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  3. Transluminal Pillars-Their Origin and Role in the Remodelling of the Zebrafish Caudal Vein Plexus.
 

Transluminal Pillars-Their Origin and Role in the Remodelling of the Zebrafish Caudal Vein Plexus.

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BORIS DOI
10.48350/190093
Date of Publication
November 24, 2023
Publication Type
Article
Division/Institute

Institut für Anatomie...

Data Science Lab (DSL...

Author
Röss, Helena
Institut für Anatomie
Aaldijk, Dea
Institut für Anatomie
Vladymyrov, Mykhailo
Data Science Lab (DSL) Universität Bern
Odriozola Quesada, Adolfo
Institut für Anatomie
Djonov, Valentin Georgievorcid-logo
Institut für Anatomie
Subject(s)

600 - Technology::610...

Series
International journal of molecular sciences
ISSN or ISBN (if monograph)
1422-0067
Publisher
MDPI
Language
English
Publisher DOI
10.3390/ijms242316703
PubMed ID
38069025
Uncontrolled Keywords

caudal vein plexus in...

Description
Intussusceptive pillars, regarded as a hallmark of intussusceptive angiogenesis, have been described in developing vasculature of many organs and organisms. The aim of this study was to resolve the question about pillar formation and their further maturation employing zebrafish caudal vein plexus (CVP). The CVP development was monitored by in vivo confocal microscopy in high spatio-temporal resolution using the transgenic zebrafish model Fli1a:eGPF//Gata1:dsRed. We tracked back the formation of pillars (diameter ≤ 4 µm) and intercapillary meshes (diameter > 4 µm) and analysed their morphology and behaviour. Transluminal pillars in the CVP arose via a combination of sprouting, lumen expansion, and/or the creation of intraluminal folds, and those mechanisms were not associated directly with blood flow. The follow-up of pillars indicated that one-third of them disappeared between 28 and 48 h post fertilisation (hpf), and of the remaining ones, only 1/17 changed their cross-section area by >50%. The majority of the bigger meshes (39/62) increased their cross-section area by >50%. Plexus simplification and the establishment of hierarchy were dominated by the dynamics of intercapillary meshes, which formed mainly via sprouting angiogenesis. These meshes were observed to grow, reshape, and merge with each other. Our observations suggested an alternative view on intussusceptive angiogenesis in the CVP.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/172216
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ijms-24-16703.pdftextAdobe PDF11.19 MBAttribution (CC BY 4.0)publishedOpen
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