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  3. Rocker or pump? Transcriptomic response of endothelial cells exposed to peristaltic pump-based unidirectional flow vs. rocker-induced bidirectional flow
 

Rocker or pump? Transcriptomic response of endothelial cells exposed to peristaltic pump-based unidirectional flow vs. rocker-induced bidirectional flow

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BORIS DOI
10.48620/90491
Date of Publication
2025
Publication Type
Article
Division/Institute

Graduate School for C...

Multidisciplinary Cen...

Institute of Anatomy,...

ARTORG Center for Bio...

Institute of Anatomy

ARTORG Center - Organ...

Author
Vahdani, Negar
ARTORG Center for Biomedical Engineering Research
Graduate School for Cellular and Biomedical Sciences (GCB)
Multidisciplinary Center for Infectious Diseases (MCID)
Arora, Prateek
Institute of Anatomy
Institute of Anatomy, Developmental Biology and Regeneration
van Os, Lisette
Ackermann, Denise
ARTORG Center - Organs-on-Chip Technologies (OOC)
Mercader, Nadiaorcid-logo
Institute of Anatomy, Developmental Biology and Regeneration
Institute of Anatomy
Guenat, Olivier T.orcid-logo
ARTORG Center - Organs-on-Chip Technologies (OOC)
ARTORG Center for Biomedical Engineering Research
ARTORG Center - Organs-on-Chip Technologies (OOC)
Subject(s)

600 - Technology::620...

500 - Science::570 - ...

600 - Technology::610...

Series
Lab on a Chip
ISSN or ISBN (if monograph)
1473-0197
1473-0189
Publisher
Royal Society of Chemistry
Language
English
Publisher DOI
10.1039/D5LC00553A
PubMed ID
40746301
Uncontrolled Keywords

unidirectional flow

bidirectional flow

shear stress

transcriptomics

rocker

endothelial cells

organs-on-chip

pulsatile flow

Description
Rocking-platform perfusion systems rely on hydrostatic pressure differences to perfuse cells in organ-on-chip devices. These systems are popular due to their tubing-free design, which facilitates parallelization, an essential feature for drug discovery, precision medicine, and academic research. However, most of these systems generate bidirectional flow, which does not accurately replicate the physiological conditions experienced by endothelial cells (ECs) in the microvasculature. To address this limitation, pump-based systems are often employed to generate unidirectional flow, though they require external tubing, thereby limiting scalability compared to rocking platforms. In this study, under matched average flow rates, we compared the transcriptomic responses of endothelial cells exposed to flow generated either by a rocking platform or a peristaltic pump. Our results revealed distinct transcriptomic profiles induced by the two flow modalities, with hundreds of genes differentially expressed between the two conditions. After 4 hours of flow exposure, we observed an enrichment in signaling pathways including NF-κB, ERK, BMP and MAPK. Furthermore, after 24 hours of flow exposure, we identified significant changes in the genes involved in biological processes such as immune cell migration, angiogenesis and vascular and extracellular matrix remodeling, highlighting how different flow generated by a pump or a rocker can shape endothelial cell behavior at the molecular level.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/214456
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File(s)
FileFile TypeFormatSizeLicensePublisher/Copright statementContent
D5LC00553A.pdftextAdobe PDF4.59 MBAttribution (CC BY 4.0)acceptedOpen
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