748
Uncontrolled Keywords

3R

acute lung injury

aerosolization

cytokine storm

immuno‐competent

lung‐on‐chip

microfluidic

Description
This study describes a complex human in vitro model for evaluating anti-inflammatory drug response in the alveoli that may contribute to the reduction of animal testing in the pre-clinical stage of drug development. The model is based on the human alveolar epithelial cell line Arlo co-cultured with macrophages differentiated from the THP-1 cell line, creating a physiological biological microenvironment. To mimic the three-dimensional architecture and dynamic expansion and relaxation of the air-blood-barrier, they are grown on a stretchable microphysiological lung-on-chip. For validating the in vitro model, three different protocols have been developed to demonstrate the clinically established anti-inflammatory effect of glucocorticoids to reduce certain inflammatory markers after different pro-inflammatory stimuli: (1) an inflammation caused by bacterial LPS (lipopolysaccharides) to simulate an LPS-induced acute lung injury measured best with cytokine IL-6 release; (2) an inflammation caused by LPS at ALI (air-liquid interface) to investigate aerosolized anti-inflammatory treatment, measured with chemokine IL-8 release; and (3) an inflammation with a combination of human inflammatory cytokines TNFα and IFNγ to simulate a critical cytokine storm leading to epithelial barrier disruption, where the eventual weakening or protection of the epithelial barrier can be measured. In all cases, the presence of macrophages appeared to be crucial to mediating inflammatory changes in the alveolar epithelium. LPS induction led to inflammatory changes independently of stretch conditions. Dynamic stretch, emulating breathing-like mechanics, was essential for in vitro modeling of the clinically relevant outcome of epithelial barrier disruption upon TNFα/IFNγ-induced inflammation.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/203196
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Bioengineering Transla Med - 2024 - Richter - A stretchable human lung‐on‐chip model of alveolar inflammation for.pdftextAdobe PDF4.53 MBAttribution (CC BY 4.0)publishedOpen
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